...
首页> 外文期刊>New biotechnology >In situ groundwater and sediment bioremediation: barriers and perspectives at European contaminated sites
【24h】

In situ groundwater and sediment bioremediation: barriers and perspectives at European contaminated sites

机译:原位地下水和沉积物的生物修复:欧洲受污染场地的障碍和观点

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

This paper contains a critical examination of the current application of environmental biotechnologies in the field of bioremediation of contaminated groundwater and sediments. Based on analysis of conventional technologies applied in several European Countries and in the US, scientific, technical and administrative barriers and constraints which still need to be overcome for an improved exploitation of bioremediation are discussed. From this general survey, it is evident that in situ bioremediation is a highly promising and cost-effective technology for remediation of contaminated soil, groundwater and sediments. The wide metabolic diversity of microorganisms makes it applicable to an ever-increasing number of contaminants and contamination scenarios. On the other hand, in situ bioremediation is highly knowledge-intensive and its application requires a thorough understanding of the geochemistry, hydrogeology, microbiology and ecology of contaminated soils, groundwater and sediments, under both natural and engineered conditions. Hence, its potential still remains partially unexploited, largely because of a lack of general consensus and public concerns regarding the lack of effectiveness and control, poor reliability, and possible occurrence of side effects, for example accumulation of toxic metabolites and pathogens. Basic, applied and pre-normative research are all needed to overcome these barriers and make in situ bioremediation more reliable, robust and acceptable to the public, as well as economically more competitive. Research efforts should not be restricted to a deeper understanding of relevant microbial reactions, but also include their interactions with the large array of other relevant phenomena, as a function of the truly variable site-specific conditions. There is a need for a further development and application of advanced biomolecular tools for site investigation, as well as of advanced metabolic and kinetic modelling tools. These would allow a quicker evaluation of the bioremediation potential of a site, and in turn a preliminary assessment of the technical feasibility of the chosen bioprocess which could replace or at least reduce the need for time-consuming and expensive field tests. At the same time, field tests will probably remain unavoidable for a detailed design of full scale remedial actions and the above reported tools will in any event be useful for a better design and a more reliable operation.
机译:本文对环境生物技术在被污染的地下水和沉积物的生物修复领域中的当前应用进行了严格的审查。在分析了在多个欧洲国家和美国使用的常规技术的基础上,讨论了科学,技术和行政方面的障碍和约束,这些障碍和约束对于改进生物修复的开发仍需克服。从这项总体调查中可以明显看出,原位生物修复是一种非常有前途且具有成本效益的技术,用于修复受污染的土壤,地下水和沉积物。微生物广泛的代谢多样性使其适用于越来越多的污染物和污染情况。另一方面,原位生物修复需要大量的知识,其应用需要对自然和工程条件下受污染的土壤,地下水和沉积物的地球化学,水文地质学,微生物学和生态学有全面的了解。因此,其潜力仍未得到部分开发,这主要是由于缺乏普遍共识以及公众对缺乏有效性和控制力,可靠性差以及可能发生副作用(例如有毒代谢产物和病原体积累)的担忧。基础,应用和规范前的研究都需要克服这些障碍,并使原位生物修复更可靠,更可靠并为公众所接受,并在经济上更具竞争力。研究工作不应仅限于对相关微生物反应的更深入了解,还应包括它们与大量其他相关现象的相互作用,这取决于真正可变的特定地点条件。需要用于现场调查的高级生物分子工具以及高级代谢和动力学建模工具的进一步开发和应用。这些将允许更快地评估站点的生物修复潜力,进而对所选生物过程的技术可行性进行初步评估,可以替代或至少减少耗时且昂贵的现场测试的需求。同时,对于全面补救措施的详细设计,现场测试可能仍将不可避免,并且上述报告的工具无论如何对于更好的设计和更可靠的操作都是有用的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号