椰子壳活化碳与ZnCl2暖微波隔热器结合

Widi Astuti, Anggelita Dwi Handayani, Diah Ayu Retnani Wulandari
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引用次数: 5

摘要

以椰子壳废料为原料,采用微波加热ZnCl2活化合成活性炭。椰子壳由36.51%的木质素、33.61%的纤维素和19.27%的半纤维素组成,可作为活性炭合成的前体。利用扫描电子显微镜(SEM)、傅立叶变换红外分光光度计(FTIR)和NOVA气体吸附分析仪Quantachrome对活性炭进行了进一步的表征,并用于随着pH、接触时间和溶液浓度的变化而吸附水溶液中的甲基紫。结果表明,活性炭的孔径大于炭的孔径。最佳吸附发生在pH 3,180分钟后达到平衡时间。Langmuir平衡模型比Freundlich平衡模型更合适。用拟一阶、拟二阶、内扩散和外扩散分析的动力学模型表明,拟二阶最适合椰子壳活性炭吸附甲基紫。
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Adsorpsi Methyl Violet oleh Karbon Aktif dari Limbah Tempurung Kelapa dengan Aktivator ZnCl2 Menggunakan Pemanasan Gelombang Mikro
Synthesis of activated carbon from coconut shell waste with ZnCl2 activation using microwave heating have been carried out. Coconut shell consists of 36.51% lignin, 33.61% cellulose and 19.27% hemicellulose which causes it can be used as a precursor in the synthesis of activated carbon. The activated carbon was further characterized using Scanning Electron Microscope (SEM), Fourier Transform Infrared Spectrophotometer (FTIR) and NOVA Gas Sorption Analyzer-Quantachrome and used for the adsorption of methyl violet in aqueous solution with variation of pH, contact time and concentration of solution. The result showed that the pore of activated carbon was larger than that of the char. The optimum adsorption occurred at pH 3 and the equilibrium time was reached after 180 minutes. The Langmuir equilibrium model was more appropriate than the Freundlich equilibrium model. While the kinetics model analyzed using pseudo first order, pseudo second order, internal diffusion and external diffusion indicated that the pseudo second order was most suitable for the adsorption of methyl violet by coconut shell activated carbon.
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来源期刊
自引率
0.00%
发文量
10
审稿时长
16 weeks
期刊最新文献
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