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Characteristics of anionic metal species biosorption with waste crab shells

机译:蟹壳对阴离子金属的生物吸附特征

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摘要

Anionic metal complexes are very effectively bound by biomass types containing an abundance of amine groups. Readily available chitinous materials such as acid-washed Ucides shells (AWUS) sorbed well anionic gold-cyanide (Au(CN)_2~-), selenate (SeO_4~(2-)), chromate (CrO_4~(2-)) and vanadate (VO_4~(3-)) at low pH. Equilibrium biosorption uptakes by AWUS were up to 0.17 mmol Au/g AWUS (pH 3.4), 0.15 mmol Se/g (pH 3.0), 0.54 mmol Cr/g (pH 2.0) and 0.79 mmol V/g (pH 2.5). An increased ionic strength (IS) suppressed the primary anion uptake as chloride ions competed fur biosorbent protonated sites and higher IS reduced the activity of ions in solution. The biosorption mechanism was suspected to involve electrostatic attraction.
机译:阴离子金属络合物非常有效地被含有大量胺基的生物质类型所束缚。易于获得的几丁质材料,例如酸洗的Ucides壳(AWUS)吸附良好的阴离子型氰化金(Au(CN)_2〜-),硒酸盐(SeO_4〜(2-)),铬酸盐(CrO_4〜(2-)和低pH值的钒酸盐(VO_4〜(3-)) AWUS的平衡生物吸收量高达0.17 mmol Au / g AWUS(pH 3.4),0.15 mmol Se / g(pH 3.0),0.54 mmol Cr / g(pH 2.0)和0.79 mmol V / g(pH 2.5)。离子强度(IS)的提高抑制了主要阴离子的吸收,因为氯离子竞争了毛皮生物吸附剂的质子化位点,而更高的IS降低了溶液中离子的活性。怀疑生物吸附机制涉及静电吸引。

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