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Treatment for high-concentration liquid crystal wastewater with a novel Fenton-SBR-microwave pyrolysis integrated process

机译:用新型FENTON-SBR微波热解综合加工处理高浓度液晶废水

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A novel Fenton-SBR-microwave pyrolysis integrated process is developed to treat liquid crystal wastewater possessing complex components, high toxicity and strong stability. In this integrated process, Fenton-SBR and microwave pyrolysis are for the removal of chemical oxygen demand (COD) and disposal of iron mud generated in the Fenton process respectively. The effects of H2O2:Fe2+ molar ratio and Fenton dosage on COD removal were optimized. The experimental results revealed that the removal efficiencies for COD and total organic carbon (TOC) were 99.8% and 99.2%, and the values for MLSS and SVI were stable at 4,500 mg L-1 and 65%, respectively. Microscopic examination proved that there were rotifer, Epistylis galea, Opercularia coarctata, vorticella and mormon genus which are indicative microbes for good water quality. Iron mud waste produced in the Fenton reaction was handled with microwave pyrolysis, producing & x251;-Fe2O3 commercial byproduct. The estimated cost including chemical reagents and electricity for this integrated process is about $320 T-1, without consideration of the added value of the & x251;-Fe2O3 byproduct. TOC removals in the Fenton and SBR processes both fit well with pseudo-first-order kinetics and the corresponding half-life times are 0.15 and 7 h, respectively.
机译:一种新颖的芬顿-SBR-微波裂解集成工艺开发用于治疗液晶废水具有复杂的组件,高毒性和强稳定性。在这种集成方法,芬顿-SBR和微波裂解是用于去除化学需氧量(COD)和处置分别在芬顿过程中产生的铁泥。 H2O2的作用:对COD去除率的Fe2 +的摩尔比和芬顿剂量进行优化。实验结果表明,对于COD和总有机碳(TOC)的去除率分别为99.8%和99.2%,而对于MLSS和SVI的值在4500毫克L-1和65%,分别是稳定的。显微镜检查证明,有轮虫,累枝虫盔瓣,Opercularia coarctata,钟虫和摩门教属这对于水质良好指示微生物。在Fenton反应产生的铁泥浆废物用微波热解处理,制作&x251; -Fe2O3商业副产品。包括化学试剂和电力这集成过程所估计的成本大约是$ 320 T-1,不考虑与x251的附加值的; -Fe2O3副产品。在芬顿和SBR TOC清除处理二者配合很好利用伪一级动力学和相应的半衰期时间为0.15和7小时,分别。

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