KARAKTERISTIK KUALITAS AIR SUNGAI CIHIDEUNG, KABUPATEN BOGOR, JAWA BARAT

Hefni Effendi, Aloysius Adimas Kristianiarso, Enan M Adiwilaga

Abstract


Pada bagian hulu Sungai Cihideung terdapat aktivitas pertanian, ladang, budidaya perikanan, dan jarang ditemukan pemukiman penduduk. Limpasan aktivitas pertanian dan budidaya perikanan, limpasan dari bengkel, dan limpasan dari pemukiman penduduk, akan berpengaruh terhadap karakteristik kualitas air sungai. Penelitian dilakukan di Sungai Cihideung, Kabupaten Bogor, Jawa Barat. Pengambilan contoh dilakukan sebanyak 3 kali dengan selang waktu 2 minggu. Penelitian bertujuan untuk mengetahui status kualitas air Sungai Cihideung, mulai dari Desa Purwasari, Kecamatan Dramaga, yang merupakan bagian hulu, hingga hilir yakni di belakang gedung Unit Satwa Harapan, Fakultas Peternakan, IPB di Desa Babakan. Karakteristik kualitas air sungai dapat dijadikan sebagai bahan pertimbangan dalam melakukan pengelolaan kualitas air sungai yang berkaitan dengan masukan dari lingkungan sekitarnya. Perairan Sungai Cihideung memiliki suhu 24-280C. Kekeruhan berkisar 11-32,3 NTU. TSS 0,67-32,67 mg/l. TDS 40,93-65,53 mg/l. Debit air 0,24-2,07 m3/detik. Perairan Sungai Cihideung memiliki kisaran pH 5,83-7,36. DO 8,34-10,58 mg/l. BOD5 0,20-4,12 mg/l. NH3-N 0,005-0,23 mg/l. NO3-N 0,06-0,70 mg/l. NO2-N 0,01-0,03 mg/l, dan total fosfat 0,48-1,07 mg/l. Indeks Storet memperlihatkan bahwa stasiun 1,3,4,5, Sungai Cihideung termasuk dalam kategori tercemar ringan (skor -8 sampai -10). Stasiun 2 tercemar sedang (skor -12). Hal ini karena telah terlampauinya baku mutu pH, NH3-N, dan total fosfat

Keywords


kualitas air, Sungai Cihideung, Indeks Storet, Insitut Pertanian Bogor

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References


(1) Najah, A. Eishafie, A. Karim, O.A. and Jaffar, O. 2009. Prediction of Johor River Water Quality Parameters Using Artificial Neural Networks. European Journal of Scientific Research Vol. 28 No. 3 (2009), pp. 422-435

(2) Aisien, F.A., Aisien, E.T. and Shaka, F. 2003. The effects of rubber factory effluent on Ikpoba river. Nigeria Journal of Biomedical Engineering. 2(1): 32-35

(3) Mwanuji, F.L. 2000. Assessment of water quality for Pangani river in Tanzania using QUAL2E windows version. 1 st WARFSA/WaterNet Symposium: Sustainable Use of Water Resources; Maputo, 1-2 November 2000

(4) Sing, R.B. and Chandna, V. 2011. Spatial analysis of Yamuna River water quality in pre- and post-monsoon periods. Water Quality: Current Trends and Expected Climate Change Impacts (Proceedings of symposium H04 held during IUGG2011 in Melbourne, Australia, July 2011) (IAHS Publ. 348, 2011) 8-13.

(5) APHA (American Public Health Association). 2005. Standard Methods For the Examination of Water and Waste water. 21st ed American Public Health Association (APHA). USA Port City Press. Washington DC.

(6) Bai, R.V. Bouwmeester, R. and Mohan, S. 2009. Fuzzy logic Water Quality index and importance of Water Quality Parameters. Air, Soil and Water Research 2:51–59

(7) Gadekar, M.R., Gonte R.N., Paithankar V.K., Sangale Y.B., and Yeola N.P. 2012. Review on River Water Quality Designation. International Journal of Emerging Technology and Advanced Engineering 2(9):493-495.

(8) Traichaiyaporn, S. and Chitmanat, C. 2008. Water Quality Monitoring in Upper Ping River, Thailand. Journal of Agriculture and Social Science 04–1–31–34

(9) [KepMenLH] Keputusan Menteri Negara Lingkungan Hidup No 115 Tahun 2003 tentang Penentuan Status Mutu Air Dengan Metode Indeks Pencemaran.

(10) Barus, I. T. A. 2001. Pengantar Limnologi. Direktorat Pembinaan Penelitian dan Pengabdian Pada Masyarakat. Direktorat Jendral Pendidikan Tinggi Jakarta. 164 hal.

(11) Effendi, H. 2003. Telaah kualitas air bagi pengelolaan sumberdaya dan lingkungan perairan. Kanisius. Yogyakarta. 258 hal.

(12) Secchi, S., Gassman, P.W., Jha, M., Kurkalova, L. and Kling, C.L. 2011. Potential water quality changes due to corn expansion in the Upper Mississippi River Basin. Ecological Society of America Journal 21(4).

(13) [PPRI] Peraturan Pemerintah Republik Indonesia Nomor 82 Tahun 2001 tentang Pengelolaan Kualitas Air dan Pengendalian Pencemaran Air. Jakarta.

(14) Mason, C.F. 1981. Biology of Freshwater Pollution. Longman. New York. 250 p.

(15) Niemi, J. and Raateland, A. 2007. River water quality in the Finnish Eurowaternet. Boreal Environmental Research, 12:571-584

(16) Vigil, K.M. 2003. Clean water. Second Edition. Oregon State University Press. Corvallis. 181p.

(17) Afiq, W.M., Khalik, W.M., Abdullah, M.P., Amerudin, N.A. and Padli, N. 2013. Physicochemical analysis on water quality status of Bertam River in Cameron Highlands, Malaysia. J.Mater. Environ. Sci. 4(4):488-495.

(18) Anonymous, 2012. Red River Basin Water Quality Monitoring Volunteer Manual. Minnesota, USA.

(19) Christensen, V.G., Lee, K.E., McLees, J.M. and Niemela, S.L. 2011. Relations between Retired Agricultural Land, Water Quality, and Aquatic-Community Health, Minnesota River Basin. Journal of Environmental Quality 41:1459-1472.

(20) Canadian Council of Resource and Environment Ministers. 1987. Canadian Water Quality. Canadian Council of Resource and Environment Ministers. Ontario. Canada.

(21) Dhakyanaika, K. and Kumara, P. 2011. Effects of pollution in River Krishni on hand pump water quality. Journal of Engineering Science and Technology Review 3(1):14-22.

(22) Pisinaras, V., Petalas, C., Gemitzi, A. and Tsihrintzis, V.A. 2007. Water quantity and quality monitoring of Kosynthos River, North-Eastern Greece. Global NEST Journal, 9(3):259-268.

(23) Vhevha, I., Ndamba, J. and Mtetwa, S. 2000. Changes in river water quality with increasing distance from site of wastewater use. 1st WARFSA/ WaterNet Symposium: Sustainable Use of Water Resources, Maputo, 1-2




DOI: https://doi.org/10.20886/jklh.2013.7.2.81-92

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