木薯皮在降低污水中的磷酸盐浓度时的活性碳含量

Illah Sailah, Fitri Mulyaningsih, Andes Ismayana, Tyara Puspaningrum, Anis Annisa Adnan, Nastiti Siswi Indrasti
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引用次数: 4

摘要

木薯皮含碳量高。作为一种吸附剂,它在吸附洗衣用磷酸盐化合物方面具有很大的潜力。利用木薯皮制成活性炭是减少木薯加工工业产生的废物的一种努力。本研究使用了两种木薯皮活性炭,即HCl为0.4 M的酸性活性炭和KOH为0.4 M的碱性活性炭。本研究的目的是确定:(1)在处理时间30、60、90、120、150和180 min时的最佳吸附接触时间;(2) pH为4、6、8、10时吸附的最佳pH值;(3)吸附量采用吸附剂浓度分别为0.5%、1%、1.5%、2%、2.5% (w/v)处理。实验设计采用单因素随机分组试验设计,ANOVA-DNMRT统计分析,线性图形进行描述性分析。对活性炭的分析表明,酸性活性炭和碱性活性炭的含水量分别为3.49%和2.89%;灰分含量分别为6.78%和9.03%。含水率、灰分均符合SNI 06-3730-1995标准。性能试验表明,酸性活性炭的最佳接触时间为30 min, pH为4;碱性活性炭的最佳接触时间为90 min, pH为6。酸性活性炭的吸附容量为0.26 mg/g,碱性活性炭的吸附容量为0.49 mg/g。木薯皮中的活性炭可以用作吸附剂,以降低洗衣废物中的磷酸盐浓度。关键词:活性炭,吸附,木薯皮,洗衣垃圾,磷酸盐
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinerja Karbon Aktif Dari Kulit Singkong Dalam Menurunkan Konsentrasi Fosfat Pada Air Limbah Laundry
Cassava peel has high carbon content. It becomes potential as an adsorbent in adsorbing laundry phosphate compounds. Utilization of cassava peel into activated charcoal is an effort to reduce waste from the cassava processing industries. This study used two types of activated carbon from cassava peel, i.e. acid activated charcoal using HCl 0.4 M and alkaline activated charcoal using KOH 0.4 M. The objectives of this research were to determine: (1) the optimum contact time of adsorption at 30, 60, 90, 120, 150, and 180 min treatment time; (2) the optimum pH value of adsorption at pH 4, 6, 8, and 10; and (3) the adsorption capacity using adsorbent concentration treatment  of 0.5%, 1%, 1.5%, 2%, and 2.5% (w/v). The experimental design used was a Single Factor Randomized Block Trial Design, ANOVA-DNMRT statistical analysis, and linear graphic for descriptive analysis. The analysis of the activated charcoal showed that water contents of the acid activated charcoal and the alkaline activated charcoal were 3.49% and 2.89%, respectively; the ash contents were 6.78% and 9.03%, respectively. The water content and ash content meet the standard of SNI 06-3730-1995. The performance test showed that the optimum contact time and pH of acid activated charcoal were 30 min and pH 4, while the alkaline activated charcoal was 90 min and pH 6. The adsorption capacity of acid active charcoal was 0.26 mg/g and the adsorption capacity of alkaline active charcoal was 0.49 mg/g. Activated carbon from the cassava skin can be used as an adsorbent to reduce phosphate concentrations in laundry waste. Keywords: activated charcoal, adsorption, cassava peel, laundry waste, phosphate
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