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Remediation of soil and groundwater by vacuum-enhanced recovery.

机译:通过真空增强回收来修复土壤和地下水。

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摘要

A literature review and case study of Vacuum Enhanced Recovery (VER) technology, also known as bioslurping, is presented in this project paper. The literature review was conducted to investigate historic and current VER design and pilot study practices. The case study presents the field activities and results of an actual VER pilot study conducted at an operating retail petroleum facility. The results of the pilot study were used to assess the feasibility of VER technology to remediate hydrocarbon impacted soil and groundwater and to design a full scale VER system for the site.; The pilot study results indicated a high level of contaminant mass removal from the subsurface and a large zone of groundwater influence. Consequently, VER was deemed an acceptable remediation technology for the case site. The full scale system was designed to draw 8.60 am3/min (300 acfm) of air and 57 Lpm of water from the subsurface at an operating vacuum of 457 mm Hg. (18 in. Hg). The system employed a 30 hp oil-sealed liquid vacuum pump attached to eight individually plumbed extraction wells. An initial mass removal rate of 1,430 kg/day of total petroleum hydrocarbons was estimated.; VER is a relatively new subject in the field of remediation engineering. Additional research should focus on methods to limit the uncertainty in design due to site-specific heterogeneities, less onerous methods of applying numerical modeling to simulate multiphase flow in the subsurface, and additional case studies to improve pilot study protocol and VER system design.
机译:该项目论文介绍了真空增强回收(VER)技术(也称为生物制浆)的文献综述和案例研究。进行了文献综述,以调查历史和当前的VER设计和试点研究实践。该案例研究介绍了在运营中的零售石油设施进行的实际VER试验研究的现场活动和结果。初步研究的结果用于评估VER技术用于修复碳氢化合物影响的土壤和地下水的可行性,并为该地点设计一个完整的VER系统。初步研究结果表明,从地下清除的污染物量很高,并且对地下水的影响很大。因此,VER被认为是案件现场可接受的补救技术。全尺寸系统设计为在457毫米汞柱的工作真空下从地下抽取8.60 am3 / min(300 acfm)的空气和57 Lpm的水。 (18英寸汞柱)。该系统使用了一个30 hp的油封液体真空泵,该泵连接到八个单独铅垂的抽取井。估计最初的除油速率为每天1,430千克总石油烃。 VER是修复工程领域中相对较新的主题。附加的研究应集中于限制因现场特定的异质性而导致的设计不确定性的方法,采用数值模型来模拟地下多相流的繁琐方法,以及用于改进试验研究方案和VER系统设计的附加案例研究。

著录项

  • 作者

    Nardone, Marco.;

  • 作者单位

    University of Windsor (Canada).;

  • 授予单位 University of Windsor (Canada).;
  • 学科 Engineering Civil.; Engineering Environmental.
  • 学位 M.A.Sc.
  • 年度 2000
  • 页码 90 p.
  • 总页数 90
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学 ; 环境污染及其防治 ;
  • 关键词

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