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Adhesion properties of and factors influencing Leptospirillum ferriphilum in the biooxidation of refractory gold-bearing pyrite

机译:影响瘦丝叶片耐热镀金黄铁矿中瘦倍半岩的粘附性能与因素

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Leptospirillum ferriphilum (L. ferriphilum) is a widely used microorganism in the commercial biooxidation process. Its ability to adhere to sulfide ores when grown in sulfide mineral substrates is very important for the entire biooxidation process. However, few studies have investigated the ore adhesion properties of L. ferriphilum. In this paper, the effects of temperature, pH and the passive layer of the sulfide ore surface on the ore adherence properties and biooxidation capacities of L. ferriphilum LJ02, which was screened by our laboratory, were investigated. The results of these experiments showed that both the contact and non-contact leaching mechanism were evident during the sulfide biooxidation process. L ferriphilum LJ02 preferred the contact leaching mechanism to the non-contact leaching mechanism. Within the experimental range of temperatures from 36 degrees C to 46 degrees C, the OAR (ore adhesion ratio) of L. ferriphilum LJ02 increased initially and then decreased with the temperature. The optimum OAR was 0.84 at 41 degrees C. Within the experimental pH range of 1.1 to 2.0, the OAR of L. ferriphilum LJ02 decreased with pH. The optimum OAR was 0.87 at pH 1.1. It was also found that the OAR of L. ferriphilum LJ02 could be reduced by the passive layer on the surface of the sulfide ore, which was generated during the biooxidation process. Moreover, it seems that the OAR of L. ferriphilum LJ02 was proportional to the sulfide biooxidation efficiency. (C) 2017 Elsevier B.V. All rights reserved.
机译:Leptospirillum Ferriphilum(L.Ferriphilum)是商业生物氧化过程中广泛使用的微生物。当在硫化物矿物基材中生长时,它粘附到硫化物矿石中的能力对于整个生物氧化过程非常重要。然而,很少有研究研究了L.Ferriphilum的矿石粘附性。本文研究了硫化物矿石表面的温度,pH和无源层对我们实验室筛选的L.Ferriphilum LJ02的矿石粘附性质和生物氧化能力的影响。这些实验的结果表明,在硫化物生物氧化过程中,接触和非接触浸出机理都很明显。 L Ferriphilum LJ02优选地将触点浸出机构与非接触式浸出机构。在36℃至46℃的温度范围内,L.Ferriphilum LJ02的OAR(OE粘附比)最初增加,然后随温度降低。最佳OAR在41℃下为0.84。在1.1至2.0的实验pH范围内,L.Ferriphilum LJ02的OAR用pH降低。最佳OAR在pH 1.1时为0.87。还发现,L.Ferriphilum LJ02的桨桨可以通过硫化物矿石表面上的被动层减少,在生物氧化过程中产生。此外,似乎L.Ferriphilum LJ02的OAR与硫化物生物氧化效率成比例。 (c)2017 Elsevier B.v.保留所有权利。

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