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Combined Fenton-SBR process for bamboo industry wastewater treatment

机译:Fenton-SBR组合工艺处理竹业废水

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Bamboo industry wastewater (BIWW) degradation is difficult because of its high organic matter content and low biodegradability. In this study, the Fenton process was coupled to a sequencing batch reactor (SBR) for the treatment of BIWW. The Taguchi method was used to optimize the Fenton process for partial mineralization (TOC removal) and biodegradability (BOD5/COD ratio) enhancement. The optimum dosages at pH 4.0 were determined to be 52.9 mM H2O2 and 7.9 mM Fe(II). At the biological stage, the effect of anoxic-aerobic durations was evaluated. The best resulting operation mode was 4 h for the anoxic phase and 6 h for the aerobic phase. During this operation mode, a global chemical oxygen demand (COD) removal of more than 89% was achieved, along with nearly complete nitrification and decolorization. The effect of the hydraulic retention time (HRT) on SBR performance was also studied. Generally, effluents with HRTs of more than 1.5 d met China's second grade national discharge standard. Major organic compounds were identified with Gas Chromatography-Mass Spectrometer (GC-MS). Most of the benzene and ester derivatives were completely eliminated following the Fenton-SBR process. However, amide and alkane derivatives were generated mainly as by-products from the different stages of the combined treatment.
机译:竹业废水(BIWW)的降解非常困难,因为它的有机物含量高且生物降解能力低。在这项研究中,将Fenton工艺与测序间歇反应器(SBR)耦合以治疗BIWW。 Taguchi方法用于优化Fenton工艺,以实现部分矿化(去除TOC)和增强生物降解性(BOD5 / COD比)。在pH 4.0下确定最佳剂量为52.9 mM H2O2和7.9 mM Fe(II)。在生物学阶段,评估缺氧-有氧持续时间的影响。最佳的运行模式是缺氧阶段为4小时,好氧阶段为6小时。在此操作模式下,全球化学需氧量(COD)去除量超过89%,同时几乎完成了硝化和脱色。还研究了水力停留时间(HRT)对SBR性能的影响。一般而言,HRT超过1.5天的废水符合中国的二级国家排放标准。气相色谱-质谱仪(GC-MS)鉴定了主要有机化合物。在Fenton-SBR工艺之后,大部分苯和酯衍生物被完全消除。但是,酰胺和烷烃衍生物主要是联合处理不同阶段的副产物。

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