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首页> 外文期刊>Water, Air, and Soil Pollution >Pulp and Paper Mill Effluent Treated by Combining Coagulation-Flocculation-Sedimentation and Fenton Processes
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Pulp and Paper Mill Effluent Treated by Combining Coagulation-Flocculation-Sedimentation and Fenton Processes

机译:混凝-絮凝-沉淀-Fenton法联合处理制浆造纸废水

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摘要

Pulp and paper industries face serious environmental challenges, especially with regard to the conservation of water resources. Chemical thermal mechanical pulping (CTMP) is a process of pulping that combines chemical and mechanical pulping. This reduces the volume of water used in the process. But on the other hand, CTMP generates an effluent with high concentration of organic matter and is difficult to treat. This study evaluated the efficiency in the combination of physicochemical pretreatment by coagulation-flocculation-sedimentation (CFS) process and advanced oxidation process (AOP) by Fenton in sequence to treat CTMP effluent of a Brazilian industry. At first, the best treatment conditions for this type of effluent were determined. To evaluate the efficiency, pH, chemical oxygen demand, biochemical oxygen demand, total organic carbon, lignin contents, color, total phenolic contents, turbidity, and solids were measured before and after treatment. The acute toxicity on Daphnia magna was also determined. The treatment with CFS showed better results in the removal of solids and Fenton in the removal of recalcitrant compounds, such as lignin, demonstrating the need to use them in sequence. Combining CFS and Fenton to treat CTMP effluent allowed to achieve a removal efficiency of 95% for TOC, 61% for COD, and 76% for lignin contents.
机译:制浆造纸业面临严重的环境挑战,特别是在节约水资源方面。化学热机械制浆(CTMP)是将化学和机械制浆相结合的制浆过程。这减少了该过程中使用的水量。但是另一方面,CTMP产生的废水中有机物浓度高,难以处理。这项研究评估了通过Fenton的混凝-絮凝-沉淀(CFS)工艺和高级氧化工艺(AOP)进行物理化学预处理相结合的顺序处理巴西工业CTMP废水的效率。首先,确定了此类废水的最佳处理条件。为了评估效率,pH,化学需氧量,生化需氧量,总有机碳,木质素含量,颜色,总酚含量,浊度和固体,在处理前后进行了测量。还确定了对大型蚤(Daphnia magna)的急性毒性。 CFS处理在去除固体和芬顿在去除顽固性化合物(如木质素)方面显示出更好的结果,表明需要按顺序使用它们。将CFS和Fenton结合使用以处理CTMP废水,可使TOC的去除效率达到95%,COD的去除效率为61%,木质素含量的去除效率为76%。

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