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Selenium recovery from kiln powder of cement manufacturing by chemical leaching and bioreduction

机译:通过化学浸出和生物还原从水泥生产窑粉中回收硒

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A novel process by using chemical leaching followed by bacterial reductive precipitation was proposed for selenium recovery from kiln powder as a byproduct of cement manufacturing. The kiln powder at a slurry concentration of 10 w/v% with 0.25 M Na2CO3 at 28 degrees C produced wastewater containing about 30 mg-Se/L selenium. The wastewater was diluted four-fold and adjusted to pH 8.0 as preconditioning for bioreduction. A bacterial strain Pseudomonas stutzeri NT-I, capable of reducing selenate and selenite into insoluble elemental selenium, could recover about 90% selenium from the preconditioned wastewater containing selenium of 5 mg-Se/L when supplemented with lactate or glycerol. The selenium concentrations in the treated wastewater were low around the regulated effluent concentration of 0.1 mg-Se/L in Japan.
机译:提出了一种通过化学浸提然后细菌还原沉淀的新方法,用于从水泥粉中回收作为水泥生产副产品的硒。水泥粉在28摄氏度下与0.25 M Na2CO3的浆液浓度为10 w / v%,产生的废水中含约30 mg-Se / L硒。将废水稀释四倍并调节至pH 8.0,以进行生物还原预处理。能够将硒酸盐和亚硒酸盐还原为不溶性元素硒的斯氏假单胞菌NT-1细菌,在添加乳酸或甘油后,可从含5 mg-Se / L硒的预处理废水中回收约90%的硒。在日本,处理后的废水中的硒浓度较低,约为0.1 mg-Se / L的规定排放浓度。

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