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首页> 外文期刊>Journal of Engineering and Technological Sciences >Adsorption of Gold from Aqueous Systems Using Microbial Thermophilic Proteins
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Adsorption of Gold from Aqueous Systems Using Microbial Thermophilic Proteins

机译:使用微生物嗜热蛋白的水系统吸附金

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A precious metal such as gold can be obtained from mining. Metals in low concentrations at geothermal sites or in industrial waste are difficult to gain using the conventional mining process. Alternative approaches for recovering metals from dilute solutions have been developed, such as biosorption, i.e. adsorption using microorganisms or their derivatives. In this study, gold in an aqueous system was recovered via biosorption using proteins produced from an isolated thermophilic bacterial strain. Modified Thermus enhanced medium was used as the medium to improve protein production from the thermophilic bacterial strain. The microbial proteins showed effective conditions for Au 3+ ion adsorption. The optimum adsorption conditions for Au ions occurred at pH 1 with an adsorption capacity of 482.0 mg/g protein. The metal ion adsorption capacity increased with increasing temperature. The adsorption isotherm was conducted at room temperature, because the Au ions could be well fitted by the Freundlich isotherm equation with q max at 527.229 mg/g protein.
机译:可以从采矿中获得金这样的贵金属。使用常规采矿过程难以获得在地热部位或工业废物中低浓度的金属。已经开发出从稀释溶液中回收金属的替代方法,例如生物吸附,即使用微生物或其衍生物吸附。在该研究中,通过使用分离的嗜热细菌菌株产生的蛋白质通过生物吸附回收水体系中的金。改性热量增强介质用作从嗜热细菌菌株改善蛋白质产生的培养基。微生物蛋白显示出Au 3+离子吸附的有效条件。 Au离子的最佳吸附条件发生在pH1的吸附容量为482.0mg / g蛋白。金属离子吸附容量随着温度的增加而增加。吸附等温线在室温下进行,因为Au离子可以通过Q max在527.229 mg / g蛋白的q max中充分配合。

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