Treatment of Fish Processing Wastewater using the Multi Soil Layering Method

Authors

  • Maulidah Syakiroh Universitas Pembangunan Nasional “Veteran” Jawa Timur Author
  • Rizka Novembrianto Universitas Pembangunan Nasional "Veteran" Jawa Timur Author

Keywords:

fish processing wastewater, multi soil layering, soil type, hydraulic loading rate, sampling time

Abstract

The wastewater generated by fish-processing industries in Lamongan Regency contains TSS, BOD₅ and COD concentrations that exceed the quality standards specified in East Java Provincial Regulation No. 72/2013. The media in the Multi Soil Layering method consist of a mixture of soil and charcoal, along with a permeable layer. This research aims to analyze the effectiveness of MSL method with variations in soil type, Hydraulic Loading Rate, and sampling time. The results indicate that red soil is the most effective in removing TSS 89,26%, while andosol soil is more efficient in reducing BOD₅ 42,86% and COD 68,33%. The physical, chemical, and mineral properties of each soil type significantly influence pollutant removal performance. Pollutant removal at an HLR of 0,2 m3/m².hour was more optimal compared to 0,4 m3/m².hour, as the lower HLR allows longer contact time between the wastewater and the media in the reactor. Sampling at the 7-hour mark yields optimal efficiency, indicating that the media had not yet reached saturation.

References

[1] Dinas Kelautan dan Perikanan Provinsi Jawa Timur, “Rencana Strategis (Renstra) Dinas Kelautan dan Perikanan Provinsi Jawa Timur Tahun 2014 - 2019”. 2019.

[2] M. Efriana, “Reduksi Pencemar Limbah Cair Pengolahan Ikan dengan Metode Fotodegradasi Menggunakan Seng Oksida (ZnO),” 2022.

[3] Peraturan Gubernur Jawa Timur, “Peraturan Gubernur Jawa Timur No. 72 Tahun 2013 tentang Baku Mutu Air Limbah bagi Industri dan/atau Kegiatan Usaha Lainnya”. 2013.

[4] A. Shakira, A. Mullah, A. M. Hamdan, and S. S. Lubis, “Efektivitas Metode Multi Soil Layering (MSL) dalam Penurunan Total Koliform Limbah Cair Domestik,” Dampak, Vol.20, No.2, PP.83, 2023, doi: 10.25077/dampak.20.2.83-92.2023.

[5] R. Y. Hardiyanto and O. H. Cahyonugroho, “Efektivitas Kombinasi Media Adsorbent Tongkol Jagung dan Cangkang Kerang dengan Metode Multi Soil Layering (MSL) Pada Limbah Cair Hotel,” Envirous, vol. 3, no. 1, pp. 95–101, 2022, doi: 10.33005/envirous.v3i1.72.

[6] A. Mullah, N. Aida, A. Syakira, and A. M. Hamdan, “Utilization of PDAM Sedimentation Sludge as a Multi Soil Layering (MSL) Substance in the Degradation of Liquid Waste Contaminants from the Tofu Industry,” J. Phi J. Pendidik. Fis. dan Fis. Terap., Vol.10, No.1, PP.1, 2024, doi: 10.22373/p-jpft.v10i1.19715.

[7] S. Sbahi, L. Mandi, T. Masunaga, N. Ouazzani, and A. Hejjaj, “Multi-Soil-Layering, the Emerging Technology for Wastewater Treatment: Review, Bibliometric Analysis, and Future Directions,” Water (Switzerland), Vol.14, No.22, 2022, doi: 10.3390/w14223653.

[8] S. Sbahi, N. Ouazzani, L. Latrach, A. Hejjaj, and L. Mandi, “Predicting the concentration of total coliforms in treated rural domestic wastewater by multi-soil-layering (MSL) technology using artificial neural networks,” Ecotoxicol. Environ. Saf., Vol.204, No. May, PP. 111118, 2020, doi: 10.1016/j.ecoenv.2020.111118.

[9] A. M and H. R.P., “Efektifitas Pupuk Organik Cair Limbah Ikan dan Trichoderma sp terhadap Pertumbuhan dan Hasil Tanaman Kailan (Brassica oleraceae sp) pada Sistem Hidroponik Substrat,” J. Agrosains dan Teknol., 2018.

[10] I. Bustami, P. Suptijah, and B. S. Agung, “Pengaruh Jarak Elektroda Microbial Fuel Cell pada Limbah Cair Pemindangan Ikan terhadap Elektrisitas dan Beban Pencemaran,” Vol.20, PP.559–567, 2017.

[11] S. Luanmanee, T. Attanandana, T. Masunaga, and T. Wakatsuki, “The efficiency of a multi-soil-layering system on domestic wastewater treatment during the ninth and tenth years of operation” Ecol. Eng., Vol.18, No.2, PP.185–199, 2001, doi: 10.1016/S0925-8574(01)00077-5.

[12] O. S., Samsidar, N. M., and Nehru, “Identifikasi Mineral pada Batuan Granit di Geopark Merangin Provinsi Jambi menggunakan X-Ray Diffraction (XRD) dan Scanning Electron Microscopy,” J. Physic, Vol.1, No. November 2015, PP. 12–17, 2015.

[13] R. Raja Madhavan, A. S. Gandhi, and K. V. Govindan Kutty, “Sodium titanium phosphate NaTi2(PO4)3 waste forms for immobilization of simulated high level waste from fast reactors,” Ceram. Int., Vol.43, No.12, PP. 9522–9530, 2017, doi: 10.1016/j.ceramint.2017.04.138.

[14] P. L. Aliou Guillaume, A. M. Chelaru, M. Visa, and O. Lassine, “‘Titanium Oxide-Clay’ as Adsorbent and Photocatalysts for Wastewater Treatment,” J. Membr. Sci. Technol., Vol.8, No.1, PP. 1–11, 2018, doi: 10.4172/2155-9589.1000176.

[15] L. Szymoniak, D. Claveau-Mallet, M. Haddad, and B. Barbeau, “Application of Magnesium Oxide Media for Remineralization and Removal of Divalent Metals in Drinking Water Treatment: A Review,” Water (Switzerland), Vol.14, No.4, 2022, doi: 10.3390/w14040633.

[16] S. W. Pratiwi and A. Amalia, “View of Pengaruh Aktivator dan Laju Alir dengan Metode Slow Sand Filter menggunakan Kombinasi Karbon Aktif Alami untuk Pengolahan Air Telaga.pdf,” J. Serambi Eng., Vol.10, No.1, PP. 11506–11512, 2025.

[17] F. F. Assidiq and H. Hardoyo, “Penurunan Konsentrasi TSS Limbah Cair Industri Tahu menggunakan Metode Filtrasi Dual Media Zeolit Dan Silika,” J. Lingkung. dan Sumberd. Alam, Vol.6, No.2, PP. 105–114, 2023, doi: 10.47080/jls.v6i2.2209.

[18] A. M. Hamdan, T. M. Ashari, Z. Iklima, H. Dzihninafira, A. Rahmatillah, and A. Sarif, “Penggunaan Metode Multi Soil Layering (MSL) untuk Penyisihan Pencemar pada Limbah Cair Industri Pembekuan Ikan,” JRST (Jurnal Ris. Sains dan Teknol., Vol.7, No.1, PP. 103, 2023, doi: 10.30595/jrst.v7i1.16652.

[19] R. Haribowo, S. Megah, and W. Rosita, “Efisiensi Sistem Multi Soil Layering pada Pengolahan Air Limbah Domestik pada Daerah Perkotaan Padat Penduduk,” J. Tek. Pengair., Vol.10, No.1, PP. 11–27, 2019, doi: 10.21776/ub.pengairan.2019.010.01.2.

[20] T. F. Ma, J. Wu, L. Feng, X. P. Chen, and J. He, “Progress in Multi-Soil-Layering Systems for Wastewater Treatment,” Sustain.Vol.16, No.8, 2024, doi: 10.3390/su16083330.

[21] Y. C. Chen and H. W. Pat, “Comparing natural red soil and irons for removal of phosphorus from wastewater using the multi-soil-layering system and its economic analysis,” J. Environ. Manage., Vol.296, No.April, PP.113252, 2021, doi: 10.1016/j.jenvman.2021.113252.

[22] Wang, Yongwei, et al. "Influence of soil particle size on the engineering properties and microstructure of a red clay." Applied Sciences 11.22 (2021): 10887.

[23] Y. Huang et al., “Ion-Exchange Model for the Leaching Process of Ion-Adsorption-Type Rare-Earth Ores Considering the Influence of Anions,” Minerals, Vol.13, No.12, 2023, doi: 10.3390/min13121475.

[24] S. Salmariza and Sofyan, “Aplikasi Metoda MSL (Multi Soil Layering) untuk Mengolah Air Limbah Industri Edilble Oil,” Vol. V, No. 3, pp. 227–238, 2011.

[25] Kesaulya, Noke. "Remediasi Elektrokinetik Terhadap Logam-Logam Berat Menggunakan Elektroda 2-D Hexagonal pada Tanah dari Tempat Pembuangan Akhir (TPA) Toisapu Ambon." Molluca Journal of Chemistry Education (MJoCE) (2019).

[26] Saputri, Sonnia Fauziah, and Aprilia Wulan Isnaini. Pengaruh Gelombang Ultrasonik pada Pembuatan Adsorben Zeolit-Magnesium Silikat untuk Adsorpsi Karbon Dioksida. Diss. Universitas Brawijaya, 2018.

[27] A. Emriyati, “Pengaruh Konsentrasi NH4NO3 pada Proses Aktivasi Zeolit Alam terhadap Kemampuan H-Zeolit sebagai Penukar Ion Amonium pada Air Limbah Rumah Tangga,” Universitas Islam Indonesia, 2002.

[28] S. Andrada Măicăneanu and H. Bedelean, “Na+-NH4+ cation exchange study on treated zeolitic volcanic tuff in fixed bed column,” Stud. Univ. Babes-Bolyai Chem., Vol.65, No.3, pp. 89–100, 2020, doi: 10.24193/subbchem.2020.3.07.

[29] R. Marsidi, “Proses Nitrifikasi dengan Sistem Biofilter untuk Pengolahan Air Limbah yang mengandung Amoniak Konsentrasi Tinggi,” J. Teknol. Lingkung., Vol.3, No.3, pp. 195–205, 2011.

Downloads

Published

30/06/2026

Issue

Section

Articles

How to Cite

[1]
“Treatment of Fish Processing Wastewater using the Multi Soil Layering Method”, jse, vol. 11, no. 3, Jun. 2026, Accessed: Jul. 01, 2026. [Online]. Available: http://jse.serambimekkah.id/index.php/jse/article/view/1844

Similar Articles

11-20 of 653

You may also start an advanced similarity search for this article.