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首页> 外文期刊>Journal of Contaminant Hydrology >Comparing the effects of various fuel alcohols on the natural attenuation of Benzene Plumes using a general substrate interaction model
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Comparing the effects of various fuel alcohols on the natural attenuation of Benzene Plumes using a general substrate interaction model

机译:使用通用的底物相互作用模型比较各种燃料醇对苯羽自然衰减的影响

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摘要

The effects of five fuel alcohols (methanol, ethanol, 1 -propanol, iso-butanol and n-butanol) on the natural attenuation of benzene were compared using a previously developed numerical model (General Substrate Interaction Module - CSIM) and a probabilistic sensitivity analysis. Simulations with a 30 gal dissolving LNAPL (light non-aqueous phase liquid) source consisting of a range of gasoline blends (10% and 85% v: v alcohol content) suggest that all fuel alcohols can hinder the natural attenuation of benzene, due mainly to accelerated depletion of dissolved oxygen and a decrease in the specific degradation rate for benzene (due to catabolite repression and metabolic flux dilution). Simulations for blends with 10% alcohol, assuming a homogeneous sandy aquifer, inferred maximum benzene plume elongations (relative to a regular gasoline release) of 26% for ethanol, 47% for iso-butanol, 147% for methanol, 188% for 1 -propanol, and 265% for n-butanol. The corresponding elongation percentages for blends with 85% alcohol were generally smaller (i.e., 25%, 54%, 135%, 163%, and 181%, respectively), reflecting a lower content of benzene in the simulated release. Benzene plume elongation and longevity were more pronounced in the presence of alcohols that biodegrade slower (e.g., propanol and n-butanol), forming longer and more persistent alcohol plumes. Conversely, ethanol and iso-butanol exhibited the lowest potential to hinder the natural attenuation of benzene, illustrating the significant effect that a small difference in chemical structure (e.g., isomers) can have on biodegradation. Overall, simulations were highly sensitive to site-specific biokinetic coefficients for alcohol degradation, which forewarns against generalizations about the level of impact of specific fuel alcohols on benzene plume dynamics.
机译:使用先前开发的数值模型(通用基质相互作用模块-CSIM)和概率敏感性分析,比较了五种燃料醇(甲醇,乙醇,1-丙醇,异丁醇和正丁醇)对苯的自然衰减的影响。 。用30加仑的溶解LNAPL(轻质非水相液体)源(由一系列汽油混合物(10%和85%v:v的酒精含量)组成)进行的模拟表明,所有燃油醇均会阻碍苯的自然衰减,这主要是由于加速溶解氧的消耗并降低苯的特定降解率(由于分解代谢物抑制和代谢通量稀释)。假设均质砂质含水层与10%酒精混合,模拟得出的最大苯羽羽伸长率(相对于常规汽油释放)对于乙醇为26%,对于异丁醇为47%,对于甲醇为147%,对于1-为188%丙醇,正丁醇为265%。与85%醇的混合物的相应伸长百分比通常较小(即分别为25%,54%,135%,163%和181%),反映了模拟释放中苯的含量较低。在生物降解速度较慢的醇(例如丙醇和正丁醇)的存在下,苯羽流的伸长率和寿命更显着,从而形成更长且更持久的醇羽。相反,乙醇和异丁醇表现出最低的阻碍苯自然衰减的潜力,说明化学结构(例如异构体)的微小差异对生物降解具有显着影响。总体而言,模拟对酒精降解的特定位置生物动力学系数高度敏感,这预示着关于特定燃料醇对苯羽动力学影响水平的一般化警告。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2010年第4期|p.66-76|共11页
  • 作者单位

    Department of Civil and Environmental Engineering, Rice University, MS-317, 6100 Main St., Houston, TX 77005, USA;

    Department of Civil and Environmental Engineering, Rice University, MS-317, 6100 Main St., Houston, TX 77005, USA;

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

    benzene; biofuels; plumes; groundwater; modeling; substrate interactions; ethanol;

    机译:苯;生物燃料羽地下水;造型;底物相互作用;乙醇;

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