Sistem Pengeolahan Limbah Cair Pada Kolam Pengendapan Lumpur I (KPL I) Menggunakan Metode Waste Water Treatment Plant PT. X

Authors

  • Ahmad Yori Tegar Pratama Universitas Malahayati
  • Panisean Nasution Universitas Malahayati
  • Natalina Natalina ahmadyori08@gmail.com

DOI:

https://doi.org/10.61722/jmia.v2i6.7134

Keywords:

WWTP, wastewater, KPL, waste treatment, PT X, water quality

Abstract

This internship report discusses the wastewater treatment system at Sedimentation Pond I (KPL
I) using the Waste Water Treatment Plant (WWTP) method at PT X, Tarahan Port Unit. The objective is to
analyze the wastewater treatment process to meet the Environmental Quality Standards (BML) as regulated
in Lampung Province Regional Regulation No. 11 of 2012. The WWTP process includes several stages,
from initial sedimentation in KPL, chemical processes (coagulation, flocculation, and filtration), to
monitoring key water quality parameters such as pH, TSS, Fe, and Mn. Results show that the WWTP system
is highly efficient in reducing pollutants and maintaining wastewater quality to prevent environmental
contamination. Despite challenges such as high operational costs and sludge accumulation, the system is
proven to be effective in supporting environmental sustainability in the mining port area.

References

Ali, M., et al. (2020). "Impact of Industrial Effluents on Water Quality: A Case Study of

Ganga River." Journal of Environmental Management, 259, 109-126.

Aziz, H.A., & Adlan, M.N. (2006). Application of Wastewater Treatment in Mining

Industry: A Review. Journal of Environmental Science and Technology, 3(2), 1

Cathrine Gabriela Bakkara dan Alfan Purnomo , (2022) ,Departemen Teknik

Lingkungan, Kajian Instalasi Pengolahan Air Limbah Domestik Terpusat di

Indonesia , Institut Teknologi Sepuluh Nopember (ITS)

Hilson, G. (2000). Sustainable Development Policies in Canada's Mining Sector: An

Overview of Government and Industry Efforts. 26(1), 15-29.

Jain, R., et al. (2018). Sustainable Industrial Waste ater Management: Current Practices

and Future Perspectives. Springer.

Jurnal Lingkungan Industri. (2019). "Penerapan Sistem WWTP pada Industri Tambang

dalam Mendukung SDGs." Jurnal Lingkungan Industri, 15(2), 123-135.

Lottermoser, B.G. (2010). Mine Wastes: Characterization, Treatment, and

Environmental Impacts. Springer.

Metcalf, L., & Eddy, H. (2003). Wastewater Engineering: Treatment and Reuse.

McGraw-Hill.

Metcalf, L., & Eddy, H. (2013). Wastewater Engineering: Treatment and Reuse.

McGraw-Hill.

Munir, M. (2015). Pengolahan Limbah Cair untuk Industri Berkelanjutan. Bandung:

Pustaka Ilmu.

Panggabean, P.M . 2000. Minimisasi Limbah Pada Pusat Pengembangan Pengolahan

Limbah Radioaktif

Raghav, S., et al. (2021). "Advancements in Tertiary Treatment Technologies for

Industrial Wastewater." Environmental Advances, 2(4), 100-110.

Rahmawati, D., et al. (2018). "Pengolahan Limbah Cair Tambang Menggunakan Sistem

WWTP." Jurnal Teknologi Lingkungan, 19(2), 85-94.

Sutrisno, B. (2017). Dampak dan Pengolahan Limbah Cair pada Industri Tambang.

Yogyakarta: Deepublish.

Suyono, Titisariwati, I., Mustaqfirin, A. (2015). Rancangan Teknis Sistem Penyaliran

Tambang pada Pit 3000 Block 5 South Block PT. Trubaindo Coal Mining

Kabupaten Kutai Barat Provinsi Kalimantan Timur.Jurnal Teknologi

Pertambangan,1(1), 52-57

Tchobanoglous, G., et al. (2014). Wastewater Engineering: Treatment and Resource

Recovery. McGraw-Hill.

United Nations. (2015). Transforming our World: The 2030 Agenda fo Sustainable

Development. Retrieved from sdgs.un.org.

Wang, L.K., Hung, Y.T., & Shammas, N.K. (2005). Physicochemical Treatment

Processes. Handbook of Environmental Engineering, Volume 3.

WHO. (2021). "Guidelines for Drinking-Water Quality." World Health Organization.

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Published

2025-11-25

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