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首页> 外文期刊>Desalination and water treatment >Wastewater treatment of bottle oil washing water (BOWW) by hybrid coagulation-flocculation and biological process
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Wastewater treatment of bottle oil washing water (BOWW) by hybrid coagulation-flocculation and biological process

机译:混凝-絮凝-生物工艺处理瓶装洗净水(BOWW)废水

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摘要

The efficiency of physico-chemical and biological combined treatment processes of bottle oil washing wastewater (BOWW) was investigated. The coagulation and flocculation process followed by activated sludge treatment was carried out in order to produce a suitable chemical oxygen demand (COD) and oily effluent in conformity with the regulatory standards. Attempts were made in this study to examine the effectiveness of the coagulation and flocculation process using aluminium sulfate and polyelectrolyte (non-ionic preastol) for the treatment of BOWW. The removal of organic matter (COD), oil and color using Al_2(SO_4)_3·18H_2O and preastol during coagulation-flocculation process was investigated. Also, the optimum conditions for the coagulation-flocculation process, such as coagulant dosage, polyelectrolyte dosage, and solution pH were investigated using jar-test experiment. Results revealed that in the tested pH range tested, the optimal operating pH was 6.5. Removal percentage of 87, 95, and 97% for COD, oil and color, respectively, and were achieved by the addition of 180mg/L Al_2(SO_4)_3·18H_2O, whereas 87, 99, and 99%, were achieved with the addition of 1 g/L preastol to 180mg/L Al_2(SO_4)_3·18H_2O. The treatment of oily wastewater by an aerobic biological process was conducted using acclimated consortium and lipolytic strain isolated from lipidic effluent. The results of this investigation show that the system is capable of achieving high levels of purity; 93% COD removal, 99% oil removal, and 92% color removal. A comparison between the results shows that the physico-chemical single system was more improved than the physico-chemical and biological combined treatment. It can be concluded from this study that coagulation-flocculation may be a useful pre-treatment process for beverage industrial waste-water prior to biological treatment.
机译:研究了瓶装洗油废水(BOWW)的理化和生物联合处理工艺的效率。进行凝结和絮凝过程,然后进行活性污泥处理,以产生符合法规标准的合适的化学需氧量(COD)和油性废水。在这项研究中尝试检查使用硫酸铝和聚电解质(非离子型预固醇)治疗BOWW的凝结和絮凝过程的有效性。研究了混凝过程中Al_2(SO_4)_3·18H_2O和丙二醛对有机物(COD),油脂和色素的去除效果。此外,使用广口瓶试验实验研究了絮凝-絮凝过程的最佳条件,例如凝结剂用量,聚电解质用量和溶液pH值。结果表明,在所测试的pH范围内,最佳工作pH为6.5。通过添加180mg / L Al_2(SO_4)_3·18H_2O可实现COD,油和颜色的去除率分别为87%,95%和97%,而去除率分别为87%,99%和99%。在180mg / L Al_2(SO_4)_3·18H_2O中加入1 g / L的前列醇。使用需适应的联合体和从脂质废水中分离出的脂解菌株,通过好氧生物工艺处理含油废水。研究结果表明,该系统能够实现高纯度。 93%的COD去除率,99%的油去除率和92%的颜色去除率。结果之间的比较表明,物理化学单一系统比物理化学和生物联合处理更好。从这项研究可以得出结论,在生物处理之前,混凝-絮凝可能是饮料工业废水的有用预处理方法。

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  • 来源
    《Desalination and water treatment》 |2014年第9期|1362-1369|共8页
  • 作者单位

    Laboratoire de Genie Enzymatique et de Microbiologie, Ecole Nationale d'Ingenieurs-BP, W 3038, Sfax, Tunisie;

    Unite de Recherche Protection des Plantes Cultivees et Environnement, Institut de l'Olivier, Sfax, BP 1087, Tunisia;

    Unite de recherche Toxicologie-Microbiologie Environnementale et Sante (UR11ES70), Faculte des Sciences de Sfax, Universite de Sfax-Tunisia, Sfax, Tunisia;

    Laboratoire de Genie Enzymatique et de Microbiologie, Ecole Nationale d'Ingenieurs-BP, W 3038, Sfax, Tunisie;

    Unite de recherche Toxicologie-Microbiologie Environnementale et Sante (UR11ES70), Faculte des Sciences de Sfax, Universite de Sfax-Tunisia, Sfax, Tunisia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Oily wastewater; Combined treatment; Aluminium sulfate; Coagulation-flocculation; Biodegradation;

    机译:含油废水;联合治疗;硫酸铝;混凝-絮凝;生物降解;

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