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首页> 外文期刊>Annali di Chimica: Journal of Analytical and Environmental Chemistry >Treatment options for tannery wastewater II: integrated chemical and biological oxidation
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Treatment options for tannery wastewater II: integrated chemical and biological oxidation

机译:制革废水的处理方案二:化学和生物氧化综合

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摘要

This is the second of two papers each dealing with a specific technological option for replacing the Fenton's reagent with simpler processes for treating industrial wastewater. N particular, the paper reports the results of an investigation aimed to check, at lab scale, the effectiveness of an alternative wastewater treatment combining biological degradation and chemical oxidation with ozone. The treatment was carried out in a lab scale hybrid erector fed with the biological stage effluent of a plant treating the wastewater of a large tanning district in Central Italy whose residual COD result still higher than the Italian COD Maximum Allowable Concentration (MAC) value (i.e., 160 mgO_2/L). The results are very promising, considering that a removal efficiency of 41% (as COD) has been achieved by treating an influent characterized by a COD content fully biorefractory. In addition, the proposed treatment presents the significant advantage of no additional sludge production, as happens with commonly utilized tertiary processes (i.e. Fenton), that is characterized by high chemical sludge production.
机译:这是两篇论文中的第二篇,每篇都涉及一种特定的技术选择,即用更简单的处理工业废水的方法来代替Fenton试剂。尤其是,该论文报告了一项调查结果,旨在在实验室规模上检查结合生物降解和化学氧化与臭氧的废水替代处理的有效性。该处理是在实验室规模的混合竖立设备上进行的,该混合设备装有处理意大利中部一个大型鞣革区废水的工厂的生物级废水,该工厂的残余COD结果仍高于意大利COD最大允许浓度(MAC)值(即,160mgO_2 / L)。考虑到通过处理特征为完全生物难降解的COD含量的进水,去除率达到41%(以COD计),结果非常有希望。另外,所提议的处理方法具有显着的优点,即不会产生额外的污泥,这与通常使用的以高化学污泥产生为特征的三级工艺(即Fenton)一样。

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