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Isolation and identification of microorganisms causing microbial degradation of organic phase of the solvent extraction unit in the copper industries

机译:分离和鉴定导致铜工业中溶剂萃取装置有机相微生物降解的微生物

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Solvent Extraction-Electrowinning (SX-EW) is a hydrometallurgical process involving the dissolution and reprecipitation of copper from solution. The organic phases which are widely used in the SX process are very important economically. On the other hand, there are many poisonous components such as phenol in its chemical construction, so its degradation can be critical at economical and environmental point of view. The organic solutions which are used in the Sarcheshmeh Copper Mine consist of LIX 984N as a main extractant and REYSOL 8411, 8401 and kerosene as diluents. The loss of the organic phase from solvent extraction circuits is a major cost factor for SX/EW operations. Recognized sources of loss include evaporation, entrainment, and biological degradation. The mechanisms for both entrainment and evaporative losses are well recognized. Biological degradation of the organic component has not been as extensively evaluated as the other mechanisms but may be a major source of loss. This paper discusses the impact of biological degradation on an operating plant, potential mechanisms for degradation, conditions under which biodegrada-tion of plant organic can occur and plant conditions that may assist in promoting biodegradation. In this research, isolation and identification of microorganisms which are involved in the degradation of the organic phase of the SX unit in the Sarcheshmeh copper mine were investigated. Samples of soil and activated sludge and a sample from an extraction unit were inoculated into microbial culture media containing organic solution as the only carbon source. After growth and isolation of microorganisms, three genera of bacteria, Acinetobacter, Sphingomonas and Moraxella, and two genera of fungi, Aspergillus and Phialophora, were identified.
机译:溶剂萃取电镀(SX-EW)是一种湿法冶金工艺,涉及从溶液中溶解和再沉淀铜。在SX工艺中广泛使用的有机相在经济上非常重要。另一方面,在其化学结构中存在许多有毒成分,例如苯酚,因此从经济和环境角度来看,其降解可能至关重要。 Sarcheshmeh铜矿使用的有机溶液由LIX 984N作为主要萃取剂,以及REYSOL 8411、8401和煤油作为稀释剂。溶剂萃取回路中有机相的损失是SX / EW操作的主要成本因素。公认的损失来源包括蒸发,夹带和生物降解。夹带和蒸发损失的机制都已被公认。有机组分的生物降解尚未像其他机理那样得到广泛评估,但可能是损失的主要来源。本文讨论了生物降解对正在运转的植物的影响,降解的潜在机理,可能发生植物有机物生物降解的条件以及有助于促进生物降解的植物条件。在这项研究中,研究了分离和鉴定与Sarcheshmeh铜矿SX单元有机相降解有关的微生物。将土壤和活性污泥样品以及来自萃取装置的样品接种到含有有机溶液作为唯一碳源的微生物培养基中。在微生物生长和分离后,鉴定了三个属的细菌,即不动杆菌,鞘氨醇单胞菌和莫拉氏菌,以及两个真菌,即曲霉属和毛霉属。

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