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Application of the growth substrate pulsed feeding technique to a process of chloroform aerobic cometabolism in a continuous-flow sand-filled reactor

机译:生长底物脉冲进料技术在连续流充砂反应器中氯仿需氧代谢过程中的应用

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摘要

A process of chloroform (CF) aerobic cometabolic biodegradation by a butane-growing consortium was studied for 354 days in a 2-m continuous-flow sand-filled reactor. The study was aimed at (a) investigating the oxygen/substrate pulsed injection as a tool to control the clogging of the porous medium, to attain a wide bioreactive zone and to reduce substrate inhibition on CF cometabolism; (b) developing a reliable model of CF cometabolism in porous media. While the continuous supply of butane rapidly led to the clogging of the porous medium due to excessive biomass growth, the testing of six types of oxygen/substrate pulsed feeding led to the identification of a feeding schedule capable to prevent aquifer clogging and to lead to the development of a long bioreactive zone and to satisfactory CF degradation performances. The tested model of aerobic cometabolism allowed a suitable interpretation of the experimental data as long as the ratio of CF degraded to butane consumed was ≤0.27 mg_(CF) mg_(butane)~(1) A long-term 1 -D simulation of the best-performing schedule of pulsed oxygen/substrate supply extended to a 30-m aquifer length resulted in a 20-m bioreactive zone and in a 96% CF removal.
机译:在一个2 m连续流填充沙子的反应器中,研究了丁烷生长财团对氯仿(CF)的需氧代谢降解过程,历时354天。该研究的目的是:(a)研究氧气/底物脉冲注射作为控制多孔介质堵塞,获得较宽的生物反应区并减少底物对CF代谢的抑制的工具; (b)建立多孔介质中CF代谢的可靠模型。丁烷的持续供应由于生物量的过度增长而迅速导致多孔介质的堵塞,而对六种类型的氧气/底物脉冲式进料的测试可以确定能够防止含水层堵塞并导致含水层堵塞的进料时间表。长的生物反应区的开发和令人满意的CF降解性能。只要CF降解与消耗的丁烷之比≤0.27mg_(CF)mg_(butane)〜(1),有氧新陈代谢的测试模型就可以对实验数据进行适当的解释。延长到30 m含水层长度的最佳脉冲氧气/基质供应时间表导致了20 m的生物反应区和96%的CF去除率。

著录项

  • 来源
    《Process Biochemistry》 |2012年第11期|1656-1664|共9页
  • 作者单位

    University of Bologna, Department of Chemical, Mining and Environmental Engineering, Via Terracini 28,40131 Bologna, Italy;

    University of Bologna, Department of Evolutionary and Experimental Biology, Via Irnerio 42, Bologna, Italy;

    University of Bologna, Department of Evolutionary and Experimental Biology, Via Irnerio 42, Bologna, Italy;

    University of Bologna, Department of Chemical, Mining and Environmental Engineering, Via Terracini 28,40131 Bologna, Italy;

    University of Bologna, Department of Chemical, Mining and Environmental Engineering, Via Terracini 28,40131 Bologna, Italy;

    University of Bologna, Department of Chemical, Mining and Environmental Engineering, Via Terracini 28,40131 Bologna, Italy;

    University of Bologna, Department of Chemical, Mining and Environmental Engineering, Via Terracini 28,40131 Bologna, Italy;

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

    biodegradation; chlorinated solvents; aerobic cometabolism; bioreactor; bioremediation;

    机译:生物降解氯化溶剂;有氧代谢生物反应器生物修复;

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