首页> 外文会议>Energy and Environment Technology, 2009. ICEET '09 >Enhancement of Tannery Wastewater Treatment at Low Temperature by Coagulation Coupled with Cationic Polyacrylamide
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Enhancement of Tannery Wastewater Treatment at Low Temperature by Coagulation Coupled with Cationic Polyacrylamide

机译:混凝-阳离子聚丙烯酰胺强化制革制革废水的低温处理

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As one of the heavily polluted industrial wastewaters tannery wastewater, which is difficult to handle especially in winter at low temperature, has attracted intensive attention all over the world recently. This work investigated the application of coagulation-flocculation to improve the treatment of raw tannery wastewater at low temperature (10¿). Parameters such as coagulant-flocculant combination, effective dosage and pH value etc. were optimized to enhance the removal of organic matter and suspended solids (SS). Ferric chloride, ferrous sulphate and polyaluminum chloride (PACl) were tested as conventional coagulants, and cationic polyacrylamide (C-PAM) was selected as flocculant. When coagulant was used alone, ferric chloride was found to be most efficient to remove chemical oxygen demand (COD) (42.8% removed) and SS (50.3% removed) and PACl was the lest affected by pH and produced less sludge than ferric chloride, as well as the least impact on the effluent pH. When coagulant was used in coupled with C-PAM, increased removal rate of COD and SS was achieved with a lower dosage demanded (4mg/L) for all coagulants and PACl showed the best performance of SS removal and the shortest sludge settling time (32s). The results illustrate this process can be an alternative pretreatment step prior to biological treatment at low temperature, especially for tannery wastewater.
机译:作为严重污染的工业废水之一,制革厂废水尤其在冬季的低温下难以处理,最近引起了全世界的广泛关注。这项工作调查了混凝-絮凝的应用,以改善低温(10°)的制革厂废水的处理。优化了混凝剂,絮凝剂组合,有效剂量和pH值等参数,以提高有机物和悬浮固体(SS)的去除率。测试了氯化铁,硫酸亚铁和聚氯化铝(PACl)作为常规混凝剂,并选择了阳离子聚丙烯酰胺(C-PAM)作为絮凝剂。当单独使用混凝剂时,发现氯化铁最有效地去除了化学需氧量(COD)(去除了42.8%)和SS(去除了50.3%),而PACl受pH的影响最小,并且产生的污泥比氯化铁少,且对废水pH的影响最小。当混凝剂与C-PAM结合使用时,对所有混凝剂的要求较低的剂量(4mg / L)可以提高COD和SS的去除率,而PACl显示出最佳的SS去除性能和最短的污泥沉降时间(32s)。 )。结果表明,该方法可以作为低温生物处理之前的替代预处理步骤,尤其是对于制革废水。

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