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Bioremediation of pentachlorophenol-contaminated soil using an anaerobic sludge digestion process.

机译:使用厌氧污泥消化工艺对五氯苯酚污染的土壤进行生物修复。

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摘要

The extensive pentachlorophenol (PCP) contamination and its increasing treatment costs motivate the search for a more competitive treatment alternative. Anaerobic sludge handling at a wastewater treatment plant comprises some commonly-used bioprocesses for organics destruction and biosolids application. Its availability and effectiveness make anaerobic sludge handling a potential technology to treat PCP-contaminated soil.; The technical feasibility of using anaerobic sludge bioprocesses was studied by treating PCP soil in pilot digesters to represent primary sludge digestion, in serum bottles to represent post-sludge digestion, and in glass pans to represent on-site sludge application. For primary digestion, up to 0.98 and 0.6 mM of chemical and soil PCP were treated at nearly 100% and 97.5% efficiencies. PCP degradation followed two major pathways: PCP to 2,3,4,5-TeCP to 2,3,5- or 3,4,5-TCP to 3,5-DCP to 3-MCP; PCP to 2,3,5,6-TeCP to 2,3,5-TCP to 3,5,-DCP to 3-MCP. The PCP was transformed 95% to 3-MCP, 4.5% to 3,4-DCP, and 0.5% to 3,5-DCP. A system of first-order differential equations was sufficient to model a batch-mode PCP degradation system. For post digestion, 100% pure chemical PCP and greater than 95% soil PCP were removed in less than 6 months. Complete removal of PCP by-products makes this process a good soil cleanup method. For on-site treatment, PCP was efficiently treated by multiple sludge application.; Currently, soil treatment is regulated by the cleanup standard, a risk-based value, that defines a site as nonhazardous and Land Disposal Restriction standard that allows putting the treated soil back to its original site if soil PCP is less than 74 mg/kg or treatment efficiency is greater than 90%. All three anaerobic sludge bioprocesses showed that they were capable of degrading soil PCP, demonstrating their potential use in PCP-contaminated site remediation. Sludge acclimation resulted in better PCP treatment efficiencies with all three processes. More mass PCP per unit sludge per day was processed using primary sludge digestion than with on-site soil treatment or post-sludge digestion.
机译:广泛的五氯苯酚(PCP)污染及其不断增加的处理成本,促使人们寻求更具竞争力的处理方法。废水处理厂的厌氧污泥处理包括一些常用的生物过程,用于有机物的破坏和生物固体的应用。它的可用性和有效性使厌氧污泥处理成为处理被五氯苯酚污染的土壤的潜在技术。通过在中试消化池中代表初级污泥消化,在血清瓶中代表污泥后消化以及在玻璃锅中代表现场污泥应用来处理PCP土壤,研究了使用厌氧污泥生物工艺的技术可行性。对于初次消化,以近100%和97.5%的效率处理了高达0.98和0.6 mM的化学和土壤PCP。 PCP降解遵循两个主要途径:PCP到2,3,4,5-TeCP到2,3,5-或3,4,5-TCP到3,5-DCP到3-MCP; PCP到2,3,5,6-TeCP到2,3,5-TCP到3,5,-DCP到3-MCP。将PCP转化为95%为3-MCP,4.5%为3,4-DCP和0.5%为3,5-DCP。一阶微分方程组足以建模批处理模式PCP退化系统。对于后消化,在不到6个月的时间内去除了100%的纯化学五氯苯酚和大于95%的土壤五氯苯酚。完全去除五氯苯酚副产物使该工艺成为一种良好的土壤净化方法。对于现场处理,五氯苯酚可通过多次污泥处理得到有效处理。目前,土壤处理受清理标准(基于风险的值)的管制,清理标准将场地定义为非危险和土地处置限制标准,如果土壤PCP低于74 mg / kg或治疗效率大于90%。所有三个厌氧污泥生物过程均表明它们能够降解土壤中的五氯苯酚,证明了其在被五氯苯酚污染的场地修复中的潜在用途。污泥的驯化在所有三个过程中均能提高PCP的处理效率。相比于现场土壤处理或污泥后消化,使用初级污泥消化处理的每单位污泥每天质量PCP更高。

著录项

  • 作者

    Chen, Shyi-Tien.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Environmental.; Health Sciences Toxicology.; Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 232 p.
  • 总页数 232
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;毒物学(毒理学);生物化学;
  • 关键词

  • 入库时间 2022-08-17 11:48:12

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