Selektivitas Adsorpsi Campuran Biner Fe(II)/Cu(II) Menggunakan Karbon Aktif dari Sekam Padi dan Serbuk Gergaji Kayu Jati

Cucun Alep Riyanto, Jose D Michael Yonggulemba, Delvi Anandhia Stefani, Tirza Widyamurti Brotosudarmo, Diki Anggaran, Yehez Kiel Sandy Pradana, Yohanes Ariesto, Fidelis Tertius Aluh Christyawardana, Iga Permata Sari, Nicho Vernanda Wina Puspita, Lutiyono Lutiyono
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Abstract

Increasing human needs cause an increase in production on an industrial scale and can have an impact on increasing contamination of the aquatic environment. Efforts to improve water quality can be made by removing contaminants using renewable activated carbon originating from agricultural waste such as rice husks and teak sawdust. This research aims to examine the adsorption capacity of activated carbon from rice husks (RHAC) and teak sawdust (TSAC) on a binary mixture of Fe(II)/Cu(II) as well as the level of selectivity of each adsorbent on Fe(II) and Cu(II) ions. RHAC and TSAC activated carbon are produced through carbonization processes (T=400 °C, t=60 minutes), reflux (NaOH 2N, T=100 °C, t=120 minutes), chemical activation using H3PO4 (30%, 1:3, b/b) and physics (furnace). The results of this research are that RHAC and TSAC activated carbon have the functional groups O-H (str), C-H (str), C≡C, C=C, C-O (str), and C-O-P (str). The surface character of RHAC and TSAC activated carbon is dominated by the elements C, O, and P. The results of the Fe(II) and Cu(II) ion adsorption treatment using RHAC and TSAC activated carbon follow PSO kinetic modeling with R2 values of 0.9221 and 0.9565 on RHAC and 0.9915 and 0.97 on TSAC. TSAC-activated carbon more selectively adsorbs Fe(II) and Cu(II) ions compared to RHAC-activated carbon with adsorption percentages reaching 97.34% and 87.82%, respectively.
使用稻壳和柚木锯屑制成的活性炭对铁(II)/铜(II)二元混合物的吸附选择性
人类日益增长的需求导致工业生产规模扩大,并可能对水生环境造成日益严重的污染。利用稻壳和柚木锯末等农业废弃物制成的可再生活性炭去除污染物,可以有效改善水质。本研究旨在考察稻壳活性炭(RHAC)和柚木锯末活性炭(TSAC)对铁(II)/铜(II)二元混合物的吸附能力,以及每种吸附剂对铁(II)和铜(II)离子的选择性水平。RHAC 和 TSAC 活性炭是通过碳化(T=400 °C,t=60 分钟)、回流(NaOH 2N,T=100 °C,t=120 分钟)、使用 H3PO4(30%,1:3,b/b)进行化学活化和物理(熔炉)生产出来的。研究结果表明,RHAC 和 TSAC 活性炭具有 O-H(链)、C-H(链)、C≡C、C=C、C-O(链)和 C-O-P(链)官能团。RHAC 和 TSAC 活性炭的表面特征以 C、O 和 P 元素为主。使用 RHAC 和 TSAC 活性炭对铁(II)和铜(II)离子进行吸附处理的结果符合 PSO 动力学模型,RHAC 的 R2 值分别为 0.9221 和 0.9565,TSAC 的 R2 值分别为 0.9915 和 0.97。与 RHAC 活性炭相比,TSAC 活性炭对铁(II)和铜(II)离子的吸附选择性更高,吸附率分别达到 97.34% 和 87.82%。
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