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Gold Binding by Native and Chemically ModifiedHops Biomasses

机译:天然和化学修饰的金结合啤酒花生物量

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摘要

Heavy metals from mining, smelting operations and other industrial processing facilities pollute wastewaters worldwide. Extraction of metals from industrial effluents has been widely studied due to the economic advantages and the relative ease of technical implementation. Consequently, the search for new and improved methodologies for the recovery of gold has increased. In this particular research, the use of cone hops biomass (Humulus lupulus) was investigated as a new option for gold recovery. The results showed that the gold binding to native hops biomass was pH dependent from pH 2 to pH 6, with a maximum percentage binding at pH 3. Time dependency studies demonstrated that Au(III) binding to native and modified cone hops biomasses was found to be time independent at pH 2 while at pH 5, it was time dependent. Capacity experiments demonstrated that at pH 2, esterified hops biomass bound 33.4 mg Au/g of biomass, while native and hydrolyzed hops biomasses bound 28.2 and 12.0 mg Au/g of biomass, respectively. However, at pH 5 the binding capacities were 38.9, 37.8 and 11.4 mg of Au per gram of native, esterified and hydrolyzed hops biomasses, respectively.
机译:采矿,冶炼作业和其他工业加工设施中的重金属污染了全世界的废水。由于经济优势和技术实施相对容易,从工业废水中提取金属已得到广泛研究。因此,寻找新的和改进的金回收方法的需求增加了。在这项特殊的研究中,研究了利用锥hop生物质(Hu草)作为金回收的新选择。结果表明,金与天然啤酒花生物量的结合在pH 2至pH 6范围内是pH依赖性的,在pH 3时具有最大的结合百分比。时间依赖性研究表明,发现Au(III)与天然和改良的啤酒花生物量结合。在pH 2时不受时间影响,而在pH 5时受时间影响。容量实验表明,在pH 2下,酯化啤酒花生物量结合了33.4 mg Au / g生物量,而天然和水解啤酒花生物量分别结合了28.2和12.0 mg Au / g生物量。然而,在pH 5下,每克天然,酯化和水解啤酒花生物量的结合能力分别为38.9、37.8和11.4 mg Au。

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