The Utilization of Candlenut Shell-Based Activated Charcoal as the Electrode of Capacitive Deionization (CDI) for Seawater Desalination

Q2 Pharmacology, Toxicology and Pharmaceutics Science and Technology Indonesia Pub Date : 2024-01-22 DOI:10.26554/sti.2024.9.1.86-93
Muhammad Anas, Mardiana Napirah, Wa Ode Sitti Ilmawati, Husein Husein, Amiruddin Takda, Like Herawati, Ima Ima, Karmila Sari
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Abstract

Activated carbon or activated charcoal is one of the best materials that can be used as a constituent of CDI electrodes, not only because of its various advantageous properties but also because it can be sourced abundantly from plant waste. This research aims to determine the effect of the thickness of the candlenut shell activated charcoal electrode and the particle size of the activated carbon used on the capacitive deionization (CDI) performance in seawater desalination. Candlenut shell-based activated charcoal is obtained in three stages, namely preparation, carbonization, and activation. The carbonization stage was done by using a pyrolysis reactor at a temperature of 400°C for 8 hours. The activation was done with the activator of H3PO4 67%. The variation of thickness was 6 mm, 8 mm, 10 mm, and 15 mm while the variation of particle size was 60 mesh, 80 mesh, 100 mesh, and 200 mesh. The results showed that the higher capacitance was obtained with the thinner electrodes, where the best value was the thinnest electrode, 6 mm, which produced the highest capacitance, 122.96 nF. For the desalination of seawater, it is shown that the finest particle/smallest particle size will result in the best desalination performance, where 200 mesh particle size will result in the decrease of salinity from 34% to 4%. That is 88.23% decrease in salinity. Therefore, the using of candlenut shell-based activated carbon as the electrode in CDI is proven to be able to obtain good performance in seawater desalination.
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利用烛台壳活性炭作为海水淡化的电容去离子(CDI)电极
活性碳或活性炭是可用作 CDI 电极成分的最佳材料之一,这不仅是因为它具有各种优越性能,还因为它可以从植物废料中大量获取。本研究旨在确定烛果壳活性炭电极的厚度和所用活性炭的粒度对海水淡化中电容式去离子(CDI)性能的影响。以烛台壳为基质的活性炭分三个阶段获得,即制备、碳化和活化。碳化阶段使用热解反应器在 400°C 的温度下进行 8 小时。活化阶段使用 67% 的 H3PO4 作为活化剂。厚度变化为 6 毫米、8 毫米、10 毫米和 15 毫米,粒度变化为 60 目、80 目、100 目和 200 目。结果表明,电极越薄,电容值越高,其中最薄的 6 毫米电极电容值最高,达到 122.96 nF。在海水淡化方面,最细颗粒/最小颗粒尺寸的海水淡化效果最好,其中 200 目颗粒尺寸的海水淡化效果最好,盐度从 34% 降至 4%。也就是说,盐度降低了 88.23%。因此,在 CDI 中使用烛果壳基活性炭作为电极被证明能够获得良好的海水淡化性能。
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来源期刊
Science and Technology Indonesia
Science and Technology Indonesia Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
1.80
自引率
0.00%
发文量
72
审稿时长
8 weeks
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