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Physical pretreatment of petroleum refinery wastewater instead of chemicals addition for collaborative removal of oil and suspended solids

机译:石油炼油厂的物理预处理废水代替化学品,用于协同除去油和悬浮固体

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摘要

The conventional petroleum refinery wastewater pretreatment process, usually consisting of an American Petroleum Institute (API) separator and air flotation tank, mainly achieves suspended solids (SS) and oil removal but also presents many shortcomings, such as chemical consumption, flotation scum production and land occupation. A physical method coupled by hydrocyclone-intensified filtration (HIF) and mixed fibrous coalescer was first proposed, followed by a lab-scale experimental investigation of the feasibility of collaborative suspended solids (SS) and oil removal. A 1 m(3)/h pilot-scale physical pretreatment unit was also set up to comprehensively evaluate the collaborative removal efficiency of oil and SS and the operation stability in raw petroleum refinery wastewater. The effect of the initial oil concentration, mainly emulsified oil, on the removal efficiency was thoroughly explored by the physical pretreatment process. The mean oil and SS concentrations of the petroleum refinery wastewater was decreased from 1078.9 mg/L and 214.2 mg/L to 9.7 mg/L and 31.2 mg/L, respectively, due to the physical pretreatment process. Additionally, the mean effluent oil concentration of the pilot-scale physical pretreatment unit decreased to 11.1 mg/L, and that of the flotation tank effluent was 18.8 mg/L, which also indicated that the physical pretreatment process had better performance in coping with influent fluctuations (with mean values from 14.4 mg/L to 5214.1 mg/L). SS and most of the oil in the petroleum refinery wastewater were efficiently separated by the hydrocyclone-intensified filter based on interception and adsorption by the filter media and thorough surface renewal of the filter media in the hydrocyclone, followed by further emulsified oil removal due to the X-shaped heterogeneous fibers. No flocculants were added to the physical pretreatment unit, thus achieving remarkable savings of 80.64 t/year poly-aluminum chloride (PAC) and 53.12 t/year polyacrylamide (PAM). Compared with a conventional pretreatment process with a capacity of 800 m(3)/h, the physical pretreatment process saves approximately 196 thousand USD/year due to chemicals consumption elimination and the oil sludge reduction arising therefrom. The physical pretreatment process instead of chemicals addition can help achieve the environmentally friendly goals of near-zero consumption of chemical flocculant, a near-zero increase in oil sludge and near-zero emission of VOCs. (C) 2020 Elsevier Ltd. All rights reserved.
机译:传统的石油炼油厂废水预处理过程,通常由美国石油研究所(API)分离器和空气浮选罐组成,主要实现悬浮的固体(SS)和除油,还呈现出许多缺点,如化学消费,浮选浮渣生产和土地职业。首先提出了一种由水力旋流 - 强化过滤(HIF)和混合纤维聚结器偶联的物理方法,然后进行实验室规模的实验研究,对协同悬浮固体(SS)和除油的可行性的实验研究。还设立了1米(3)/ h先导物理预处理单元,以全面评估油和SS的协作去除效率以及原料石油炼油厂废水中的操作稳定性。通过物理预处理过程彻底探索了初始油浓度,主要是乳化油的效果,彻底探索了去除效率。由于物理预处理方法,石油炼油废水的平均油和SS浓度分别从1078.9mg / L和214.2mg / L至9.7mg / L和31.2mg / L.另外,先导尺度物理预处理单元的平均流出物油浓度降至11.1mg / L,浮选罐流出物的污水为18.8mg / L,这也表明物理预处理过程具有更好的性能在应对流动性波动(具有14.4mg / L至5214.1mg / L)的平均值。石油炼油厂废水中的SS和大多数油基于拦截介质和过滤介质的过滤介质在水力旋流器中的过滤介质的吸附有效地分离,然后通过进一步乳化的油除去X形非均相纤维。没有将絮凝剂加入到物理预处理单元中,从而实现了80.64吨/年聚氯化铝(PAC)和53.12吨/年聚丙烯酰胺(PAM)的显着节省。与容量为800米(3)/ h的常规预处理过程相比,由于化学品消耗消除,物理预处理过程节省了大约196万美元/年。从中引起的油污泥降低。物理预处理过程代替化学品加入可以帮助实现化学絮凝剂的近零消耗的环保目标,油污近零增加和VOC的接近零排放。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2021年第2期|123821.1-123821.11|共11页
  • 作者单位

    East China Univ Sci & Technol Natl Engn Lab Ind Wastewater Treatment 130 Meilong Rd Shanghai 200237 Peoples R China;

    East China Univ Sci & Technol Natl Engn Lab Ind Wastewater Treatment 130 Meilong Rd Shanghai 200237 Peoples R China;

    East China Univ Sci & Technol Natl Engn Lab Ind Wastewater Treatment 130 Meilong Rd Shanghai 200237 Peoples R China;

    East China Univ Sci & Technol Natl Engn Lab Ind Wastewater Treatment 130 Meilong Rd Shanghai 200237 Peoples R China;

    East China Univ Sci & Technol Natl Engn Lab Ind Wastewater Treatment 130 Meilong Rd Shanghai 200237 Peoples R China;

    East China Univ Sci & Technol Natl Engn Lab Ind Wastewater Treatment 130 Meilong Rd Shanghai 200237 Peoples R China;

    East China Univ Sci & Technol Natl Engn Lab Ind Wastewater Treatment 130 Meilong Rd Shanghai 200237 Peoples R China;

    Sinopec Guangzhou Petrochem Engn Corp Guangzhou 510500 Peoples R China;

    Sinopec Zhenhai Refining & Chem Co Ningbo 31520 Peoples R China;

    Sinopec Zhenhai Refining & Chem Co Ningbo 31520 Peoples R China;

    East China Univ Sci & Technol Natl Engn Lab Ind Wastewater Treatment 130 Meilong Rd Shanghai 200237 Peoples R China;

    East China Univ Sci & Technol Natl Engn Lab Ind Wastewater Treatment 130 Meilong Rd Shanghai 200237 Peoples R China;

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

    Nonchemical; Petroleum refinery wastewater; Pretreatment process; Hydrocyclone-intensified filtration; Physical separation;

    机译:非化学;石油炼油厂废水;预处理过程;水力旋流加强过滤;物理分离;

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