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Chemibiological treatment of difficult wastewaters: case study on tanning wastewater

机译:难以废水的化学治疗:晒黑废水案例研究

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Chemibiological treatment with H_2O_2 cracking was studied using several difficult wastewaters; that on tanning wastewater is reported here. The H_2O_2 oxidation was aided by ferrous sulphate, also known as the Fenton process; the effluent was then further treated in a biological sequencing batch reactor (SBR). Experiments were carried out to study the effects of and to obtain the optimum values for three parameters: concentrations of Fe~(2+), H_2O_2 and OH~-, on COD and colour reductions. The chemical treatment was found very effective in reducing colour, but only moderately effective on COD reduction; however it had rendered the organics more amenable to biological treatment. The optimal pH for H_2O_2 cracking was found to be at pH 2.9-3.9; the optimum FeSO_4 concentration was about 200 mg/L, resulting in about 60% COD and 90% colour reductions, with the Fe~(2+) regenerated and partially complexed or precipitated. the lab scale biological SBR had reduced the residual COD after chemical cracking of 300-500 mg/L to below 60 mg/L; while colour was reduced from about 300 PtCo to below 30 PtCo. This study has shown that a simple process feasible for small operators is able to treat a difficult wastewater to a level accepted as safe for discharge to surface waters.
机译:用双氧水开裂Chemibiological处理使用的几个难点废水的研究;上制革废水在这里报道。的H_2O_2氧化用硫酸亚铁,也被称为Fenton法辅助;的流出物然后进一步在生物序批式反应器(SBR)处理。进行实验来研究的影响,并以获得的三个参数的最佳值由Fe〜的浓度(2+),和H_2O_2 OH〜 - ,对COD和颜色减少。化学处理被发现在降低色彩非常有效的,但只有在COD减排适度有效;但是它呈现的有机物更适合于生物处理。对于H_2O_2裂化的最佳pH被发现是在pH 2.9-3.9;最佳FeSO_4浓度为约200mg / L,导致约60%的COD和90%的色减少,具有再生和部分络合或沉淀中的Fe〜(2+)。实验室规模生物SBR已经化学裂解的300-500毫克/ L至60mg / L以下后减少的残留COD;而颜色由大约300负载PtCo降低到低于30负载PtCo。这项研究表明,一个简单的过程对小运营商可行的是能够治疗困难废水接受安全排放到地表水的水平。

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