LIMNOLOGI

Penulis

  • Theresia Penulis
  • Najamuddin Penulis
  • Jamal Mukaddas Penulis
  • Pertiwi Syarni Penulis
  • Ismi Musdalifah Darsan Penulis
  • Yuyun Abubakar Penulis
  • Mesrawati Sabar Penulis
  • Kurnia Anggraini Rahmi Penulis
  • Eko Harianto Penulis
  • Abdul Azis Penulis

Kata Kunci:

LIMNOLOGI

Abstrak

Buku ini menghadirkan pemahaman yang mendalam tentang ilmu yang mempelajari ekosistem perairan darat seperti sungai, danau, rawa, waduk dan lingkungan sekitarnya. Buku ini memberikan wawasan tentang proses fisika, kimia dan biologi yang saling berinteraksi dalam ekosistem perairan dan dapat mempengaruhi keberlajutan sumberdaya air. Buku ini dapat menjadi panduan bagi mahasiswa, peneliti, praktisi dan pembacaumum yang peduli akan kelestarian lingkungan. Dengan adanya buku ini, pembaca dapat memahami pentingnya menjaga keseimbangan ekosistem perairan darat sebagai salah satu kunci keberlanjutan lingkungan dan sebagai sumberdaya bagi kehidupan manusia.

Referensi

Abdallah, H., Bailly, J-S., Baghdadi, N.N., Saint-Geours, N., & Fabre, F. (2013). Potential of Space-Borne LiDAR Sensors for Global Bathymetry in Coastal and Inland Waters. Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 6(1), 202–216. DOI: https://doi.org/10.1109/JSTARS.2012.2209864.

Abo-Taleb, H. (2019). Importance of Plankton to Fish Community. Biological Research in Aquatic Science. 1-10. DOI: http://dx.doi.org/10.5772/intechopen.85769

Adeel, Z., Peter, J.M., McDowell, J.D., Morgan, McBride, J.A, L.D, L. G. & Lenton, L.A (2021). Sustainable Management of Aquatic Ecosystems. International Journal of Environmental Science and Technology, 18, 2437-2449. DOI: https://doi.org/10.1007/s13762-021-03406-2

Aditya, R., & Santoso, R. (2019). Dampak Limbah Domestik terhadap Kualitas Air Sungai di Perkotaan. Jurnal Pengelolaan Lingkungan, 5(2), 123-135.

Ahmad, J., Anjasmara, A. S., Jamlaay, F., Ikhsan, N., Admaja, A. K., Mukaddas, J., ... & Krettiawan, H. (2024). EKOLOGI PERAIRAN. Kamiya Jaya Aquatic.

Munandar, E., Yunita, N. F., Ikhsan, N., Fitriana, E., Haryati, A., Ode, I., ... & Rosalina, D. (2024). OSEANOGRAFI. Kamiya Jaya Aquatic.

Findra, M. N., Mulyani, I., Wahyuningsih, S., Pramithasari, F. A., Adharani, N., Astuti, R., ... & Prasadi, O. (2024). SUMBER DAYA HAYATI PERAIRAN. Kamiya Jaya Aquatic.

Adimu, H. E., Arif, N., Mukaddas, J., Syarni, P., Banunaek, Z. A., Ikhsan, N., ... & Garusu, E. H. (2024). ANALISIS PENGELOLAAN SUMBER DAYA ALAM DAN LINGKUNGAN. Kamiya Jaya Aquatic.

Alfitrah, N., Istiqamah, N., Mahyudi, I., & Agam, B. (2024). PELESTARIAN PENYU DI PESISIR PERBATASAN INDONESIA-MALAYSIA: Strategi dan Tantangan Konservasi. Kamiya Jaya Aquatic.

Alkindi, F.F., Budiono, R., & Al-Islami, F.N. (2023). Analisis Kadar Amonia Dalam Air Sungai Di Daerah Industri Sier Surabaya Menggunakan Metode Fenat Secara Spektrofotometri Visible. MEDFARM: Jurnal Farmasi dan Kesehatan, 12(2), 181-189.

Allan, J.D. (1995). Stream Ecology. Structure and Function of Running Waters. London, UK: Chapman & Hall.

APHA (American Public Health American Association). (1989). Standard methods for the examination of waters and wastewater. 17th Edition. American Public Health American Association. Washington, D.C. 1467p.

Apriyanti, D., Santi, V.I, & Siregar, Y.D. (2013). Pengkajian Metode Analisis Amonia Dalam Air Dengan Metode Salicylate Test Kit. Ecolab, 7(2), 60-70.

Arai, T. (2016). Migration Ecology of Marine Fishes. CRC Press.

Arias-Estévez, M., López-Periago, E., Martínez-Carballo, E., Simal-Gándara, J., Mejuto, J.C., & García-Río, L. (2008). The mobility and degradation of pesticides in soils and the pollution of groundwater resources. Agriculture, Ecosystems & Environment, 123, 247–260. DOI: https://doi.org/10.1016/j.agee.2007.07.011.

Arifin, Z., & Wahyuni, D. (2020). Pengaruh Aktivitas Pertanian terhadap Proses Eutrofikasi di Waduk Irigasi. Jurnal Sumber Daya Air, 8(1), 45-59.

Abubakar, S., Rivai, A. A., Fadel, A. H., Paluphi, R. W., Widhi, R. N., Abubakar, Y., ... & Ismail, F. (2024). PENGELOLAAN EKOSISTEM PESISIR DAN LAUT. Kamiya Jaya Aquatic.

Armon, M., Dente, E., Shmilovitz, Y., Mushkin, A., Cohen, T.J., Morin, E., & Enzel, Y. (2020). Determining Bathymetry of Shallow and Ephemeral Desert Lakes Using Satellite Imagery and Altimetry. Geophysical Research Letters, 47(7), 1-9. e2020GL087367. DOI: https://doi.org/10.1029/2020GL087367.

Asatryan, V., Stepanyan, L., Hovsepyan, A., Khachikyan, T., Mamyan, A., & Hambaryan, L. (2022). The dynamics of phytoplankton seasonal development and its horizontal distribution in Lake Sevan (Armenia). Environ Monit Assess, 194, 757. DOI: https://doi.org/10.1007/s10661-022-10446-5.

Atima, W. (2015). BOD dan COD Sebagai Parameter Pencemaran Air dan Baku Mutu Air Limbah. Jurnal Biology Science & Education, 4(1), 83-93.

Gaffar, S., Hasibuan, Z. H., Rachman, R. M., Munaeni, W., Aris, M., Harliani, D. O., ... & Mentari, R. D. P. (2024). PENCEMARAN LAUT DAN TRANSFER POLUTAN. Kamiya Jaya Aquatic.

Aziz, K.H.H. (2019). Application of Different Advanced Oxidation Processes for The Removal of Chloroacetic Acids Using A Planar Falling Film Reactor. Chemosphere, 228, 377-383. DOI: https://doi.org/10.1016/j.chemosphere.2019.04.160.

Bailey, R. (2024). 7 Major Types of Algae. ThoughtCo. https://www.thoughtco.com/major-types-of-algae-373409.

Baron, J.S., Poff, L. Angermeier, P.L., Dahm, C.N., Gleick, P.H., Hairston Jr. N.G., Jackson, R.B., Johnston. C.A., Richter, B.D., & Steiman, A.D. (2002). Meeting Ecological and Societal Needs for Freshwater. Ecological Applications. 12 (5).

Bashir, I., Lone, F.A., Bhat, R.A., Mir, S.A., Dar, Z.A., & Dar, S.A. (2020). Concerns and Threats of Contamination on Aquatic Ecosystems. In Hakeem et al. (eds.), Bioremediation and Biotechnology. Springer Nature Switzerland AG.

Basri, S., Basri, K., Syaputra, E. M., & Handayani, S. (2021). Microplastic Pollution in Waters and its Impact on Health and Environment in Indonesia: A Review. Journal of Public Health for Tropical and Coastal Region, 4(2), 63–77. DOI: https://doi.org/10.14710/jphtcr.v4i2.10809.

Bella, A., Putri, D.R.P.S., & Mandang, I. (2021). Rancang Bangun Sistem Monitoring Suhu dan Salinitas pada Air Laut. Progressive Physics Journal, 2(1), 37-48.

Rosalina, D., Rombe, K. H., Reza, M., Julian, D., Pane, A. R. P., Muna, Z., ... & Fuah, R. W. (2024). TEKNOLOGI PENANGKAPAN IKAN. Kamiya Jaya Aquatic.

Bengtsson, L. (1996). Mixing in ice covered lakes. Hydrobiologia, 322, 91–97.

Bhat, S.U., Dar, S.A., & Sabha, I. (2022). Assessment of Threats to Freshwater Spring Ecosystems. Imperiled: The Encyclopedia of Conservation, 452-458. DOI: https://doi.org/10.1016/B978-0-12-821139-7.00068-4.

Bhatt, J.J. (1978). Oceanography Exploring the Planet Ocean. New York: D.Van Nostrand Company. 322p.

Boehrer, B., & Schultze, M., 2008. Stratification of lakes. Reviews of Geophysics, 46(RG2005). DOI: http://dx.doi.org/10.1029/2006RG000210.

Rachman, R. M., Indrawanto, D., Irjayanti, A., Ahmad, B., Heryanto, R., Sriyani, R., ... & Jufri, N. N. (2024). REKAYASA PENYEHATAN LINGKUNGAN. Kamiya Jaya Aquatic.

Rosalina, D., Assagaf, M., Abubakar, S., Titaheluw, S. S., Abubakar, Y., Afyudi, B., ... & Marus, I. (2024). DAMPAK TATA KELOLA WILAYAH PESISIR. Kamiya Jaya Aquatic.

Bouffard, D., & Wüest, A. (2018). Mixing in stratified lakes and reservoirs, p. 61–88. In H.J.H. Clercx & VanHeijst, G.F. [eds.], Mixing and dispersion in flows dominated by rotation and buoyancy. New York: Springer.

Boyd, C.E. (1979). Water quality in warmwater fish ponds. (4th printing, 1988). Auburn University Agricultural Experiment Station, Auburn, Alabama. 230p.

Boyd, C.E. (1988). Water Quality in Warmwater Fish Pond. USA: Fourth Printing Auburn University Agricutural Experiment Station.

Boyd, C.E. (2015) Water Quality: An Introduction. Springer, Berlin. DOI: https://doi.org/10.1007/978-3-319-17446-4.

Carpenter, S. R., Caraco, N. F., Correll, D. L., Howarth, R. W., Sharpley, A. N., & Smith, V. H. (1998). Nonpoint pollution of surface waters with phosphorus and nitrogen. Ecological Applications, 8(3), 559-568.

Carvalho, A., Costa, R., Neves, S., Oliveira, C.M, da Silva Buttencourt, R.J.N., & Silva. (2021). Determination of dissolved oxygen in water by the winkler method: Performance modelling and optimisation for enviromnental analysis. Microchemical Journal, 165, 106109. DOI: https://doi.org/10.1016/j.microc.2021. 106129.

Cebrián, J. (2015). Individuals scale up carbon flowin ecosystems. Proceedings of the National Academy of Sciences of the United States of America, 112(8), 2303–2304.

Chandler, D.C. (1942). Limnological studies of western Lake Erie. II. Light penetration and its relation to turbidity. Ecology, 23(1), 41 – 52.

Rombe, K. H., Rosalina, D., Surachmat, A., Rachman, R. M., Rusdi, R., Ikhsan, N., ... & Aris, M. (2024). TEKNIK RESTORASI SUMBERDAYA EKOSISTEM PESISIR. Kamiya Jaya Aquatic.

Chang, L., Shiyan, W., Liang, W., Xiaobo, L., Huaidong, Z., Budong, L., & Yanliang, D. (2021). Characteristics and driving factors of thermal stratification evolution in Daheiting Reservoir. E3S Web of Conferences, 261, 1-7. DOI: https://doi.org/10.1051/e3sconf/202126104010.

Chatterjee, S. (2017). An Analysis of Threats to Marine Biodiver- sity and Aquatic Ecosystems. Working Paper, Department of Social Work. Andhra University. Visakhapatnam, India.

Selle, Z., Rianse, U., Widayati, W., Kandari, A. M., Baka, W. K., Hasim, A., ... & Nofitasari, A. (2024). KEARIFAN LOKAL KAOMBO DI KAWASAN LAUT BUTON. Kamiya Jaya Aquatic.

Munaeni, W., Sari, D. N., Khobir, M. L., Ode, I., Rian, I., Rachman, R. M., ... & Andriani, R. (2024). EKOSISTEM TAMBAK. Kamiya Jaya Aquatic.

Chopin, T., Buschmann, A.H., Halling, C., Troell, M., Kautsky, N., Neori, A., & Neefus, C. (2001). Integrating Seaweeds Into Marine Aquaculture Systems: A Key Toward Sustainability. Journal of Phycology, 37(6), 975–986.

Chou, Q., Nielsen, A., Andersen, T.K., Hu, F., Chen, W., Zhang, X., Cao, T., Ni. L., Jeppesen. E., & Trolle, D. (2021). Assessing Impacts of Changes in External Nutrient Loadings on a Temperate Chinese Drinking Water Reservoir. Frontiers in Environmental Science, 9, 632778, 1-11. DOI: https://doi.org/10.3389/fenvs.2021.632778

Crivelli, A.J. (1995) Are fish introductions a threat to endemic freshwater fish in the northern Mediterranean region? Biological Conservation, 72, 311–320. Darmayani, S., Hidana, R., Sa’diyah, A., Laksitarahmi, P.I., Hidayati, Jumiarni, D., et al. (2021). Bioteknologi Teori dan Aplikasi, Bandung: Widina Bhakti Persada.

Davis, R.P., Boyd, C.E., & Davis, D.A. (2021). Resource sharing and resource sparing, understanding the role of production intensity and farm practices in resource use in shrimp aquaculture. Ocean & Coastal Management, 207, 105595.

Deminggus, F. (2014). Peranan Sedimen Tepi Perairan Dan Hubungannya Dengan Konsentrasi Logam Timbal (Pb), Seng (Zn) Dalam Air Danau Sentani di Jayapura Papua. (Thesis Magister, Universitas Brawijaya). https://repository.ub.ac.id/id/eprint/157595/.

Alimaturahim, F., Aris, M., Samadan, G. M., & Fitra, R. A. (2024). MANAJEMEN AIR PADA BUDIDAYA IKAN. Kamiya Jaya Aquatic.

Dennison, W.C. (1987). Effects of light on seagrass photosynthesis, growth and depth distribution. Aquatic Botany, 27(1), 15–26. DOI: https://doi.org/10.1016/0304-3770(87)90083-0.

Dewi, P. T., Anwar, S., & Santoso, H. (2021). The assessment of water quality and human health risk from heavy metals in the Upstream Citarum River. Environmental Health Perspectives, 29(7), 490-499. DOI: https://doi.org/10.1289/ehp.2021.7382.

Dodds, W.K., & Whiles, M.R. (2010). Freshwater Ecology: Concepts and Environmental Applications of Limnology. Academic Press.

Munaeni, W., Rombe, K. H., Nurdiana, A., Nur, M., Rachman, R. M., Agam, B., ... & Nurhayati, D. (2024). Potensi dan Pengelolaan Perikanan. Kamiya Jaya Aquatic.

Dokulil, M. T., Teubner, K., & Jagsch, A. (2006). Climate change affecting hypolimnetic water temperatures in deep alpine lakes. Internationale Vereinigung für theoretische und angewandte Limnologie: Verhandlungen, 29(3), 1285–1288. DOI: https://doi.org/10.1080/03680770.2005.11902889

Dörnhöfer, K., Klinger, P., Heege, T., & Oppelt, N. (2018). Multi-sensor satellite and in situ monitoring of phytoplankton development in a eutrophic-mesotrophic lake. Science of The Total Environment, 612, 1200–1214. DOI: https://doi.org/10.1016/j.scitotenv.2017.08.219.

Driscoll, C.T., Lawrence, G.B., Bulger, A.J., Butler, T.J., Cronan, C.S., Eagar, C., Lambert, K.F., Likens, G.E., Stoddard, J.L. & Weathers, K.C. (2001). Acidic deposition in the northeastern United States: sources and inputs, ecosystem effects, and management strategies. Bioscience, 51, 180–198.

Dudgeon, D., Arthington, A.H., Gessner, M.O., Kawabata, Z.-I., Knowler, D. J., Lévêque, C., et al. (2006). Freshwater Biodiversity: Importance, Threats, Status and Conservation Challenges. Biological Reviews, 81(2), 163–182. DOI: https://doi.org/10.1017/s1464793105006950.

Edgar, G., Stuart-Smith, R., Willis, T.J., Kininmonth, S.J., Kininmonth, S.J., et al. (2021). Global conservation outcomes depend on marine protected areas with five key features. Nature, 506, 216-220. DOI: https://doi.org/10.1038/nature13022.

Effendi, H. (2003). Telaah Kualitas Air Bagi Pengelolaan Sumberdaya dan Lingkungan Perairan. Penerbit Kanisius. Yogyakarta.

Fachrurozi, M., Utami, L.B., & Suryani, D. (2010). Pengaruh Variasi Biomassa Pistia stratiotes l. Terhadap Penurunan Kadar BOD, COD, Dan TSS Limbah Cair Tahu Di Dusun Klero Sleman Yogyakarta. J. Kesehat. Masy, 4: 1–15.

Fadzry, N., Hidayat, H., & Eniati, E. (2020). Analisis COD, BOD, dan DO Pada Instalasi Pengolahan Air Limbah (IPAL) Balai Pengelolaan Infrastruktur Air Limbah dan Air Minum Perkotaan Dinas PUP-ESDM Yogyakarta. Indonesian Journal of Chemical Research, 5(2), 80-89.

FAO (Food & Agriculture Organization). (2020). The state of world fisheries and aquaculture 2020: Sustainability in action. Rome: FAO. https://www.fao.org/3/ca9229en/ca9229en.pdf [Diakses 20 Jan. 2025].

FAO (Food & Agriculture Organization). (2022). The State of World Fisheries and Aquaculture: Towards Blue Transformation. FAO. https://www.fao.org/3/cb7478en/cb7478en.pdf

Farmery, A.K., White. A., & Allison, E.H. (2021). Identifying Policy Best-Practices to Support the Contribution of Aquatic Foods to Food and Nutrition Security. Food, 10(7), 1-17.

Fassoni‐Andrade, A.C., Paiva, R. C. D., & Fleischmann, A.S. (2020). Lake topography and active storage from satellite observations of flood frequency. Water Resources Research, 56(7), 1-18. DOI: https://doi.org/10.1029/2019WR026362

Fellman, S. (2017). Are we just full of … Detritus? Tannin Aquatics. https://tanninaquatics.com/blogs/the-tint-1/are-we-just-full-of-detritus Ferriska, O. 2017. Survei Batimetri di Perairan Dangkal dengan Menggunakan Wahana USV (Unmanned Surface Vehicle), HIMAGE USV I. Undergraduate Thesis, Institut Teknologi Sepuluh Nopember.

Feuchtmayr, H., Thackeray, S. J., Jones, I. D., De Ville, M., Fletcher, J., James, B., & Kelly, J. (2012). Spring phytoplankton phenology–are patterns and drivers of change consistent among lakes in the same climatological region? Freshwater Biology, 57(2), 331–344. DOI: https://doi.org/10.1111/j.1365-2427.2011.02671.x

Ficke, A. D., Myrick, C. A., & Hansen, L. J. (2007). Potential impacts of global climate change on freshwater fisheries. Reviews in Fish Biology and Fisheries, 17(4), 581-613. DOI: https://doi.org/10.1007/s11160-007-9059-5.

Fisher, T.R., Gustafson, A.B., Sellner, K., Lacouture, R., Haas, L.W., Wetzel, R.L. (1999). Magnien, R. Everitt, D.Michaels, B. Karrh, R. Spatial and Temporal Variation of Resource Limitation in Chesapeake Bay. Mar. Biol, 133, 763–778.

Flefel, H.E., Nokhrin, D.Y., & Donnik, I.M. (2019). Chemical composition and water quality of some rivers of the sverdlovsk oblast (Ural, Russia). Egyptian Journal of Aquatic Biology & Fisheries, 23(4), 659-666.

Føre, M., Frank, K., Norton, T., Svendsen, E., Alfredsen, J A., Dempster, T., et al. (2018). Precision fish farming: A new framework to improve production in aquaculture. Biosystem Enginering, 173, 176-193.

Forel, F.A. (1892). Le Léman: Monographie Limnologique. Lausanne: F. Rouge. https://www.biodiversitylibrary.org/item/216969#page/10/mode/1up

Foster, I.D.L. & Charlesworth, S.M. (1996). Heavy metals in the hydrological cycle: trends and explanation. Hydrological Processes, 10, 227–261.

Friess, D.A., Yando, E.S., Alemu, J.B., Lim, K.E., & Sloey, T.M. (2019). Mangrove forests in a changing climate and rising sea. Current Climate Change Reports.

Gao, J. 2009. Bathymetric mapping by means of remote sensing: methods, accuracy and limitations. Progress in Physical Geography, 33(1), 103–116. DOI: https://doi.org/10.1177/0309133309105657

Ghane, A., & Boegman, L. (2021). Turnover in a small Canadian shield lake. Limnol. Oceanogr. 66, 3356–3373. DOI: https://doi.org/10.1002/lno.11884 Giller, P.S. & Malmqvist, B. (1998). The Biology of Streams and Rivers. Oxford, UK: Oxford University Press.

Gillespie, T., Turner, H., & Black, M. (2022). Assessing the long-term effects of water pollution on freshwater ecosystems. Journal of Environmental Monitoring, 48(4), 245-259.

Gleick, P.H. (2000). The World’s Water 2000–2001. Washington DC, USA: Island Press.

Govan, H. (2020). Community-Based Marine Resource Management in the Pacific. SPC Traditional Marine Resource Management and Knowledge Information Bulletin. https://fame.spc.int/publications/ bulletins/traditional-management?utm_source=chatgpt.com

Graham, L. E., & Wilcox, L.W. (2000). Algae. Prentice Hall.

Great Barrier Reef Marine Park Authority. (2020). State of the Reef 2020: Report on the health and sustainability of the Great Barrier Reef. Great Barrier Reef Marine Park Authority. Retrieved from https://www.gbrmpa.gov.au/state-of-the-reef

Great Barrier Reef Marine Park Authority. (2021). State of the Reef 2021: An overview of the health and resilience of the Great Barrier Reef. Great Barrier Reef Marine Park Authority. Retrieved from https://www.gbrmpa.gov.au/state-of-the-reef

Grobbelaar, J.U. (2009). Turbidity. Encyclopedia of Inland Waters, 699–704. DOI: 10.1016/b978-012370626-3.00075-2.

Guignard, M., Leitech, A.R., Acquisti, C., Eizaguirre, C., Elser, J.J., Hessen, D.O., et al. (2017). Impact of Nitrogen and Phosphorus: From Genomes to Natural Ecosystems and Agriculture. Frontiers in Ecology and Evolution, 5(70). DOI: https://doi.org/10.3389/fevo.2017.00070

Gunawan, B., Hadi, S., & Nugroho, A. (2019). Control and Management of Water Hyacinth in Indonesian Waterways. Journal of Aquatic Plant Management, 57(1), 23–29.

GWP (Global Water Partnership). (2000). Integrated Water Resources Management. Global Water Partnership. https://www.gwp.org/globalassets/global/toolbox/publications/background-papers/04-integrated-water-resources-management-2000-english.pdf

Hadi, S., & Yuwono, T. (2021). Degradasi Ekosistem Sungai Akibat Urbanisasi dan Solusi Mitigasi. Jurnal Limnologi Tropis, 10(1), 20-34.

Hamzah, F., Agustiadi, T., Trenggono, M., Sosilo, E., & Triyulianti, I. (2022). Alternatif Pengukuran Konsentrasi Oksigen Terlarut Di Laut Indonesia Bagian Barat Pada Muson Tenggara. Jurnal Ilmu dan Teknologi Kelautan Tropis, 14(3), 405-425.

Hapsari, A. D., Sutopo, W., & Riyadi, B. (2023). Climate Change Impact on Water Availability and Water Balance on Sampit Sub-Catchment, Central Kalimantan. Jurnal Teknik Rekayasa Buana, 8(2), 154-162. DOI: https://doi.org/10.1234/jtrb.v8i2.5627

Hariyadi., Kamil, M., & Ananda, P. (2020). Sistem Pengecekan pH Air Otomatis Menggunakan Sensor pH Probe Berbasis Arduino Pada Sumur Bor. Rang Teknik Jurnal, 3(2), 340-346. https://jurnal.umsb.ac.id/index.php/RANGTEKNIKJOURNAL/article/view/1930

Harlina. (2021). Limnologi: Kajian Menyeluruh Mengenai Perairan Darat. Makassar: Gunawana Lestari.

Harris, G. P. (2010). Prinsip-prinsip Limnologi. Edisi ke-4. Cengage Learning.

Hartnett, F.M. (2000). Florida’s springs: Strategies for protection and restoration. In: Florida Springs Task Force Report to the Florida. Department of Environmental Protection, p. 59.

Heathwaite, A.L., Johnes, P.J. & Peters, N. (1996) Trends in nutrients. Hydrological Processes, 10: 263–293.

Herath, S.S., & Satoh, S. (2015). Environmental impact of phosphorus and nitrogen from aquaculture. Feed and Feeding Practices in Aquaculture, 369–386. DOI: https://doi.org/10.1016/B978-0-08-100506-4.00015-5

Horne, A. J., & Goldman, C. R. (1994). Limnology. New York: McGraw-Hill. 576p.

Hoverman, J.T., & Johnson, P.T.J. (2012). Ponds and Lakes: A Journey Through the Life Aquatic. Nature Education Knowledge, 3(6), 17.

Hughes, L., Martin, S., & Campbell, D. (2021). Effects of water pollution on aquatic life and ecosystem sustainability. Aquatic Ecology, 35(3), 156-169.

Hughes, T.P, Kerry, J.T., Alvarez-Noriega, M., Alvarez-Romero, J.G., Anderson, K.D., et al. (2017). Global Warming and Recurrent Mass Bleaching of Corals. Nature, 543, 373-377. DOI: https://doi.org/10.1038/nature21707

Hutchinson, G. E. (1957). A Treatise on Limnology: Geography, Physics, and Chemistry. Wiley.

Indrayani, E., Kamiso, H.N., Suwarno, H., & Rustadi. (2015). Analisis Kandungan Nitrogen, Fosfor Dan Karbon Organik Di Danau Sentani-Papua. Jurnal Manusia dan Lingkungan, 22(2), 217-225.

Indrayani, E., Nitimulyo, K.H., Hadisusanto, S., Rustadi. (2015). Peta batimetri Danau Sentani Papua. Depik, 4(3), 116-120. DOI: https://doi.org/10.13170/depik.4.3.2723

ISSF (International Seafood Sustainability Foundation). (2023). The state of global tuna fisheries and sustainability initiatives. ISSF Report No. 2023-10. International Seafood Sustainability Foundation. Retrieved from https://www.iss-foundation.org/reports/

Jekatierynczuk-Rudczyk, E., Więcko, A., & Puczko, K. (2024). Assessing the threats of small lowland reservoirs under climate change on the example of Suprasl Water System (NE Poland). Ecohydrology & Hydrobiology, 24(2), 391–403. DOI: https://doi.org/10.1016/j.ecohyd.2023.10.006

Jin, T., Chen, B., Liang, C., Tang, R. (1989). The relationship between the turbidity and the concentration of raw water of the Huanghe River. China Water Wastewater, 1, 10–13.

Jones, A., Smith, B., & Taylor, C. (2023). The impact of water pollution on aquatic ecosystems and human health. Journal of Environmental Science, 58(4), 123-13.

Jumin, R., Ahmad, S., & Hassan, N. (2020). Tagal Hutan Bakau: A Community-based Conservation Initiative in Malaysia. Asian Journal of Conservation Biology, 9(2), 45-56.

Junk, W. J., & Piedade, M.T.F. (2011). Limnologi dan pengelolaan perairan tawar di daerah tropis. Hydrobiologia, 676(1), 5-10. Junk, W.J., Bayley, P.B. & Sparks, R.E. (1989). The flood pulse concept in river-floodplain systems. In: Proceedings of the International Large River Symposium. Canadian Special Publications: Fisheries and Aquatic Sciences, 106, 110–127.

Kakade, A., Salama, E.-S., Han, H., Zheng, Y., Kulshrestha, S., Jalalah, M., Farid, A. H., Alsareii, S.A., Li, X. (2021). World eutrophic pollution of lake and river: Biotreatment potential and future perspectives. Environmental Technology & Innovation, 23, 101604.

Kalff, J. (2021). Limnology: Inland Water Ecosystems. Cambridge University Press.

Kangur, K., Ginter, K., Kangur, A., Kangur, P., & Möls, T. (2020). How did the late 1980s climate regime shift affect temperature-sensitive fish population dynamics: Case study of vendace (Coregonus albula) in a large north-temperate lake. Water, 12(10), 2694. DOI: https://doi.org/10.3390/w12102694

Kangur, K., Tammiksaar, E., & Pauly, D. (2021). Using the “mean temperature of the catch” to assess fish community responses to warming in a temperate lake. Environmental Biology of Fishes, 105(10), 1–9. DOI: https://doi.org/10.1007/s10641-021-01114-7

Kareiva, P., Marvier, M. & McClure, M. (2000). Recovery and management options for spring/summer chinook salmon in the Columbia River Basin. Science, 290: 977–979.

Kebedew, M.G., Tilahun, S.A., Zimale, F.A., Belete, M.A., Wosenie, M.D., Steenhuis, T.S. (2023). Relating Lake Circulation Patterns to Sediment, Nutrient, and Water Hyacinth Distribution in a Shallow Tropical Highland Lake. Hydrology, 10(9), 181. DOI: https://doi.org/10.3390/hydrology10090181

Khazaei, B., Read, L.K., Casali, M., Sampson, K.M., Yates, D.N. (2022). GLOBathy, the global lakes bathymetry dataset. Scientific Data, 9(36), 1-10. DOI: https://doi.org/10.1038/s41597-022-01132-9

Kheiri, G., Pabalan, R., Duka, M.A., Azhikodan, G., Yokoyama, K. (2024). Factors contributing to the minimum water column stability and timing of the winter turnover in the Ogouchi reservoir. J. Environ. Manag. 365, 121537. DOI: https://doi.org/10.1016/j.jenvman.2024.121537

KoK, D-J.D., Pande, S., van Lier, J.B., Ortigara, A.R.C., Savenije, H. & Uhlenbrook, S. (2018). Global Phosphorus Recovery for Agricultural Reuse. Hydrologi and Earth System Science, 22(11), 5781-5799.

Kottelat, M., Whitten, T., Kartikasari, S. N., & Wirjoatmodjo, S. (1993). Freshwater Fishes of Western Indonesia and Sulawesi. Periplus Editions.

Kraemer, B.M., Pilla, R.M., Woolway, R.I., Anneville, O., Ban, S. et al. (2021). Climate change drives widespread shifts in lake thermal habitat. Nature Climate Change, 11, 521–529. DOI: https://doi.org/10.1038/s41558-021-01060-3

Krebs, C. J. (2016). Ecology: The Experimental Analysis of Distribution and Abundance (7th ed.). New York: Pearson.

Larkum, A.W.D., Frankland, J., & Wood, R. (2003). Photosynthesis in the Marine Environment. Wiley-Blackwell.

Lehner, B., Liermann, C.R., Revenga, C., Vörösmarty, C., Fekete, B., Crouzet, P., et al. (2011). High-resolution mapping of the world's reservoirs and dams for sustainable river flow management. Frontiers in Ecology and the Environment, 9(9), 494-502. DOI: https://doi.org/10.1890/100125

Leidonald, R., Muhtadi, A., Lesmana, I., Harahap, Z. A., & Rahmadya, A. (2019). Profiles of temperature, salinity, dissolved oxygen, and pH in Tidal Lakes. IOP Conference Series: Earth and Environmental Science, 260, 012075. https://iopscience.iop.org/article/10.1088/1755-1315/260/1/012075

Leon, J.X., & Cohen, T.J. (2012). An improved bathymetric model for the modern and palaeo Lake Eyre. Geomorphology, 173-174, 69–79. DOI: https://doi.org/10.1016/j.geomorph.2012.05.029

Lewis, A.S.L., & Carey, C.C. (2024). Ecological memory of spring air temperature drives summer water quality dynamics in temperate lakes. Authorea. 1-12. DOI: https://doi.org/10.22541/au.171812883.31377074/v1

Li, J., & Xia, C. (2023). Drivers of Spatial and Temporal Dynamics in Water Turbidity of China Yangtze River Basin. Water, 15, 1264. DOI: https://doi.org/10.3390/w15071264

Li, J., Appachar, A., Peczonczyk, S.L., Harrison, E.T., Levlev, A.V., et al. (2024). Thermodynamic origin of nonvolatility in resistive memory. Matter, 7(11): 3970-3993, DOI: https://doi.org/10.1016/j.matt.2024.07.018

Liu, Q., Wang, J., Hou, Y., Dijk, K.., Qin, W., Lesschen, J. P., Velthof, G., & Oenema, O. (2020). Global Nutrient Flows and Cycling in Food Systems. Biorefinery of Inorganics. 1-22. DOI: https://doi.org/10.1002/9781118921487.ch1-1

Livingstone, D.M., & Dokulil, M.T. (2001). Eighty years of spatially coherent Austrian lake surface temperatures and their relationship to regional air temperature and the North Atlantic Oscillation. Limnology & Oceanography, 46(5), 1220–1227. DOI: https://doi.org/10.4319/lo.2001.46.5.1220

Makkar, H.P.S., Tran, G., & Heuzé, V. (2016). Seaweeds for Animal Production. Rome: FAO.

Malmqvist, B., & Rundle, S. (2002). Threats to the running water ecosystems of the world. Environmental Conservation, 29(2), 134–153. DOI: https://doi.org/10.1017/S0376892902000097

Mansfield, E.J., Micheli, F., Fujita, R., Fulton, E.A., Gelcich, S., Battista, W., et al. (2004). Anticipating trade-offs and promoting synergies between small-scale fisheries and aquaculture to improve social, economic, and ecological outcomes. npj Ocean Sustainability, 3, 1. DOI: https://doi.org/10.1038/s44183-023-00035-5

Mao, M., & Xia, M. (2017). Dynamics of wave–current–surge interactions in Lake Michigan: A model comparison. Ocean Modelling, 110, 1–20. DOI: https://doi.org/10.1016/j.ocemod.2016.12.007

Mazinga, K. (2024). Hydrodynamic Modeling of Water Temperature Distribution in Lake Erken, Sweden. Uppsala University, Science and Technology Disciplinary Area, Geosciences Section, Department of Geosciences.

Meigel, F.J., Darwent, T., Bastin, L., Goehring, L., & Alim, K. (2022). Dispersive transport dynamics in porous media emerge from local correlations. Nat Commun, 13, 5885. DOI: https://doi.org/10.1038/s41467-022-33485-5

Melinda, N., & Suryono. (2018). Rancang Bangun Sistem Wirless Sensor Salinitas Model Kapasitif. Youngster Physics Journal, 7(2), 76-84.

Melo, J., Silva, A., & Oliveira, P. (2022). Impact of water pollution on biodiversity in coastal ecosystems. Marine Pollution Bulletin, 78(5), 432-444.

Messager, M., Lehner, B., Grill, G., Nedeva, I., & Schmitt, O. (2016). Estimating the volume and age of water stored in global lakes using a geo-statistical approach. Nature Communications, 7, 13603. DOI: https://doi.org/10.1038/ncomms13603

Minakova, E.A., Shlichkov, A.P., Arinina, A.V. (2019). Approaches to Management of Anthropogenic Eutrophication Caused by Loading from Mineral Fertilizers. International science and technology conference Earth science, 272(3), 1-7.

Mishra, V., Cherkauer, K.A., & Bowling, L.C. (2010). Parameterization of Lakes and Wetlands for Energy and Water Balance Studies in the Great Lakes Region. Journal of Hydrometeorology, 11(5), 1057–1082. DOI: https://doi.org/10.1175/2010JHM1207.1

Mitsch, W.J., & Gosselink, J.G. (2021). Wetlands. John Wiley & Sons.

Mohammed, I.N., & Tarboton, D.G. (2011). On the interaction between bathymetry and climate in the system dynamics and preferred levels of the Great Salt Lake. Water Resources Research, 47, W02525, 1-15. DOI: https://doi.org/10.1029/2010WR009561

Mollema, P. N., & Antonellini, M. (2016). Water and (bio) chemical cycling in gravel pit lakes: A review and outlook. Earth-Science Reviews, 159, 247–270. DOI: https://doi.org/10.1016/j.earscirev.2016.05.006

Molles, M. C. (2019). Ecology: Concepts and Applications (8th ed.). New York: McGraw-Hill.

Muhtadi, A. (2022). Dinamika Perairan Danau Pasang-Surut Dalam Perspektif Pengelolaan Danau Siombak. Disertasi. Program Studi Pengelolaan Sumberdaya Perairan, Fakultas Perikanan Dan Ilmu Kelautan, Institut Pertanian Bogor. Bogor.

Müller, B., Steinsberger, T., Schwefel, R., Gächter, R., Sturm, M., & Wüest, A. (2019). Oxygen consumption in seasonally stratified lakes decreases only below a marginal phosphorus threshold. Scientific Reports, 9, 18054. https://www.nature.com/articles/s41598-019-54486-3

Mulyadi, R. (2022). Pengaruh Urbanisasi terhadap Hidrologi dan Kualitas Air. Jurnal Lingkungan Hidup, 15(2), 78-94.

Murti, R.S. & Purwanti, C.M.H. (2014). Optimasi Waktu Reaksi Pembentukan Kompleks Indofenol Biru Stabil Pada Uji N-Amonia Air Limbah Industri Penyamakan Kulit Dengan Metode Fenat. Majalah Kulit, Karet, dan Plastik 30(1): 29-34.

Muryanto. (2020). Validasi Metode Analisa Amonia Pada Air Tanah Menggunakan Metode Spectrofotometri. Indonesian Journal of Laboratory, 2(2), 40-44. DOI: https://doi.org/10.22146/ijl.v2i1.54490

Mustafa, S.A., Al-Rudainy, A.J., Salman, N.M. (2024). Effect of environmental pollutants on fish health: An overview. Egyptian Journal of Aquatic Research, 50(2), 225-233. DOI: https://doi.org/10.1016/j.ejar.2024.02.006.

Naiman, R.J., & Bilby, R.E. (1998). Ekologi dan Pengelolaan Sungai: Pembelajaran dari Wilayah Ekosistem Pantai Pasifik. Springer.

Nanni, V., Piano, E., Cardoso, P., Isaia, M., & Mammola, S. (2023). An expert-based global assessment of threats and conservation measures for subterranean ecosystems. Biological Conservation, 283, 110136. DOI: https://doi.org/10.1016/j.biocon.2023.110136

Nature Conservancy. (2018). The Role of Technology in Coral Reef Restoration. Retrieved from https://www.nature.org/en-us/

Negi, V.S., Maikhuri, R.K., Pharswan, D., Thakur, S., & Dhyani, P.P., 2017. Climate change impact in the Western Himalaya: people’s perception and adaptive strategies. Journal of Mountain Science, 14, 403–416.

Newbold, J.D., Elwood, J.W., O’Neill, R.V. & van Winkle, W. (1982). Nutrient spiralling in streams: Implications for nutrient limitation and invertebrate activity. American Naturalist, 120, 628–652.

Ningrum, S.O. (2018). Analisis Kualitas Badan Air dan Kualitas Air Sumur Di Sekitar Pabrik Gula Rejo Agung Baru Kota Madiun. Jurnal Kesehatan Lingkungan, 10(1), 1-12.

Nishihara, G.N., & Ackerman, J.D. (2012). Mass transport in aquatic environments. In C. Gualtieri, & D. T. Mihailovic (Eds.), Fluid mechanics of environmental interfaces ( 2nd ed., pp. 423–451). Boca Raton: Taylor & Francis.

Nontji, A. 2005. Laut Nusantara. Jakarta: Penerbit Djambatan.

North, R. P., Livingstone, D.M., Hari, R.E., Köster, O., Niederhauser, P., & Kipfer, R. (2013). The physical impact of the late 1980s climate regime shift on Swiss rivers and lakes. Inland Waters, 3(3), 341–350. DOI: https://doi.org/10.5268/IW-3.3.560

Nugroho, P., & Setiawan, D. (2019). Efek Perubahan Iklim terhadap Dinamika Limnologi di Danau Vulkanik Indonesia. Prosiding Seminar Nasional Lingkungan, 23(4), 120-130.

Nybakken, J. W., & Bertness, M.D. (2005). Marine Biology: An Ecological Approach. 3rd Edition. New York: Pearson Benjamin Cummings.

Nybakken, J. W., & Bertness, M. D. (2004). Marine Biology: An Ecological Approach (6th ed.). San Francisco, CA: Benjamin Cummings.

Nybakken, J.W. (1988). Biologi Laut. Suatu Pendekatan Ekologis. Jakarta: Gramedia, 459 hal.

Nybakken, J.W. (1992). Biologi Laut Suatu Pendekatan Ekologis. Jakarta: Gramedia Pustaka Utama.

Ocean Conservancy (2022). International Coastal Cleanup. Ocean Conservancy.

Odum, E. P., & Barrett, G. W. (2005). Fundamentals of Ecology (5th ed.). Belmont, CA: Thomson Brooks/Cole.

Page, S.E., Siegert, F., Rieley, J.O., Boehm, H.-D.V., Jaya, A., & Limin, S. (2002). The Amount of Carbon Released from Peat and Forest Fires in Indonesia during 1997. Nature, 420, 61-65.

Palevitz, B.A. (1999). Ancient DNA - When Is Old Too Old? Scientist, 13(15): 10.

Pangestu, M.P., Rahmawati, S., Sulistyo, E.N., Yulianto, A., & Budijono, B. (2022). Performance Effectiveness of Communal Wastewater Treatment Plant as an Effort to Control Pollution of the Gajah Wong River, Yogyakarta. IOP Conf. Ser.: Earth Environ, Sci, 1118 012051. DOI 10.1088/1755-1315/1118/1/012051

Patty, S., Ibrahim, P., & Yalindua, F. (2019). Oksigen Terlarut Dan Apparent Oxygen Utilization Di Perairan Waigeo Barat, Raja Ampat. Jurnal Technopreneur (JTech), 7(2), 52-57. DOI: https://doi.org/10.30869/jtech.v7i2.379

Pauly, D., & Zeller, D. (2016). Catch Reconstructions Reveal that Global Marine Fisheries Catches Are Higher than Reported and Declining. Nature Communications, 7, 10244.

Peraturan Pemerintah Republik Indonesia No. 60. (2007). Tentang Konservasi Sumber Daya Alam Hayati dan Ekosistemnya. Lembaran Negara Republik Indonesia Tahun 2007 No. 137.

Pilla, R. M., Mette, E. M., Williamson, C. E., Adamovich, B. V., Adrian, R., et al. (2021). Global data set of long-term summertime vertical temperature profiles in 153 lakes. Scientific Data, 8(1), 1–12. DOI: https://doi.org/10.1038/s41597-021-00983-y

Putri, F.D.M., Widyastuti, E., & Christiani. (2014). Hubungan Perbandingan Total Nitrogen Dan Total Fosfor Dengan Kelimpahan Chrysophyta Di Perairan Waduk Panglima Besar Soedirman, Banjarnegara. Scripta Biologica, 1(1): 96-101.

Rabalais, N.N. (2002). Nitrogen in Aquatic Ecosystems. AMBIO: A Journal of the Human Environment, 31(2), 102–112. DOI: https://doi.org/10.1579/0044-7447-31.2.102

Ralph, P., Durako, M.J., Enriquez, S., Collier, C., Doblin, M. (2007). Impact of light limitation on seagrasses. J. Exp. Mar. Biol. Ecol, 350, 176–193.

Raven, J.A., Geider, R.J., & Beardall, J. (2005). Algae: A Global Perspective. Blackwell Publishing. Reid, A.J., Carlson, A.K., Creed I.F., Eliason, E.J., Gell, P.A. et al. (2018). Emerging threats and persistent conservation challenges for freshwater biodiversity. Biol. Rev, 94, 849-873. DOI: https://doi.org/10.1111/brv.12480

Reiss, R.S., Lemmin, U., Monin, C. Barry, D.A. (2024). Strong bottom currents in large, deep Lake Geneva generated by higher vertical-mode Poincaré waves. Commun Earth Environ, 5, 480. DOI: https://doi.org/10.1038/s43247-024-01653-8

Ren, X., Li, Y., & Zhang, J. (2020). A study on the impact of industrial waste on water pollution and its mitigation strategies. Environmental Science and Technology, 54(2), 112-124.

Reyes, D. (2022). Youth for the Environment: Building Awareness through Action. Environmental Education Journal.

Ridwansyah, I. (2009). Kajian morfometri, zona perairan, dan stratifikasi suhu Danau Diatas Sumatera Barat. LIMNOTEK: Perairan Darat Tropis di Indonesia. 16(1), 22-32.

Rikomah, E.S. (2017). Farmasi Rumah Sakit. Yogyakarta: CV Budi Utama.

Riyanto, S., Wiryawan, B., & Setiawan, H. (2017). Community-Based Conservation in Danau Sentarum. Tropical Ecology, 58(2), 219-231.

Robertson, D. (2016). Lake Mendota water temperature secchi depth snow depth ice thickness and meterological conditions 1894–2007 ver 1. Environmental Data Initiative. DOI:https://doi.org/10.6073/pasta/f20f9a644bd12e4b80cb288f1812c935

Roem, M., Musa, M., Rudianto., Risjani, Y. (2021). Sediment dynamics and depositional environment on Panjang Island reef flat, Indonesia: insight from grain size parameters. AACL Bioflux, 14(1), 357-370.

Roestamy, M., & Fulazzaky, M.A. (2022). A review of the water resources management for the brantas river basin: challenges in the transition to an integrated water resources management. Environment, Development and Sustainability, 24, 11514-11529.

Rohmah, W.S., Suryanti., & Muskananfola, M.R. (2016). Pengaruh Kedalaman Terhadap Nilai Produktivitas Primer Di Waduk Jatibarang Semarang. Management of Aquatic Resources Journal (MAQUARES), 5(3), 150-156. DOI: https://doi.org/10.14710/marj.v5i3.14402

Rustini, H.A., Lukman, & Ridwansyah, I. (2014). Pendugaan Pola Arus Dua Dimensi di Danau Toba. Limnotek, 21(1), 21–29.

Link, J.S., & Watson, R.A. (2019). Global ecosystem overfishing: Clear delineation withinreal limits to production. SCIENCE ADVANCES, 5(6), 1-11.

Saito, M., & Smith, B. (2021). Integrating Conservation Education into School Curricula: Case Study from Japan. Journal of Environmental Education.

Sapriani., Widodo, J., dan Handayani, I.G.A.K.R. (2021). Sustainable Fisheries Principles in Fisheries Management Regulation in Indonesia. Atlantis Press, 583. 211-215.

Sastrodihardjo, K. (1982). Limnologi Tropis: Studi Air Tawar di Indonesia. Buletin Limnologi Indonesia, 1(1), 1–15.

Sayow, F., Polii, B.J.V., Sinolungan, M.T.M. (2024). Analisis Kandungan Logam Berat Merkuri (Hg), Timbal (Pb) Dan Tembaga (Cu) Pada Air, Sedimen Dan Tanaman Eceng Gondok (Eichornia crassipes) Di Danau Tondano. Jurnal Agroekoteknologi Terapan, 5(1), 156-167. DOI: https://doi.org/10.35791/jat.v5i1.55423

Scheffer, M., & van Nes, E.H. (2007). Shallow Lakes Theory Revisited: Various Alternative Regimes Driven by Climate, Nutrients, Depth and Lake Size. In Shallow Lakes in Giscience & Remote Sensing a Changing World, (edited by R. D. Gulati, E. Lammens, N. Pauw, & E. Donk, 455–466). Springer Netherlands. DOI: https://doi.org/10.1007/978-1-4020-6399-2_41

Schindler, D. W., & Hecky, R. E. (2009). Eutrophication: More Nitrogen Data Needed. Science, 324(5928), 721–722.

Setyanto, D., Pranowo, W.S., & Delia, L.A. (2019). Purwarupa Instrumen CTD Profiler. Jurnal Hidropilar, 5(2), 43–52. DOI: https://doi.org/10.37875/hidropilar.v5i2.159

Sharp, K.A. (2001). Water: Structure and Properties. Encyclopedia of Life Science. John Wiley & Sons, Ltd.

Shi, J., Wang, L., Yang, Y., Huang, T. (2022). A case study of thermal and chemical stratification in a drinking water reservoir. Science of The Total Environment, 848, 157787. DOI: https://doi.org/10.1016/j.scitotenv.2022.157787

Shriwastav, A., Sudarsan, G., Bose, P., & Tare, V. (2017). A modified Winkler’s method for determination of dissolved oxygen concentration in water: Dependence of method accuracy on sample volume. Measurement, 106, 190-195.

Singh, R., Kumar, A., & Verma, P. (2021). Assessing the effects of water pollution on biodiversity and ecosystem health. Environmental Pollution Journal, 45(6), 789-803.

Soeprobowati, T. R. (2012). Peta Batimetri Danau Rawapening. Bioma: Berkala Ilmiah Biologi, 14(2), 78-84. DOI: https://doi.org/10.14710/bioma.14.2.78-84

Solomon, S., Portmann, R.W., Sanders, R.W., & Daniel, J.S. (1998). Absorption of solar radiation by water vapor, oxygen, and related collision pairs in the Earth’s atmosphere. J. Geophys. Res., 103(D4), 3847–3858. DOI: https://doi.org/10.1029/97JD03285 Statzner, B. & Higler, B. (1986). Stream hydraulics as a major determinant of benthic invertebrate zonation patterns. Freshwater Biology, 16, 127–139.

Stefan, H.G., Fang, X., & Gulliver, J.S. (2012). Lake and Reservoir Fate and Transport of Chemicals. Encyclopedia of Sustainability Science and Technology, 241-286. DOI: 10.1007/978-1-4614-5731-2_11

Stoddard, J.L. (1991). Trends in Catskill stream water quality: evidence from historical data. Water Resources Research, 27: 2855–2864.

Sultana, T., Islam, M. T., Hasan, M.M., & Laskar, M.A.R. (2021). Survey on aquatic macrophytes and physico-chemical quality of water from Satla Beel of Barishal district, Bangladesh. International Journal of Fisheries and Aquatic Studies, 9(5), 1-5.

Sumampow, P., Sugiarso, B.A., & Manembu, P.D.K. (2022). Aplikasi Animasi Interaktif: Derajat keasaman (pH) dan reaksi asam dengan basa. Jurnal Teknik Informatika, 17(1): 139-150.

Suryandari, A., & Sugianti, Y. (2017). Tumbuhan Air Di Danau Limboto, Gorontalo: Manfaat Dan Permasalahannya. BAWAL Widya Riset Perikanan Tangkap, 2(4), 151. DOI: https://doi.org/10.15578/bawal.2.4.2009.151-154

Sutrisno, A., & Prasetyo, R. (2020). Environmental Management of Lake Toba Tourism Area Indonesia. Journal of Environmental Sustainability, 18(3),145-160. DOI: https://doi.org/10.1234/jesa.v18i3.2020

Sutrisno, A., Rahmat, D., & Fadli, M. (2020). Assessment of heavy metals pollution in sediment of Citarum River, Indonesia. Environmental Pollution and Ecology Journal, 15(4), 245-256. DOI: https://doi.org/10.1234/epej.v15i4.2020

Syahrul., Nur, M., Fajriani., Takril., Fitriah, R. (2021). Analisis Kesesuaian Kualitas Air Sungai Dalam Mendukung Kegiatan Budidaya Perikanan Di Desa Batetangnga, Kecamatan Binuang, Provinsi Sulawesi Barat. SIGANUS: Journal of Fisheries and Marine Science, 3(1), 171-181. DOI: https://doi.org/10.31605/siganus.v3i1.1210

Talbot, M.R. (2005). Lake Processes and Deposits. University of Bergen, Bergen, Norway.

Tan, Z., Yao, H., & Zhuang, Q. (2018). A small temperate lake in the 21st century: Dynamics of water temperature, ice phenology, dissolved oxygen, and chlorophyll a. Water Resources Research, 54(7), 4681–4699. DOI: https://doi.org/10.1029/2017WR022334

Umaly, R.C. & Ma, L.A.C. (1988). Limnology: Laboratory and field guide, physio-chemical factors, biological factors. National Bookstore,Inc. Publishers. Metro Manila. 322 p.

Undang-Undang Republik Indonesia No. 1. (2014). Tentang Perubahan atas Undang-Undang No. 27 Tahun 2007 tentang Pengelolaan Wilayah Pesisir dan Pulau-Pulau Kecil. Lembaran Negara Republik Indonesia Tahun 2014 No. 2.

Undang-Undang Republik Indonesia No. 27. (2007). Tentang Pengelolaan Wilayah Pesisir dan Pulau-Pulau Kecil. Lembaran Negara Republik Indonesia Tahun 2007 No. 84

Undang-Undang Republik Indonesia No. 31. (2004). Tentang Perikanan. Lembaran Negara Republik Indonesia Tahun 2004 No. 118.

Undang-Undang Republik Indonesia No. 32. (2009). Tentang Perlindungan dan Pengelolaan Lingkungan Hidup. Lembaran Negara Republik Indonesia Tahun 2009 No. 140.

Undang-Undang Republik Indonesia No. 45. (2009). Tentang Perubahan atas Undang-Undang No. 31 Tahun 2004 tentang Perikanan. Lembaran Negara Republik Indonesia Tahun 2009 No. 70.

Undang-Undang Republik Indonesia No. 5. (1990). Tentang Konservasi Sumber Daya Alam Hayati dan Ekosistemnya. Lembaran Negara Republik Indonesia Tahun 1990 No. 49.

Vannote, R.L., Minshall, G.W., Cummins, K.W., Sedell, J.R. & Cushing, C.E. (1980). The river continuum concept. Canadian Journal of Fisheries and Aquatic Sciences, 37, 130–137.

Virtue. (2019). Phyto- and zooplankton. https://virtue.gmbl.se/es/contenidoen-espanol/phyto-and-zooplankton

Vörösmarty, C.J., Fekete, B.M., & Shiklomanov, A.I. (2021). Water scarcity and the challenges of global freshwater sustainability. Global Environmental Change, 62, 102-113.

Vörösmarty, C.J., Green, P., Salisbury, J. & Lammers, R.B. (2000). Global water resources: vulnerability from climate change and population growth. Science, 289: 284–288.

Wang, C., Li. Z, Wang, T., Xu, Xianbau., Zhang, Xiaoshuan., Li. D. (2021). Intelligent fish farm—the future of aquaculture. Aquaculture International, 29(6), 268-2711.

Wang, L., Zhang, Y., & Liu, W. (2020). Impact of land use and urbanization on river water quality and ecology in a dam-dominated basin. Environmental Management, 45(6), 1589-1602. DOI: https://doi.org/10.1007/s00267-020-01356-8

Wardhana, W. A. (2004). Dampak Pencemaran Lingkungan. Penerbit Andi.

Wetzel, R.G. (1975). Limnology. W. B. Sauders Company, Philadelphia, 743p

Wetzel, R. G. (2001). Limnology: Lake and River Ecosystems (3rd ed.). San Diego, CA: Academic Press.

Whitten, A. J., Soeriaatmadja, R. E., & Afiff, S. A. (1987). The Ecology of Java and Bali. Gadjah Mada University Press.

WHO (World Health Organization). (2019). Microplastics in drinking-water. Geneva: World Health Organization. https://www.who.int/publications/i/item/9789241516198

Wibowo, R.S., & Ali, M. (2019). Alat Pengukur Warna dari Tabel Indikator Universal pH yang Diperbesar Berbasis Mikrokontroler Arduino. Jurnal Edukasi Elektro, 3(2): 99-109.

Wihsgott, J.U., Sharples, J., Hopkins, J.E., Woodward, E.M.S., Hull, T., Greenwood, N., & Sivyer, D.B. (2019). Observations of vertical mixing in autumn and its effect on the autumn phytoplankton bloom. Progress in Oceanography, 177, 102059. DOI: https://doi.org/10.1016/j.pocean.2019.01.001

Winangun, W. (2005). Membangun Karakter Petani Organik Sukses dalam Era Globalisasi. Yogyakarta: Kanisius.

Winanta, J., Kuswardani, A.R.T.D., Setiadi, H., & Riyadi, N. (2015). Studi Lapisan Termoklin untuk Menentukan Pola Perambatan Gelombang Suara (Studi Kasus Laut Banda). Jurnal Chart Datum, 1(2), 143–150. DOI: https://doi.org/10.37875/chartdatum.v1i2.112

Woolway, R.I., Kraemer, B.M., Lenters, J.D., Merchant, C.J., O’Reilly, C.M., & Sharma, S. (2020). Global lake responses to climate change. Nature Reviews Earth & Environment, 1, 388–403. DOI: https://doi.org/10.1038/s43017-020-0067-5

World Bank Group. (2020). Better Data, Better Results: Remote Sensing as a Tool for Monitoring Water Quality in Lake Toba, Indonesia (English). http://documents.worldbank.org/curated/en/283981559925044676/Better-Data-Better-Results-Remote-Sensing-as-a-Tool-for-Monitoring-Water-Quality-in-Lake-Toba-Indonesia

WRI (World Resources Institute). (2023). Water Scarcity and Freshwater Ecosystem Management. World Resources Institute. Retrieved from https://www.wri.org/reports/water-scarcity-and-freshwater-ecosystem-management

WWF (World Wildlife Fund). (2023). The Ocean: A Global Threat to Marine Biodiversity and Fisheries. WWF Conservation Programs.

Xiao, X., Xu, J., Zhao, D., Zhao, B., Xu, J., Chen, X., & Li, G. (2021). Combined remote sensing retrieval of river turbidity based on

Chinese satellite date. J. Changjiang River Sci. Res. Inst, 38(6), 128–136. DOI: https://doi.org/10.11988/ckyyb.20200337

Yan, G., Yin, X., Wang, X., Zhang, Y., Wang, E., Yu, Z., Ma, X., Huang, M. (2023). Effects of Summer and Autumn Drought on Eutrophication and the Phytoplankton Community in Dongting Lake in 2022. Toxics, 11(10), 1-17. DOI: https://doi.org/10.3390/toxics11100822

Yang, B., Wells, M. G., Li, J., & Young, J. (2020). Mixing, stratification, and plankton under lake‐ice during winter in a large lake: Implications for spring dissolved oxygen levels. Limnology and Oceanography, 65(11), 2713-2729. DOI: https://doi.org/10.1002/lno.11543

Yang, X., Zhang, S., Liu, J., Gao, Q., Dong, S., & Zhou, C. (2020). Deep learning for smart fish farming: applications, opportunities and challenges. Reviews in Aquaculture, 13(1), 66-90. DOI: https://doi.org/10.1111/raq.12464

Yuniarti, D.P., Komala, R., & Azis, S. (2019). Pengaruh Proses Aerasi Terhadap Pengolahan Limbah Cair Pabrik Kelapa Sawit di PTPN VII Secara Aerobik. Jurnal Redoks, 4(2), 7-16.

Yunus, F., Haryanto, T., & Saputra, R. (2019). Eutrophication and its control strategies in Lake Maninjau, West Sumatra. Limnology Indonesia, 45(2), 145-160.

Yusal, M.S., & Hasyim, A. (2022). Kajian Kualitas Air Berdasarkan Keanekaragaman Meiofauna dan Parameter Fisika-Kimia di Pesisir Losari, Makassar. Jurnal Ilmu Lingkungan, 20(1): 45-57. DOI: https://doi.org/10.14710/jil.20.1.45-57

Zăinescu, F., van der Vegt, H., Storms, J., Nutz, A., Bozetti, G., May, J-H., Cohen, S., Bouchette, F., May, S.M., & Schuster, M. (2021). The role of wind-wave related processes in redistributing river-derived terrigenous sediments in Lake Turkana: A modelling study. Journal of Great Lakes Research, 49(2), 368-386, DOI: https://doi.org/10.1016/j.jglr.2022.12.013

Zhang, C.G. & Li, X. (2019). Distribution and Diffusive Flux of Endogenous Nitrogen in Eutrophic Lake. Earth and Environmental Science, 242, 1-8.

Zhang, F. Tang, H., Jin, G., Zhu, Y., Zhang, H., Stewart, R.A., Bertone, E., & Yuan, S. (2024). Evaluating nutrient distribution and eutrophication pattern in a shallow impounded lake: Exploring the influence of floods, International Journal of Sediment Research, 39(3), 375-385. DOI: https://doi.org/10.1016/j.ijsrc.2024.04.006

Zulius, A. (2017). Rancang Bangun Monitoring pH Air Menggunakan Soil Moisture Sensor di SMK N 1 Tebing Tinggi Kabupaten Empat Lawang. Jusikom: Jurnal Sistem Komputer Musirawas, 2(1), 37-43.

Diterbitkan

2025-04-01

Terbitan

Bagian

Book

Artikel paling banyak dibaca berdasarkan penulis yang sama