Analisa Jartest Untuk Mengetahui Dosis Optimum Harian Poly Aluminium Chloride (PAC) di PDAM Krian

Authors

  • Muhammad Hisyam Fauzan Universitas Pembangunan Negeri “Veteran” Jawa Timur
  • Munawar Ali Universitas Pembangunan Negeri “Veteran” Jawa Timur

DOI:

https://doi.org/10.61132/venus.v2i4.385

Keywords:

Effective, IPA Krian, Optimum Dose, Poly Alumunium Chloride

Abstract

Clean water is one of the most basic needs of humans as it is constantly needed in their daily activities to survive. The aim of this study is to ensure the correct dosage of Poly Aluminium Chloride (PAC) for at a certain level of rigidity and to avoid chemical waste. Overall, data analysis shows that the water quality in IPA Krian is well awake and in line with applicable standards. This reflects an effective water quality management and monitoring system at the site, with proper adjustment of the fluorescent dosage and the implementation of an efficient water management system.

References

Anton Budiman, C., & Candra Wahyudi. (2008). Kinerja Koagulan Poly Aluminium Chloride (PAC) Dalam Penjernihan Air Sungai Kalimas Surabaya, 25–34.

F. N. Nabih, A., A. Takwanto, & M. Rahayu. (2021). Pengaruh Konsentrasi Ozon terhadap Nilai pH dan Total Dissolve Solid (TDS) Produk Air Minum dalam Kemasan (Amdk). Distilat J. Teknol. Separasi, 7(2), 347–352. https://doi.org/10.15408/djts.v7i2.21565

Kencanawati, M., & Mustakim. (2017). Analisis Pengolahan Air Bersih pada WTP PDAM Prapatan Kota Balikpapan. J. TRANSUKMA, 2(2), 2502–1028.

Khoiro, N. A., Fahmia, Z., Takwanto, A., & Kusuma, R. M. (2021). Pemanfaatan Lumpur Aktif sebagai Koagulan di Unit Water Treatment PPSDM Migas Cepu. J. Teknol. Separasi, 7(9), 20–29.

Koesoemawiria, E. (2013). FAO: Angka Kelaparan Masih Tinggi. DW.

Mayasari, R., Rizka, & Hastarina, M. (2019). Optimalisasi Dosis Koagulan Aluminium Sulfat Dan Poli Aluminium Klorida (PAC) (Studi Kasus PDAM Tirta Musi Palembang). Jurnal Ilmiah Teknik Industri, 3(2), 28–36.

Meidhitasari, V. (2007). Evaluasi dan Modifikasi Instalasi Pengolahan Air Minum. ITB, Bandung.

Octavianka, H., & Purnomo, A. (2023). Perbandingan Kemampuan Poly Aluminium Chloride (PAC) dan Biokoagulan dari Tepung Jagung Pada Instalasi Pengolahan Air Bersih di PT. Semen Indonesia. Jurnal Teknik ITS, 12(2), 2337-3539. https://doi.org/10.12962/j23373539.v12i2.92530

Permatasari, T. J., & Apriliani, E. (2013). Optimasi Penggunaan Koagulan dalam Proses Penjernihan Air. J. Sains dan Seni Pomits, 2(1), 6–11. https://doi.org/10.12962/j23546031.v2i1.219

Prayogo, T. B. (2015). Garuda347599, 6(2), 105–114.

Purba, R. H., Mubarak, & Musrifin Galib. (2018). Sebaran Total Suspended Solid (Tss) Di Kawasan Muara Sungai Kampar Kabupaten Pelalawan Provinsi Riau Distribution Off Total Suspended Solid (Tss) In The Estuary Of Kampar River District Of Pelalawan Riau Province. Jurnal Perikanan Dan Kelautan, 23(1), 21–30.

Rosariawari, & Irwan. (2010). Effektifitas PAC dan Tawas untuk Menurunkan Kekeruhan pada Air Permukaan. Teknik.

Yudo, S. (2018). Kondisi Kualitas Air Sungai Ciliwung Di Wilayah Dki Jakarta Ditinjau Dari Paramater Organik, Amoniak, Fosfat, Deterjen Dan Bakteri Coli. Jurnal Air Indonesia, 6(1). https://doi.org/10.29122/jai.v6i1.2452

Published

2024-06-21

How to Cite

Muhammad Hisyam Fauzan, & Munawar Ali. (2024). Analisa Jartest Untuk Mengetahui Dosis Optimum Harian Poly Aluminium Chloride (PAC) di PDAM Krian. Venus: Jurnal Publikasi Rumpun Ilmu Teknik , 2(4), 41–48. https://doi.org/10.61132/venus.v2i4.385

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