利用虾壳废弃物生物甲壳素去除电镀废弃物中的六价铬

A. Rosmawati, Barlah Rumhayati, A. Srihardyastutie
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摘要

在这个全球化时代,越来越多的电镀工业对环境造成了负面影响,因为其废液中含有高浓度的六价铬,Cr (VI)。为了克服这一问题,从白虾壳废物(L.vanamme)中提取的生物几丁质被用于吸附电镀废物中的Cr (VI)。采用植物芽孢杆菌和苏云金芽孢杆菌的单次和顺序发酵法提取生物几丁质。以不同方法的生物甲壳素为原料,在不同生物甲壳素质量、吸附时间和Cr (VI)浓度下,对Cr (VI)的去除工艺进行了优化。结果表明,顺序发酵法生产的生物甲壳素对Cr (VI)的吸附效果最佳,2 g生物甲壳素对Cr (VI)的吸附效果可达51.99±0.41%。在最佳条件下,所选吸附剂对浓度范围为9.38 ~ 92.39 mg/L的Cr (VI)的吸附量为0.915 mg/g。扫描电镜(SEM)和能谱(EDS)分析结果表明,生物几丁质中存在铬化合物,增强了生物几丁质对Cr (VI)的去除能力。
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Hexavalent Chromium Removal from Electroplating Waste Using Biochitin from L.Vanamme Shrimp Shell Waste
The increasing number of electroplating industries in this globalization era has a negative impact on the environment because of its liquid waste containing high concentrations of hexavalent chromium, Cr (VI). To overcome this problem, biochitin extracted from white shrimp shell waste ( L.vanamme ) has been used to adsorb Cr (VI) from electroplating waste. Biochitins were extracted through single and sequential fermentation method using L.plantarum and B.thuringiensis bacteria. The optimization process of Cr (VI) removal was done by using biochitin from different methods, at various mass of biochitin, the time of adsorption, and Cr (VI) concentration. Results showed that biochitin produced from the sequential fermentation method could optimally adsorb Cr (VI). By using 2 g of biochitin, Cr (VI) could be removed as much as 51.99 ± 0.41% during 6 hours. At the optimum condition, the selected adsorbent could remove Cr (VI) in the concentration range of 9.38 to 92.39 mg/L, which showed the adsorption capacity of 0.915 mg/g. The capability of biochitin for Cr (VI) removal was reinforced by the SEM EDS images, which show the presence of chromium compounds in the biochitin.
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