Peat Water Treatment with Magnetic Carbon/Clay Composite from Spent Bleaching Earth Palm Oil Processing Waste

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Risma Rahmawati
Annisa Nurfadilla Nigravita
Indira Larasati
Rafshel Heikal Mahafani
Reihan Syafutra
Sunardi Sunardi

Abstract

Spent Bleaching Earth (SBE) is one of the largest wastes produced from the crude palm oil (CPO) refining industry. SBE can be converted into carbon for various purpose. Modification of SBE into magnetic carbon/clay composites can improve its performance. Modification SBE into magnetic carbon/clay composites can improve the pore structure and surface of the material. This research aims to synthesize magnetic carbon/clay composites from SBE using the co-prepitation method and apply it to peat water treatment by degradation method. The results obtained from this research, organic compounds in peat water can be degraded as much as 87.1875% within 20 minutes. In addition, the pH of peat water has increases and the intensity of peat water color has been decrease.

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References

Bhuyan, P. M., Borah, S., Bhuyan, B. K., Hazarika, S., Gogoi, N., Gogoi, A., & Gogoi, P. (2023). Fe3S4/biochar Catalysed Heterogeneous Fenton Oxidation of Organic Contaminants: Hydrogen Peroxide Activation and Biochar Enhanced Reduction of Fe (III) to Fe (II). Separation and Purification Technology, 312(1), 1-15.

Hanh, N. T., An, H., Tinh, N. T., Nam, N. T. H., Cong, C. Q., Hai, N. D., Dat, N. M., Huong, L. M., Bao, L. M., & Hieu, N. H. (2023). Methylene Blue Elimination by Magnetic Ferric Oxide-Decorated and Sulfonated Sugarcane Bagasse-Derived Porous Carbon Via Catalysis Fenton Reaction. Materials Letters, 347(1), 1–5.

Irawati, U., Maulana, N., & Manurung, T. W. (2023). Penggunaan Slow Sand Filter dalam Pengolahan Air Gambut untuk Menurunkan Turbiditas dan Kandungan Senyawa Organik. Jurnal Pengelolaan Lingkungan Berkelanjutan, 7(2), 135–147.

Lubis, K. L., Elystia, S., Ermal, D. A. S., & Zultiniar, Z. (2022). Penyisihan Logam Fe Pada Air Gambut Menggunakan Membran Chitosan Sebagai Adsorben. Jurnal Sains Teknologi & Lingkungan, 8(1), 15–24. https://doi.org/10.29303/jstl.v8i1.298

Nur, S., Mbajo, S. La, & Putri, A. (2021). Pemanfaatan Air Gambut untuk Berwudhu dalam Perspektif Fikih Taharah. Jurnal Bidang Hukum Islam, 3(3), 438–456.

Nurdiansah, H., & Susanti, D. (2013). Pengaruh Variasi Temperatur Karbonisasi dan Karbon Aktif Tempurung Kelapa dan Kapasitansi Electric Double Layer Capacitor. Jurnal Teknik Pomits, 2(1), 13–18.

Rahmawati, Wilaksono, A., Amri, N., Davidson, K. N., & Rimawan, B. (2018). Adsorpsi Air Gambut Menggunakan Karbon Aktif dari Buah Bintaro. Chempublish Journal, 2(2), 11–20.

Sitanggang, E. P. O., Kholiza, N., & Ivontianti, W. D. (2022). Efektivitas Pengolahan Air Gambut Kota Pontianak dengan Adsorpsi Menggunakan Karbon. Envirotek?: Jurnal Ilmiah Teknik Lingkungan Efektiv, 14(2), 182–187.

Tim Riset PASPI. (2020). Spent Bleaching Earth (SBE) Harta Terpendam Dari Limbah Industri Refinery Sawit. Palm Journal, 1(20), 131–136.

Wang, J., & Wang, S. (2019). Preparation, modification and environmental application of biochar: A review. Journal of Cleaner Production, 227(1), 1002–1022. https://doi.org/10.1016/j.jclepro.2019.04.282