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Evaluation of fenton and ozone-based advanced oxidation processes as mature landfill leachate pre-treatments

机译:评估以芬顿和臭氧为基础的高级氧化工艺作为成熟的垃圾渗滤液预处理

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摘要

Fenton treatment (Fe2+/H2O2) and different ozone-based Advanced Oxidation Processes (AOPs) (O3, O3/OH− and O3/H2O2) were evaluated as pre-treatment of a mature landfill leachate, in order to improve the biodegradability of its recalcitrant organic matter for subsequent biological treatment. With a two-fold diluted leachate, at optimised experimental conditions (initial pH 3, H2O2 to Fe2+ molar ratio of 3, Fe2+ dosage of 4 mmol L−1, and reaction time of 40 min) Fenton treatment removed about 46% of chemical oxygen demand (COD) and increased the five-day biochemical oxygen demand (BOD5) to COD ratio (BOD5/COD) from 0.01 to 0.15. The highest removal efficiency and biodegradability was achieved by ozone at higher pH values, solely or combined with H2O2. These results confirm the enhanced production of hydroxyl radical under such conditions. After the application for 60 min of ozone at 5.6 g O3 h−1, initial pH 7, and 400 mg L−1 of hydrogen peroxide, COD removal efficiency was 72% and BOD5/COD increased from 0.01 to 0.24. An estimation of the operating costs of the AOPs processes investigated revealed that Fe2+/H2O2 was the most economical system (8.2 € m−3 g−1 of COD removed) to treat the landfill leachate. This economic study, however, should be treated with caution since it does not consider the initial investment, prices at plant scale, maintenance and labour costs.
机译:Fenton处理(Fe2 + / H2O2)和不同的基于臭氧的高级氧化工艺(AOP)(O3,O3 / OH-和O3 / H2O2)被评估为成熟垃圾填埋场渗滤液的预处理,以提高垃圾渗滤液的生物降解性。顽固性有机物,用于后续生物处理。在优化的实验条件下(初始pH为3,H2O2与Fe2 +的摩尔比为3,Fe2 +的剂量为4 mmol L-1,反应时间为40分钟),用两倍稀释的沥出液进行Fenton处理可去除约46%的化学氧需求(COD),并将五天生化需氧量(BOD5)与COD的比率(BOD5 / COD)从0.01增加到0.15。臭氧单独或与H2O2结合使用时,在较高的pH值下可获得最高的去除效率和生物降解性。这些结果证实了在这种条件下羟基自由基的产生增加。在以5.6 g O3 h-1,初始pH 7和400 mg L-1的过氧化氢施加60分钟的臭氧后,COD去除效率为72%,BOD5 / COD从0.01增加到0.24。对所研究的AOPs工艺的运营成本的估算表明,Fe2 + / H2O2是处理垃圾渗滤液最经济的系统(去除了8.2€m-3 g-1的COD)。但是,应谨慎对待这一经济研究,因为它没有考虑初始投资,工厂规模的价格,维护和人工成本。

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