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Bioremoval of arsenic (V) from aqueous solutions by chemically modified fungal biomass

机译:化学修饰的真菌生物质从水溶液中生物去除砷(V)

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摘要

The biosorption of arsenic (V) on nine chemically modified biomasses (with iron oxide coated) of mycelia fungi: Aspergillus flavus III, IV and V, Aspergillus fumigatus I–II, Paecilomyces sp., Cladosporium sp., Mucor sp-1 and 2 was studied in this work. This study provides evidence that the biomasses of the fungi A. flavus, IV, III and V, Paecilomyces sp., and A. fumigatus I were very efficient at removing 1 mg/L of the metal in solution, using atomic absorption spectroscopy (AAS), achieving the following percentage of removals: 97.1, 92.3, 90.3, 89.0, and 83.4%, respectively. The results of adsorption were obtained at pH 6.0, 30 °C after 24 h of incubation, with 1 g/100 mL of fungal biomass. These results suggest the excellent potential of almost all isolated strains for bioremediation and removal of metals from contaminated sites.
机译:菌丝真菌的9种经过化学修饰的生物质(经氧化铁涂层)对砷(V)的生物吸附:黄曲霉III,IV和V,烟曲霉I–II,Paecilomyces sp。,Cladosporium sp。,Mucor sp-1和2在这项工作中进行了研究。这项研究提供了证据,使用原子吸收光谱法(AAS),黄曲霉菌IV,III和V,Paecilomyces sp。和烟曲霉I的生物量在去除溶液中1 mg / L的金属方面非常有效。 ),则达到以下清除百分比:分别为97.1、92.3、90.3、89.0和83.4%。孵育24小时后,在pH 6.0、30°C和1 g / 100 mL真菌生物量下获得吸附结果。这些结果表明,几乎所有分离出的菌株都具有极好的潜力,可以进行生物修复和从受污染部位去除金属。

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