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Sustainable remediation - The application of bioremediated soil for use in the degradation of TNT chips

机译:可持续修复-生物修复土壤在TNT芯片降解中的应用

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摘要

Environmental contamination by TNT (2,4,6 trinitrotoluene), historically used in civilian industries and the military as an explosive is of great concern due to its toxicity. Scientific studies have however shown that TNT is susceptible to microbial transformation. The aim of this study was to assess the potential of a previously bioremediated hydrocarbon contaminated soil (PBR) to increase TNT degradation rates. This was investigated by adding TNT chips to PBR and uncontaminated soils (PNC) in laboratory based studies (up to 16 weeks). Residual TNT chip analysis showed greater TNT degradation in PBR soils (70%) and significantly higher metabolic rates (4.5 fold increase in cumulative CO_2 levels) than in PNC soils (30%). Molecular analysis (PCR-DGGE-cluster analysis) showed substantial shifts in soil microbial communities associated with TNT contamination between day 0 and week 4 especially in PBR soils. Bacterial communities appeared to be more sensitive to TNT contamination than fungal communities in both soils. Quantitative PCR analysis showed ~3 fold increase in the abundance of nitroreductase genes (pnrA) in PBR soils with a gradual reduction in community evenness (Pareto-Lorenz curves) in contrast to PNC soils. These results suggest that microbial response to TNT contamination was dependent on the history of soil use. The results also confirm that the microbial potential of waste soils such as PBR soil (usually disposed of via landfill) can be successfully used for accelerated TNT chip degradation. This promotes sustainable re-use of waste soils extending the life span of landfill sites.
机译:TNT(2,4,6三硝基甲苯)对环境的污染,由于其毒性,历史上曾在民用工业和军事上用作炸药。然而,科学研究表明,TNT易受微生物转化的影响。这项研究的目的是评估以前被生物修复的碳氢化合物污染的土壤(PBR)增加TNT降解速率的潜力。在基于实验室的研究中(长达16周),通过在PBR和未污染的土壤(PNC)中添加TNT碎屑进行了研究。残留的TNT碎片分析显示,与PNC土壤(30%)相比,PBR土壤中的TNT降解更大(70%),代谢率显着更高(累积CO_2水平提高4.5倍)。分子分析(PCR-DGGE-簇分析)显示,在第0天至第4周之间,尤其是在PBR土壤中,与TNT污染相关的土壤微生物群落发生了重大变化。在两种土壤中,细菌群落似乎比真菌群落对TNT污染更敏感。定量PCR分析表明,与PNC土壤相比,PBR土壤中的氮还原酶基因(pnrA)的丰度增加了约3倍,而群落均匀度(Pareto-Lorenz曲线)则逐渐降低。这些结果表明微生物对TNT污染的反应取决于土壤使用的历史。结果还证实,废土(如PBR土壤)(通常通过填埋处理)的微生物潜力可成功用于加速TNT碎片降解。这促进了废土的可持续利用,从而延长了垃圾填埋场的寿命。

著录项

  • 来源
    《Journal of Environmental Management》 |2012年第2012期|p.69-76|共8页
  • 作者单位

    School of Biological Sciences, Flinders University of South Australia, Sturt Road, Bedford Park, Adelaide, GPO Box 2100, Adelaide, SA 5001, Australia,Centre of Excellence in Energetic Materials, Edinburgh, SA 5111, Australia;

    School of Biological Sciences, Flinders University of South Australia, Sturt Road, Bedford Park, Adelaide, GPO Box 2100, Adelaide, SA 5001, Australia;

    School of Biological Sciences, Flinders University of South Australia, Sturt Road, Bedford Park, Adelaide, GPO Box 2100, Adelaide, SA 5001, Australia;

    School of Biological Sciences, Flinders University of South Australia, Sturt Road, Bedford Park, Adelaide, GPO Box 2100, Adelaide, SA 5001, Australia;

    School of Biological Sciences, Flinders University of South Australia, Sturt Road, Bedford Park, Adelaide, GPO Box 2100, Adelaide, SA 5001, Australia;

    Explosives & Pyrotechnics Group, Weapons Systems Division, DSTO, Edinburgh, SA 5111, Australia;

    School of Biological Sciences, Flinders University of South Australia, Sturt Road, Bedford Park, Adelaide, GPO Box 2100, Adelaide, SA 5001, Australia,School of Applied Sciences, RMIT University, Bundoora, Victoria 3083, Australia,Centre of Excellence in Energetic Materials, Edinburgh, SA 5111, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    2,4,6 trinitrotoluene; DGGE; QPCR; microbial community; bioremediated soil;

    机译:2,4,6三硝基甲苯;DGGE;QPCR;微生物群落;生物修复土壤;

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