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Microbial reduction of dinitrotoluene sulfonates in TNT red water-contaminated soil

机译:TNT红水污染土壤中的二硝基甲苯磺酸盐的微生物还原

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摘要

Purpose Large quantities of TNT red water which contained mainly dinitrotoluene sulfonates (DNTS) were produced during the production of TNT, threatening the surrounding environments. In china, about 1.5 x 10(5) m(3)soil was contaminated by TNT red water. So, it is extremely important to remediate the DNTS-contaminated sites. Materials and methods Batch biodegradation tests were conducted to investigate the influence of environmental factors (microorganism dosage, initial DNTS concentration, water/soil ratio, and temperature) on the microbial reduction of DNTS in soil. The biodegradation intermediate metabolites of 2,4-dinitrotoluene-3-sulfonate (2,4-DNT-3-SO3-) and 2,4-dinitrotoluene-5-sulfonate (2,4-DNT-5-SO3-) during the remediation process were determined. Three kinetic models were used to study the biodegradation kinetics of DNTS in soil. Finally, high-throughput sequencing (HTS) technology was applied to identify the microbial communities in soil samples during the bioremediation process. Results and discussion Batch experiments showed that at initial concentration of 500 mg kg(-1), 2,4-DNT-3-SO(3)(-)and 2,4-DNT-5-SO(3)(-)removal efficiencies reached 100% after 25 and 13 days under the following conditions: water/soil ratio of 2:5, microorganism dosage (w/w) of 1%, and temperature of 35 degrees C. The microbial consortium metabolized 2,4-DNT-3-SO(3)(-)and 2,4-DNT-5-SO(3)(-)via reductive pathways. The biodegradation processes fitted well with zero-order reaction kinetics at different initial DNTS concentrations. HTS results showed that the bacterial communities were greatly influenced by the DNTS addition. The dominant genus in 2,4-DNT-3-SO3--contaminated soil wereBacillus,Pseudomonas,Simiduia,Salegentibacter, andMethylohalomonaswhile that in 2,4-DNT-3-SO3--contaminated soil wereBacillus,Pseudomonas,Simiduia,Methylohalomonas,Salegentibacter,Pontibacter, andActinotalea. Conclusions Microbial consortium showed great DNTS-degrading ability.Bacillus,Pseudomonas, andSimiduiaplayed a major role in biodegradation of 2,4-DNT-3-SO(3)(-)and 2,4-DNT-5-SO(3)(-)in soil. The microbial consortium tolerated high levels of DNTS found in the soil and degraded the contaminants into more biodegradable forms. The biotreatment technology is effective and has a potential to be use in remediation of TNT red water-contaminated sites.
机译:目的在生产TNT的生产过程中,生产了大量TNT红水,其含有二硝基甲苯磺酸盐(DNT),威胁周围环境。在中国,约1.5×10(5)米(3)土壤被TNT红水污染。因此,修复DNT污染的位点是非常重要的。进行材料和方法批量生物降解试验,研究了环境因素(微生物剂量,初始DNT浓度,水/土壤比率和温度)对土壤中DNT的微生物还原的影响。生物降解2,4-二硝基甲苯-3-磺酸盐(2,4-DNT-3-SO3-)和2,4-二硝基甲苯-5-磺酸盐(2,4-DNT-5-SO3-)的生物降解中间体代谢物(2,4-DNT-5-SO3-)确定修复过程。三种动力学模型用于研究土壤中DNT的生物降解动力学。最后,应用高通量测序(HTS)技术在生物化过程中鉴定土壤样品中的微生物群落。结果和讨论分批实验表明,在初始浓度为500mg kg(-1),2,4-dnt-3-so(3)( - )和2,4-dnt-5-so(3)( - )在下列条件下25至13天后的去除效率达到100%:水/土比例为2:5,微生物剂量(W / W)为1%,温度为35℃。微生物联盟代谢2,4- DNT-3-SO(3)( - )和2,4-DNT-5-SO(3)( - )通过还原途径。在不同初始DNT浓度下,生物降解过程很好地井源性反应动力学。 HTS结果表明,细菌社区受到DNT加入的影响。 2,4-DNT-3-SO3 - 污染土壤中的占优势属,假单胞菌,Simiduia,Salegentibacter,Andmethylohalomonashile,在2,4-DNT-3-SO3 - 污染的土壤中赤霉病,假单胞菌,Simiduia,Methylohalomonas,Salegentibacter ,安康杆菌,andactinotalea。结论微生物联盟显示出伟大的DNTS降解能力。白毛虫,假单胞菌,XMSudomonas,在2,4-DNT-3-SO(3)( - )和2,4-DNT-5-SO(3)中的生物降解中的主要作用 - )在土壤中。在土壤中发现的微生物联合耐受高水平的DNT,并将污染物降解为更可生物降解的形式。生物处理技术是有效的,并且有可能用于修复TNT红水污染场地。

著录项

  • 来源
    《Journal of soil & sediments》 |2021年第2期|914-924|共11页
  • 作者单位

    Nanjing Inst Technol Sch Environm Engn Nanjing 211167 Peoples R China|Peking Univ Dept Environm Engn Key Lab Water & Sediment Sci Minist Educ Beijing 100871 Peoples R China;

    Peking Univ Dept Environm Engn Key Lab Water & Sediment Sci Minist Educ Beijing 100871 Peoples R China;

    Peking Univ Dept Environm Engn Key Lab Water & Sediment Sci Minist Educ Beijing 100871 Peoples R China;

    Nanjing Inst Technol Sch Environm Engn Nanjing 211167 Peoples R China;

    Nanjing Inst Technol Sch Environm Engn Nanjing 211167 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biodegradation; TNT red water-contaminated soil; Dinitrotoluene sulfonates; Bacterial community structure;

    机译:生物降解;TNT红水污染土壤;二硝基甲苯磺酸盐;细菌群落结构;

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