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Hexavalent chromium sequestration from electronic waste by biomass of Aspergillus carbonarius

机译:曲叶葡萄畜的电子垃圾六价铬螯合

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摘要

The idea of eliminating noxious metal ions from electronic waste contaminated water has led to the use of the metal adsorbing ability of biological matter. The principle of an ion exchanger of biological origin is the key in exhibiting this metal binding feature of microbial biomass. In this study, dead biomass of Aspergillus carbonarius was immobilized using sodium alginate and tested as a biosorbent for hexavalent chromium elimination from effluent. Size and functional groups were characterized for the immobilized bead containing biomass. Optimization of boundary variables like bead size, biosorbent dosage, contact time, pH, and temperature were performed. Maximum elimination of 92.43% hexavalent chromium was achieved at pH 2.0 for 12 h at 37°C, with 20 g/25 mL adsorbent dosage. On application of adsorption isotherms, the data were found to fit Freundlich isotherm and exhibited a high value of correlation coefficient proving the ability of A. carbonarius biomass to act as an effective quencher of hexavalent chromium from electronic waste contaminated water.
机译:从电子废弃物污染的水消除有害金属离子的想法导致了使用的生物物质的金属吸附能力。生物来源的离子交换的原理是在表现出该金属结合的微生物生物质的特征的关键。在这项研究中,炭黑曲霉的死生物质使用藻酸钠被固定并作为六价铬消除从流出物中生物吸附剂测试。尺寸和官能团进行了表征为含生物质的固定化珠。进行像珠尺寸,生物吸附剂用量,接触时间,pH和温度边界变量的优化。 92.43%六价铬的最大消除在37℃下在pH 2.0达到12小时,用20克/ 25毫升吸附剂用量。吸附等温线的应用中,发现数据来适合Freundlich等温并显示出相关系数的证明炭黑曲霉生物质以充当从电子废物污染的水六价铬的有效猝灭剂的能力的高值。

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