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Extracting Noble Metals from Industrial Solutions and Waste Waters with Biosorbents

机译:使用生物吸附剂从工业解决方案和废水中提取贵金属

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摘要

The chemical composition of various industrial solutions of the Shchelkovo Plant of Secondary Noble Metals is evaluated. It is established that the excess content of heavy metals with respect to gold and silver is larger by a factor of more than 1000. The microbial biomasses of various systematic groups are approved for extracting Au and Ag from solutions with a high salt background. The appropriateness of selectively extracting heavy metals from such complex solutions is shown. The behavior of heavy metals is investigated for sorp-tion on biosorbents from individual solutions within the pH limits of 1.0-6.0 for the medium. The decisive significance of the pH of the solution (within the limits 1.0-3.0) on selectively extracting Ag from industrial solutions is determined. The notion that silver and heavy metals are attributed to different groups of metals by varying the degree of sorption with microorganisms, depending on the pH medium, is confirmed. The specific behavior of the biomass cells in the acidic medium also promotes the separation of these elements. Testing the biosorbed extraction of silver from the industrial solution on a granulated lincomycin biomass is approved under industrial conditions. The average degree of extraction was Cu < = 8.1, Ni 4.2, Zn 4.0, Fe 15.5 percent. The losses of biosorbent are about 70 g/m~3 of the solution.
机译:Shchelkovo次要贵金属工厂的各种工业溶液的化学成分均经过评估。已经确定,相对于金和银,重金属的过量含量增加了1000倍以上。各种系统族的微生物生物量被批准用于从高盐背景的溶液中提取Au和Ag。显示了从这种复杂溶液中选择性提取重金属的适当性。在介质的pH限制为1.0-6.0的范围内,研究了重金属的行为对各种溶液中生物吸附剂的吸附作用。确定了溶液的pH值(在1.0-3.0范围内)对从工业溶液中选择性提取Ag的决定性意义。证实了这样的观念,即通过根据pH介质改变微生物的吸附程度,将银和重金属归为不同的金属族。生物质细胞在酸性介质中的特殊行为也促进了这些元素的分离。在工业条件下,已测试在颗粒状林可霉素生物质上从工业溶液中生物吸附提取银的方法。平均萃取度为Cu <= 8.1,Ni 4.2,Zn 4.0,Fe 15.5%。溶液中生物吸附剂的损失约为70 g / m〜3。

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