生物处理垃圾渗滤液臭氧氧化效率的参数研究。

M Chys, V Oloibiri, W T M Audenaert, H Van Langenhove, K Demeestere, S W H Van Hulle
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引用次数: 0

摘要

研究了臭氧化作为生物处理后垃圾渗滤液的后处理步骤,以提高垃圾渗滤液的可生化性,并观察了初始有机物浓度和ph值的影响。测定了臭氧化过程和臭氧化后垃圾渗滤液的COD、254 nm紫外吸收(UVA254)和BOD含量的变化,计算了不同条件下垃圾渗滤液的臭氧利用率。发现初始COD浓度对UVA254的绝对去除率有显著影响,但pH的变化对臭氧反应的影响尤甚。与较低的pH值相比,pH值的增加(pH值10)很可能增加了总体羟基自由基的产生,从而导致更高的COD去除率和更好的臭氧利用率。这与初始COD变化形成对比,后者对确定的臭氧利用率几乎没有影响。无论初始COD含量或pH值如何,平均10%的初始COD含量转化为BOD,其次是10%的COD被去除。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parameter study on the efficiency of ozonation for biologically treated landfill leachate.

Ozonation was investigated as a potential post-treatment step for biologically treated landfill leachate to enhance the biodegradability and observe the influence of the initial organic matter concentration and pH. Changes in COD, UV absorption at 254 nm (UVA254) and BOD content were measured during and after ozonation, and the ozone utilisation efficiency at different conditions was calculated. The initial COD concentration was found to influence the absolute removal of UVA254 significantly, but especially changes in pH influenced the ozone reactions. Increased pH (pH 10) most probably increased the overall hydroxyl radical production leading to a higher COD removal and a much better ozone utilisation compared to lower pH. This in contrast to initial COD variations which had little influence on the determined ozone utilisation. Regardless of initial COD content or pH, on average 10% of the initial COD content was converted to BOD, next to 10% COD that was removed.

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