Water Quality of Pasuruan Juri River based on Macrozoobenthos Diversity Index
DOI:
https://doi.org/10.26740/lenterabio.v13n3.p492-499Keywords:
aquatic environment, waste , aquatic ecosystemsAbstract
Juri River is part of the Welang River unit that flows from the Arjuna mountains. Based on its location, the Juri River passes through many settlements so that a lot of garbage is disposed of in the Juri River flow, one of which is chicken slaughtering waste, which is dangerous for the environment because it contains many organic compounds that can have an impact on water quality. This research aims to determine the water quality of Juri River, which is polluted by slaughtered chicken waste from chemical, biological, and physical parameters, especially on the macrozoobenthos diversity index in Juri River. Macrozoobenthos found were identified based on morphological characters, and the diversity index was reviewed using the Shannon-Wiener formula. Data analysis used descriptive quantitative analysis. The results illustrate that the condition of the Juri Pasuruan River is included in the moderately polluted category, with a macrozoobenthos diversity index of 1.175 and a BOD value that exceeds the quality standard. This indicates the presence of pollutants in the Juri River, such as chicken slaughter waste.
References
Arfiati D, Herawati EY, Buwono NR, Firdaus A, Winarno MS, and Puspitasari AW, 2019. Struktur Komunitas Makrozoobentos pada Ekosistem Lamun di Paciran, Kabupaten Lamongan, Jawa Timur. JFMR (Journal of Fisheries and Marine Research); 3(1): 1-7.
Boyd CE, 2019. Water quality: an introduction. Springer Nature. Berlin.
Cao L, Zhang D, Guo Q, and Zhan J, 2021. Inversion of Water Quality Parameter BOD5 Based on Hyperspectral Remotely Sensed Data in Qinghai Lake. In 2021 IEEE International Geoscience and Remote Sensing Symposium IGARSS (pp. 5036-5039). IEEE.
Cumberlidge N, 1999. The freshwater crabs of West Africa: family Potamonautidae (Vol. 36). IRD editions.
Deswati D, Safni S, Khairiyah K, Yani E, Yusuf Y, and Pardi H, 2022. Biofloc Technology: Water Quality (pH, temperature, DO, COD, BOD) in a Flood & Drain Aquaponic System. International Journal of Environmental Analytical Chemistry; 102(18): 6835-6844.
Edmondson WT (Ed.), 1959. Fresh-water biology. John Willey and Sons. New York.
Effendi H, 2003. Telaah Kualitas Air bagi Pengelolaan Sumberdaya dan Lingkungan Perairan. Yogyakarta: Penerbit Kanisius.
Ernawati NM, and Dewi APWK, 2016. Kajian Kesesuaian Kualitas Air Untuk Pengembangan Keramba Jaring Apung di Pulau Serangan, Bali. Ecotrophic; 10(1): 75-80.
Fadilla RN, Melani WR, and Apriadi T, 2021. Makrozoobentos sebagai Bioindikator Kualitas Perairan di Desa Pengujan Kabupaten Bintan. Habitus Aquatica; 2(2): 83-94.
Fagbayide SD, and Francis OA, 2017. Effects of Human Activities on Water Quality Assessment of Ala River in Akure, Ondo State, Nigeria. World Journal of Environmental Research; 8(1): 37- 44.
Fardiaz S, 2006. Polusi Air dan Udara. Yogyakarta: Penerbit Kanisius.
Gupta N, Pandey P, and Hussain J, 2017. Effect of Physicochemical and Biological Parameters on the Quality of River Water of Narmada, Madhya Pradesh, India. Water Science; 31(1): 11-23.
Hendrasarie N, and Santosa BA, 2019. Pengolahan Limbah Cair Rumah Potong Hewan Menggunakan Rotating Biological Contactor Modifikasi Sludge Zone. Journal of Research and Technology; 5(2): 168-177.
Hernawati RT, 2021. Kepiting Air Tawar (Decapoda: Brachyura) Dari Lereng Selatan Gunung Slamet, Kabupaten Banyumas, Provinsi Jawa Tengah. Zoo Indonesia; 28(2): 97-111.
Jeratthitikul E, Paphatmethin S, Sutcharit C, Ngor PB, Inkhavilay K, and Prasankok P, 2022. Phylogeny and Biogeography of Indochinese Freshwater Mussels in the Genus Pilsbryoconcha Simpson, 1900 (Bivalvia: Unionidae) with Descriptions of Four New Species. Scientific Reports; 12(20458): 1-12.
Junaidi FF, 2014. Analisis Distribusi Kecepatan Aliran Sungai Musi (Ruas Jembatan Ampera sampai dengan Pulau Kemaro). Jurnal Teknik Sipil dan Lingkungan; 2(3): 542-552.
Lee CD, Wang SB, and Kuo CL, 1978. Benthic Macroinvertebrate and Fish as Biological Indicators of Water Quality, with Reference to Community Diversity Index. Bangkok. Thailand. International Conference on Water Pollution Control in Development Countries.
Musayaroh S, and Muntalif BS, 2020. Determination of Surface Water Quality based on Macrozoobenthos Biodiversity and The Prevalence of Trematodes cercariae in Freshwater Molluscs. Malaysian Applied Biology; 49(2): 19-25.
Mushthofa A, Rudiyanti S, and Muskanonfola MR, 2014. Analisis Struktur Komunitas Makrozoobenthos sebagai Bioindikator Kualitas Perairan Sungai Wedung Kabupaten Demak. Management of Aquatic Resources Journal (MAQUARES); 3(1): 81-88.
Ningrum NC, and Kuntjoro S, 2022. Kualitas Perairan Sungai Brangkal Mojokerto berdasarkan Indeks Keanekaragaman Makrozoobentos. LenteraBio: Berkala Ilmiah Biologi; 11(1): 71-79.
Peraturan Pemerintah, 2021. Peraturan Pemerintah (PP) tentang Penyelenggaraan Perlindungan dan Pengelolaan Lingkungan Hidup. Web publication https://peraturan.bpk.go.id/Home/Details/161852/pp-no-22-tahun-2021. Accessed 15 October 2023
Purba NC, and Fitrihidajati H, 2021. Kualitas Perairan Sungai Sadar Berdasarkan Indeks Keanekaragaman Makrozoobentos dan Kadar Logam Berat (Pb) di Kabupaten Mojokerto. LenteraBio: Berkala Ilmiah Biologi; 10(3): 292-301.
Putri VT, Kartini N, Yudha IG, and Damai AA, 2021. The Performance Of Macrozoobentos As A Bioindicator Of Water Quality In The Lower Parts Of The Hurun Lampung River. Journal of Aquatropica Asia; 6(2): 72-82.
Rachman H, Priyono A, and Mardianto Y, 2016. Makrozoobenthos sebagai Bioindikator Kualitas Air Sungai di Sub Das Ciliwung Hulu. Media Konservasi; 21(3): 261-269.
Sandi MA, Arthana IW, and Sari AHW, 2017. Bioassessment dan Kualitas Air Daerah Aliran Sungai Legundi Probolinggo Jawa Timur. Journal of Marine and Aquatic Sciences; 3(2): 233- 241.
Selvianita S, Zainal S, and Bustamim B, 2024. Macrozoobentos Diversity as A Bioindicator of Water Quality in Poso Lake, South Pamona District, Poso Regency and Its Utilization as A Learning Media. Equator Science Journal; 2(2): 27-42.
Sidik RY, Dewiyanti I, and Octavina C, 2016. Struktur Komunitas Makrozoobentos dibeberapa Muara Sungai Kecamatan Susoh Kabupaten Aceh Barat Daya. Jurnal Ilmiah Mahasiswa Kelautan dan Perikanan Unsyiah; 1(2): 287-296.
Simanjuntak SL, Muskananfola MR, and Taufani WT, 2018. Analisis Tekstur Sedimen dan Bahan Organik Terhadap Kelimpahan Makrozoobenthos di Muara Sungai Jajar, Demak. Management of Aquatic Resources Journal (MAQUARES); 7(4): 423-430.
Standar Nasional Indonesia, 2009. Cara Uji Kebutuhan Oksigen Kimiawi (Chemical Oxygen Demand/COD) dengan Refluks Tertutup secara Spektrofotometri. Jakarta: Badan Standarisasi Nasional.
Umroningsih U, 2022. Limbah Cair Menyebabkan Pencemaran Lingkungan. Jisos: Jurnal Ilmu Sosial; 1(7): 647-666.
Zulkifli H, and Setiawan D, 2011. Struktur Komunitas Makrozoobentos di Perairan Sungai Musi Kawasan Pulokerto sebagai Instrumen Biomonitoring. Jurnal Natur Indonesia; 14(1): 95-99.
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