The Analysis of Aquatic Chemical Parameters in Kurapan Lake and Sambas River, Sepantai Village, Sambas

Nurul Fatimah Yunita, Beryaldi Agam, Maryono Maryono, Dewi Merdekawati

Abstract


This research aims to measure the chemical parameters of water quality. The parameters measured were pH, DO, BOD, COD, Nitrate, Ammonia, and Phosphate. The results of this research showed the pH scale range of 6.05 – 6.28, DO range of 5.16 – 7.00 mg/l, BOD range of 1.38 – 8.68 mg/l, COD range of 7.89 – 47.33 mg/l, Nitrate range of 0.31 – 0.38 mg/l, Ammonia of 0.04 – 0.07 mg/l, and Phosphate range of 1.24 – 1.27 mg/l. Hence, the chemical parameter of water quality values indicated that pH, Nitrate and, Ammonia met water quality standards for designated beneficial water uses

Keywords


Water quality, Water quality standard, Chemistry, Sambas River

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References


Alfionita, A.N.A., Patang& Kaseng, E.S. (2019). Pengaruh Eutrofikasi Terhadap Kualitas Air di Sungai Jenebarang. Jurnal Pendidikan Teknologi Pertanian 5 (1), 9 - 23 .

Apriyanti, E., Ihwan A & Jumarang, M.I. (2016). Analisis Kualitas Air di Parit Besar Sungai Jawi Kota Pontianak. Jurnal Prisma Fisika 4 (3), 101 – 108.

Asrini, N.K., Adnyana, I.W.S & Rai, I.N. (2017). Studi Analisis Kualitas Air di Daerah Aliran Sungai Pakerisan Provinsi Bali. Jurnal Ecotrophic 11 (2), 101 – 107.

Azizah, M & Humairoh, M. (2015). Analisis Kadar Amonia (NH3) dalam Air Sungai Cileungsi. Jurnal Nusa Sylva 15 (1), 47 – 54.

Bahagia., Suhendrayatna & Ak, A. (2020). Analisis Tingkat Pencemaran Air Sungai Krueng Tamian Terhadap COD, BOD, dan TSS. Jurnal Serambi Engineering 5 (3), 1099 – 1106.

Brahmana, S.S & Achmad, F. 2012. Potensi Beban Pencemar Nitrogen, Fosfat, Kualitas Air, Status Trofik dan Stratifikasi Waduk Riam Kanan. Jurnal Sumber Daya Air 8 (1), 53 – 66.

BPS. (2019). Sambas Dalam Angka 2019. Badan Pusat Statistik.

Efendi, H. (2003). Telaah Kualitas Air. Yogyakarta: Kanisius.

Efendi, H., Kristianiarso, A. A & Adiwilaga, E.M. (2013). Karakteristik Kualitas Air Sungai Cihideung, Kabupaten Bogor, Jawa Barat. Jurnal Ecolab 7 (2), 81 – 92.

Leoni, B., Patelli, M., Soler V & Nava, V. (2018). Ammonium Transformation in 14 Lake Along Tropic Gradient. Journal Water 10 (265), 1 – 13.

Lee, A.H & Nikraz, H. (2015). BOD: COD as an Indicator for River Pollution. International Proceedings of Chemical, Biology and Environtmental Engineering 88. Diakses dari http://www.ipcbee.com/vol88/rp017_ICBEE2015-T0010.pdf.

Magadum, A., Patel, T & Gavali, D. Assessment of Physicochemical Parameters and Water Quality Index of Vishwamitri River, Gujarat India. International Journal of Environtment, Agriculture and Biotechnology, 2 (4), 1505 – 1510.

Melki., Isnansetyo, A., Widada, J & Murwantoko. (2018). The Significance of Water Quality Parameters on The Diversity of Ammonia-Oxidizing Bacteria in The Water Surface of Musi River, Indonesia. Journal Bioflux 11 (6), 1908 – 1918.

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.

Nugroho, A.S., Tanjung., D.S & Hendrarto, B. (2014). Distribusi Serta Kandungan Nitrat dan Fosfat di Perairan Danau Rawa Pening. Jurnal Bioma 3 (1), 27 – 41.

Patty, S.I., Arfah, M & Abdul, M.S. 2015. Zat Hara (Fosfat, Nitrat), Oksigen Terlarut dan pH dan Kaitannya Dengan Kesuburan Perairan Jikumerasa, Pulau Buru. (2015). Jurnal Pesisir dan Laut Tropis 1 (1), 43 – 50.

Putri, W.A.E., Purwiyanto, A.I.S., Fauziyag., Agustriani, F & Suteja, Y. 2019. Kondisi Nitrat, Nitrit, Amonia, Fosfat dan BOD di Muara Sungai Banyuasin, Sumatera Selatan. Jurnal Ilmu dan Teknologi Kelautan Tropis, 11 (1), 65 – 74.

Rai, A.K., Paul, B & Kishor, N. (2011). Studies of Selected Water Quality Parameters of Rivers Ganges at Patna, Bihar. Journal of Advance Laboratory Research in Biology, 4 (2), 136 – 140.

Ritabrata, R. (2018). An Introduction to Water Quality Analysis. Internation Joournal for Environtmental Rehabilitation and Conservation, 9 (2), 94 – 100.

Ridhawani, F., Ghalib, M & Nurrachmi, I. 2017. Tingkat Kesuburan Perairan Berdasarkan Kelimpahan Fitoplankton dan Nitrat – Fosfat Tehadap Tingkat Kekeruhan Muara Sungai Rokan Kabupaten Rokan Hilir. Jurnal Perikanan dan Kelautan 22 (2), 10 – 17.

Rosilla, R., Azizah, M & Setiawaty, D. (2016). Kadar Fosfat dalam Air Sungai Cikaniki. Jurnal Saisn Natural Universitas Nusa Bangsa 5 (2), 124 – 131.

Sabiq, A dan Budisejati, P N. (2017). Sistem Pemantauan Kadar pH, Suhu dan Warna Air Sungai Melalui Web Berbasis Wireless Sensor Network. Jurnal dan Teknologi Sistem Komputer, 5 (3), 94 – 100.

Soukotta, E., Ozsaer, R & Latuamury, B. (2019). Analisis Kualitas Kimia Air Sungai Riuapa dan Dampaknya Terhadap Lingkungan. Jurnal Hutan dan Pulau - Pulau Keciil 3 (1), 86 – 96.

Susilowati, S., Sutrisno., Masykuri, M & Maridi, M. (2018). Dynamics and Factors that Effects DO – BOD Consentrations of Madiun River. AIP Conference Prooceding 2049. Diakses dari https://doi.org/10.1063/1.5082457.

Suswanti, I ., Sutamiharja, R.T.M & Arrisujaya, D. (2019). Potensi Senyawa Nitrogen dan Fosfat Pada Pencemaran Sungai Ciliwung Hulu Kota Bogor. Jurnal Sains Natural Universitas Nusa Bangsa 9 (1), 11 – 21.

WWF. (2011). River Ecology. Vienna: World Wildlife Fund Press.

Yulis, P.A.R ., Desti & Febliza , A. (2018). Analisis Kadar DO, BOD, dan COD Air Sungai Kuantan Terdampak Penambangan Emas Tanpa Izin. Jurnal Aquasains, 1 -11.




DOI: http://dx.doi.org/10.31258/terubuk.49.1.740-747

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