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The degradation processes of refractory substances in nanofiltration concentrated leachate using micro-ozonation

机译:微臭氧氧化降解纳滤浓缩渗滤液中难降解物质的过程

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Concentrated leachate (CL) is the byproduct of leachate treated by the membrane separation unit after bio-treatment processes, and contains many humic-like substances. Ozonation processes were applied and optimized for the further removal of those refractory matters in this work. Micro-bubble ozonation (MB-O_3) possessed the best performance, and 76.0% and 69.9% of COD and TOC were found to be removed under the optimum conditions with ozone dosage of 2.4 g/L, initial pH of 9 and reaction time of 120 min. The reaction rate k in MB-O_3 was 0.0104 min~(−1), three times higher than that in normal O_3. The percentages of humic acid and fulvic acid in CL decreased from 24.1% to 14.3% and 49.6% to 25.0%, while that of HyI substances increased from 26.3% to 60.7%, which was also found in the fraction of <2000 Da, with the occupied percentage increased from 0 to 63.0%. The humic acid-like substances might be transformed to matters with carbonyl and carboxyl group, since a continuous blue-shift was observed from Em/Ex 475/390 to 410/325 nm. MB-O_3 could be a promising method for the advanced treatment of CL.
机译:浓缩浸出液(CL)是经过膜分离单元经过生物处理过程处理的浸出液的副产物,并且含有许多腐殖质样物质。应用臭氧化工艺并对其进行了优化,以进一步去除这项工作中的那些耐火材料。微泡臭氧化(MB-O_3)的性能最佳,发现在最佳条件下,臭氧剂量为2.4 g / L,初始pH为9,反应时间为7时,可去除76.0%和69.9%的COD和TOC。 120分钟MB-O_3的反应速率k为0.0104 min〜(-1),是普通O_3的三倍。 CL中的腐殖酸和富里酸的百分比从24.1%下降到14.3%,从49.6%下降到25.0%,而HyI物质的百分比从26.3%上升到60.7%,也发现在<2000 Da的分数中,占用百分比从0增加到63.0%。由于观察到从Em / Ex 475/390到410/325 nm的连续蓝移,腐殖酸样物质可能被转化为具有羰基和羧基的物质。 MB-O_3可能是一种有前途的CL治疗方法。

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