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Effect of Anaerobic Digestion and Initial pH on Metal Bioleaching from Sewage Sludge

机译:厌氧消化和初始pH对污水污泥中金属生物浸出的影响

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The effects of anaerobic digestion and initial pH on the bioleaching of metals from sewage sludge were investigated in shake flask experiments. A strain of Acidithiobacillus thioox-idans was employed in the assays using secondary and anaerobic sludges, which resulted in similar solubilization yields of the metals chromium, copper, lead, nickel, and zinc for both the sludges investigated. The effect of initial pH (7.0 and 4.0) on metal bioleaching was assayed by using the anaerobic sludge inoculated with indigenous sulfur-oxidizing thiobacilli. Although the time required to reach the end of the experiment (final pH close to 1.0) was shortened at initial pH of 4.0, final metal solubilization was not significantly different for both initial pH values, resulting in higher solubilization yields for copper, nickel, and zinc (higher than 80%). Chromium and lead presented solubilization yields close to 50%. The results obtained in this work showed that the metal bioleaching process can be applied to sewage sludge regardless of the type of sludge and without the requirement of pH adjustment.
机译:在摇瓶实验中研究了厌氧消化和初始pH对污水污泥中金属生物浸出的影响。在使用次生和厌氧污泥的测定中使用了酸性硫杆菌芽孢杆菌硫氧-idans菌株,这导致所研究的两种污泥的金属铬,铜,铅,镍和锌的增溶收率相似。初始pH(7.0和4.0)对金属生物浸出的影响通过使用接种了原生硫氧化硫细菌的厌氧污泥来测定。尽管在初始pH为4.0时缩短了达到实验结束所需的时间(最终pH接近1.0),但对于两个初始pH值,最终金属的增溶作用均无显着差异,因此铜,镍和铜的增溶收率更高。锌(高于80%)。铬和铅的增溶收率接近50%。这项工作获得的结果表明,金属生物浸出工艺可以应用于污水污泥,而与污泥的类型无关,并且无需调节pH值。

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