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Sludge Reduction And Volatile Fatty Acid Recovery Using Microwave Advanced Oxidation Process

机译:微波高级氧化工艺减少污泥并回收挥发性脂肪酸

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Sewage sludge was subjected to the combined microwave-hydrogen peroxide-sulfuric acid enhanced advanced oxidation process (MW-H_2O_2-H~+-AOP) to evaluate the potential of reducing suspended solids in sludge. The soluble chemical oxygen demand (SCOD) and acetic acid produced were dependent on the amounts of H_2O_2 and acid used in the process. For sewage sludge, a higher volume of H_2O_2 addition not only favored the destruction of sludge solids, but also conserved the carbon content in the medium. Volatile fatty acid (VFA) concentrations also increased with the amount of inorganic acid in the solution. For the soluble fraction of solutions derived from microwave-treated sludge, over 96% of the total COD was in the soluble form, and up to 25% of this soluble COD was acetic acid. The presence of an inorganic acid was a stability factor in retaining the SCOD in solution, instead of the formation of carbon dioxide, resulting in reduced total COD in the solutions. By controlling the amounts of H_2O_2 and acid addition, the MW-H_2O_2-H~+-AOP could solubilize and/or reduce the sludge mass.
机译:对污水污泥进行微波-过氧化氢-硫酸强化高级氧化处理(MW-H_2O_2-H〜+ -AOP),以评估减少污泥中悬浮固体的潜力。产生的可溶性化学需氧量(SCOD)和乙酸取决于过程中使用的H_2O_2和酸的量。对于污水污泥,添加大量的H_2O_2不仅有利于污泥固体的破坏,而且可以节省培养基中的碳含量。挥发性脂肪酸(VFA)的浓度也随溶液中无机酸的含量增加而增加。对于源自微波处理的污泥的溶液的可溶级分,总COD的96%以上为可溶形式,而最多25%的此可溶COD为乙酸。无机酸的存在是将SCOD保留在溶液中而不是形成二氧化碳的稳定因素,导致溶液中的总COD减少。通过控制H_2O_2的量和酸的添加,MW-H_2O_2-H〜+ -AOP可以溶解和/或减少污泥质量。

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