首页> 外文会议>Sixth International in Situ and On-Site Bioremediation Symposium, 6th, Jun 4-7, 2001, San Diego, California >PERFORMANCE ASSESSMENT OF THE PHASED REMEDIATION OF A FORMER GAS MANUFACTURING PLANT
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PERFORMANCE ASSESSMENT OF THE PHASED REMEDIATION OF A FORMER GAS MANUFACTURING PLANT

机译:前天然气制造厂分阶段修复的性能评估

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The remediation of a former manufactured gas plant (MGP) in the north of England is the subject of both a commercial remediation project and an ongoing collaborative research programme. A risk-based remediation strategy has been adopted, which involved an initial risk assessment to identify appropriate cleanup criteria and removal of primary sources. This was followed by remedial technology pilot testing, and the installation and monitoring of a full scale in-situ air sparging system. This system is currently operational. Periodic measurements of dissolved organic and inorganic components, and highly detailed time series of temperature, Eh, pH, dissolved oxygen and piezometry have been obtained for the sparge system. Naphthalene degradative activities have been assessed through the application of Filters for the Recovery of Organisms from Groundwater Samples (FROGS). Integration and interpretation of the data is undertaken using a biogeochemical groundwater model. Significant reductions in dissolved phase hydrocarbons are being achieved within and downgradient of the aeration zone. Integration of laboratory challenge tests for hydrocarbon mineralisation rates with in-situ measurements from the sparge system have demonstrated the response of the subsurface environment to the changes in redox conditions following the introduction of the sparge barrier. These results also provide guidance on the long-term effectiveness of the sparge barrier.
机译:英格兰北部的一家以前的天然气生产厂(MGP)的修复既是商业修复项目,也是正在进行的合作研究计划的主题。已采取基于风险的补救策略,其中涉及初步风险评估,以识别适当的清理标准并清除主要来源。随后进行补救技术先导测试,并安装和监视完整的原位空气喷射系统。该系统当前正在运行。对于喷射系统,已经获得了对溶解的有机和无机成分的定期测量,以及温度,Eh,pH,溶解氧和测压的详细时间序列。萘的降解活性已通过使用用于从地下水样品中回收生物的过滤器(FROGS)进行了评估。使用生物地球化学地下水模型对数据进行整合和解释。在曝气区之内和下降区,溶解相烃的显着减少正在实现。实验室针对烃类矿化速率的挑战性测试与喷射系统的现场测量相结合,证明了引入喷射屏障后地下环境对氧化还原条件变化的响应。这些结果也为喷射屏障的长期有效性提供了指导。

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