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首页> 外文期刊>Biotechnology Progress >Sorption-Reduction Coupled Gold Recovery Process Boosted by Pycnoporus Sanguineus Biomass: Uptake Pattern and Performance Enhancement via Biomass Surface Modification
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Sorption-Reduction Coupled Gold Recovery Process Boosted by Pycnoporus Sanguineus Biomass: Uptake Pattern and Performance Enhancement via Biomass Surface Modification

机译:通过Pycnoporus Sanguineus生物量增强吸附还原耦合金回收过程:通过生物质表面改性的摄取模式和性能增强

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Biorecovery is emerging as a promising process to retrieve gold from secondary resources. The present study aimed to explore the uptake pattern of Pycnoporus sanguineus biomass for gold, identify the effective functional groups in gold recovery process, and thus further intensify the process via microbial surface modification. Results showed that P. sanguineus biomass could effectively recover gold with the formation of highly crystal AuNPs without any exogeneous electron donor. Under the conditions of various initial gold concentrations (1.0, 2.0, and 3.0 mM), biomass dosage of 2.0 g/L, solution pH value of 4.0, and incubation temperature of 30 degrees C, the uptake equilibrium established after 4, 8, and 12 h, respectively. The uptake process could be well described by pseudo-second order kinetics model (R-2 = 0.9988) and Langmuir isotherm model (R-2 = 0.9958). The maximum uptake capacity of P. sanguineus reached as high as 358.69 mg/g. Further analysis indicated that amino, carboxyl and hydroxyl groups positively contributed to the uptake process. Among them, amino group significantly favored the uptake of gold during recovery process. When P. sanguineus biomass was modified by introduction of amino group, the gold uptake process was successfully intensified by shortening the uptake period and enhancing the uptake capacity. (C) 2017 American Institute of Chemical Engineers
机译:生物忏悔是从二级资源中检索黄金的有希望的过程。本研究旨在探讨Pycnoporus sanguineus生物质的吸收模式,鉴定金回收过程中有效官能团,从而进一步加强了通过微生物表面改性的方法。结果表明,P.Sanguineus生物量可以有效地恢复黄金,形成高度晶体肛周而没有任何不均匀的电子供体。在各种初始金浓度(1.0,2.0和3.0毫米)的条件下,生物量为2.0g / L,溶液pH值4.0,孵育温度为30℃,4,8后建立的摄取平衡,和分别为12小时。通过伪二次阶动力学模型(R-2 = 0.9988)和Langmuir等温线模型可以很好地描述摄取过程(R-2 = 0.9958)。 P. Sanguineus的最大摄取容量高达358.69 mg / g。进一步的分析表明氨基,羧基和羟基积极地导致吸收过程。其中,氨基显着青睐恢复过程中的黄金的吸收。当通过引入氨基进行调节P.Sanguineus生物量时,通过缩短摄取期并提高摄取能力,成功加剧了金吸收过程。 (c)2017美国化学工程师研究所

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