Pengaruh Perbedaan Ukuran dan Massa Adsorben Pelepah Sawit Teraktivasi dalam Pemurnian Minyak Jelantah Menggunakan Metode Shaker
Abstract
Used oil more commonly referred to as used cooking oil is household waste that contains carcinogenic compounds which are very dangerous if consumed by the human, so that it does not become waste in the community can be used as raw material for making biodiesel. Used cooking oil processing can be done with the use of adsorbents so that used cooking oil becomes clear and its quality can be maintained. Palm Oil has the potential to be used as carbon which functions as an Adsorbent in the refining of used cooking oil. In this study, palm fronds were carbonized using pyrolysis with a temperature of 3500C then mashed and sifted with mesh sizes of 50, 70, and 100 mesh. Followed by the activation process using 0.1 M sulfuric acid solution (H2SO4) for 3 hours and then dried using an oven. The results of the study showed that the best turbidity was an adsorbent measuring 100 mesh with a mass of 4.5 grams, the final turbidity obtained with a value of 15.9 NTU with a total turbidity reduction of 108.6 NTU.
Downloads
References
Hadrah H, Kasman M, Sari FM. Analisis Minyak Jelantah Sebagai Bahan Bakar Biodiesel dengan Proses Transesterifikasi. J Daur Lingkung 2018;1:16–21. https://doi.org/10.33087/daurling.v1i1.4.
Statistik BP. Rata-rata Konsumsi Perkapita Seminggu Menurut Kelompok Minyak dan Kelapa Per Kabupaten_kota 2023.
Muhammad, Hafidzi N, Nikmah F, Hidayah, Nurul U, Haqiqi, Arghob K. Arang Aktif Kayu Leucaena Leucocephala sebagai Adsorben Minyak Goreng Bekas Pakai (Minyak Jelantah). Phys Educ Res J 2020;2:123–30. https://doi.org/10.21580/perj.2020.2.2.6176.
Ismadji S, Soetardjo FE, Santoso SP, Putro JN, Yuiana maria, Hartono SB, et al. Adsorpsi Pada Fase Cair Kesetimbangan, Kinetika Dan Termodinamika. 2021.
Rahman NA, Parawitasari Pardede E, Mularen A. Pemurnian Minyak Jelantah Menggunakan Adsorben Berbasis Cangkang Telur. Pros SENIATI 2022;6:785–93. https://doi.org/10.36040/seniati.v6i4.5048.
Mentari, Vidyanova A, Handika G, Maulina S. Perbandingan Gugus Fungsi dan Morfologi Permukaan Karbon Aktif dari Pelepah Kelapa Sawit Menggunakan Aktivator Asam Fosfat (H3PO4) dan Asam Nitrat (HNO3). J Tek Kim USU 2018;7:16–20. https://doi.org/10.32734/st.v1i2.299.
Sagita N, Aprilia H, Arumsari A. Penggunaan Karbon Aktif Tempurung Pala ( Myristica fragrans Houtt ) Sebagai Adsorben untuk Pemurnian Minyak Goreng Bekas Pakai. Pros Farm 2020;6:74–80.
Maulina S, Putri FS. Pengaruh Suhu, Waktu, dan Kadar Air Bahan Baku Terhadap Pirolisis Serbuk Pelepah Kelapa Sawit. J Tek Kim USU 2017;6:35–40.
Mukhlis, Itnawita, Kartika AC, Cani FF. Evaluasi Kemampuan HCl dan H2SO4 Sebagai Aktivator Adsorben Bubuk Kulit Batang Sagu (Metroxylon Sagu). J Sains Dan Kesehat 2021;11:111–20.
Alyeris ASO. Analisis Uji Laboratorium Pemanfaatan Karbon Aktif Limbah Pelepah Sawit Sebagai Adsorben Terhadap Pengolahan Air Terproduksi. 2021.
Haryanto B, Pelawi A, Octavia, Sidauruk SY, Alexander V, Tambun R, et al. Natural operation in removing waste compounds within cooking oil using corn cob as adsorbent. IOP Conf Ser Earth Environ Sci 2023;1241. https://doi.org/10.1088/1755-1315/1241/1/012114.
Copyright (c) 2024 Dwi Annisa Fithry, Bode Haryanto, Naia Salsa Billah, Astrina Hutabarat, Hidayat Prayogo

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.

