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Simultaneous Metals Leaching and Microbial Production of Sulphuric Acid by Sewage Sludge: Effect of Sludge Solids Concentration

机译:污水污泥同时进行金属浸出和微生物生产硫酸:污泥固体浓度的影响

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摘要

The effect of sludge solids concentration on the process that metals bioleaching and simultaneous microbial production of sulphuric acid by sewage sludge was investigated. In the work five solids concentrations (5, 10, 20, 35, and 55 g/L) were tested. The results showed that the final pH of solids concentrations of 20 g/L was the lowest (pH = 0.91) and the rate of sulfate production decreased in the order: 20 g/L > 35 g/L > 10 g/L > 5 g/L > 55 g/L > Control. The optimum metals (Zn, Cu, Mn, Cd, Mg, Ca, and Cr) solubilization was obtained at a sludge concentration of 10 g/L with the efficiency of 76.36% Cr, 90.8% Ca, and 98–100 % for the other metals. Metals Al and Pb obtained the highest dissolution at a concentration of 20 g/L, with the efficiency of 99.98% and 51.71%, respectively, while the minimum one obtained at sludge concentration of 5 g/L with the solubilization efficiency of 50–90%. In a moderate sludge concentration range, the higher the concentration, the longer time was needed to achieve the favorable metals dissolution. After the solid–liquid separation of the acidified sludge, the concentration of 5 g/L obtained the most quantity of acid liquid but the pH was not the lowest. Sludge of 55 g/L achieved the least acid liquid of higher pH through precipitation.
机译:研究了污泥固体浓度对污水中污泥金属生物浸出和微生物同时生产硫酸过程的影响。在工作中,测试了五个固体浓度(5、10、20、35和55 g / L)。结果表明,固体最终浓度为20 g / L的最低pH值最低(pH = 0.91),硫酸盐生成速率依次降低:20 g / L> 35 g / L> 10 g / L> 5 g / L> 55 g / L>对照。在10 g / L的污泥浓度下,可获得最佳的金属(Zn,Cu,Mn,Cd,Mg,Ca和Cr)增溶效果,其中,Cr的效率为76.36%,Ca的效率为90.8%,Ca的效率为98-100%。其他金属。金属铝和铅的溶解度最高,分别为20 g / L,效率分别为99.98%和51.71%,而污泥浓度为5 g / L时,其最低溶解度为50-90 %。在适度的污泥浓度范围内,浓度越高,则需要更长的时间才能实现良好的金属溶解。固液分离酸化污泥后,浓度为5 g / L的酸液数量最多,但pH值不是最低。 55 g / L的污泥通过沉淀获得了pH值最低的酸性液体。

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