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Biodegradation kinetics of gasoline under nitrate reducing conditions in a continuous-upflow biofilm reactor

机译:连续上流生物膜反应器中硝酸盐还原条件下汽油的生物降解动力学

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摘要

Gasoline is a complex mixture of more than 150 chemicals that does not occur naturally in the environment and is produced from petroleum in the refining process. To enhance cleaner fuels and reduce toxic air emissions, the United States 1990 Clean Air Act Amendments (CAA) established the Federal Reformulated Gasoline (RFG) program. Under this program, the oxygen content of RFG should not be less than 2% by weight (CAA, 1990). Oxygenates make gasoline burn cleaner and more efficiently while enhancing octane quality and reducing exhaust emissions. To achieve the required level of oxygen for gasoline sold in carbon monoxide (CO) nonattainment areas the addition of about 15% methyl tertiary-butyl ether (MTBE) or about 7.5% ethanol (by volume) was required (NSTC, 1997). As a result, MTBE was released into the environment and some groundwater sites became contaminated in the U.S. (Squillace et al., 1996), Germany (Kolb and Puttmann, 2006), and elsewhere (Hsieh et al., 2006). To protect human health effects from MTBE exposure, MTBE drinking water health advisory levels for odor and taste were set at 20 and 40 ug/L, respectively by the EPA (USEPA, 2004). Current trends show MTBE phasing out and eventual replacement by ethanol in unleaded gasoline, which in turn, might bring new challenges. Therefore, efforts to restore gasoline polluted drinking water sources require the development of new and more effective technologies to treat contaminated sites, including groundwater.
机译:汽油是由150多种化学物质组成的复杂混合物,在环境中不会自然产生,是在精炼过程中由石油生产的。为了增强清洁燃料并减少有毒气体的排放,美国1990年《清洁空气法修正案》(CAA)制定了联邦新配方汽油(RFG)计划。在该程序下,RFG的氧气含量不得少于2%(重量)(CAA,1990)。含氧化合物使汽油燃烧更清洁,更有效,同时提高了辛烷值并减少了废气排放。为了达到在未达到一氧化碳(CO)的地区销售的汽油所需的氧气水平,需要添加约15%的甲基叔丁基醚(MTBE)或约7.5%的乙醇(按体积计)(NSTC,1997)。结果,MTBE被释放到环境中,在美国(Squillace等,1996),德国(Kolb和Puttmann,2006)和其他地方(Hsieh等,2006),一些地下水位受到污染。为了保护人体免受MTBE的暴露,EPA将MTBE饮用水的气味和味觉健康建议水平分别定为20和40 ug / L(美国环保局,2004年)。当前的趋势表明,MTBE逐步淘汰,最终被无铅汽油中的乙醇替代,这反过来可能带来新的挑战。因此,恢复汽油污染的饮用水源的努力要求开发新的更有效的技术来处理包括地下水在内的受污染场所。

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  • 来源
  • 会议地点 Frankfurt(DE)
  • 作者单位

    Laboratorio de Biorremediacion Ambiental, Depto. de Microbiologia, Facultad de Medicina, UANL, Madero Pte. y Dr. Aguirre-Pequeno, 64460 Monterrey, N.L., Mexico;

    Laboratorio de Biorremediacion Ambiental, Depto. de Microbiologia, Facultad de Medicina, UANL, Madero Pte. y Dr. Aguirre-Pequeno, 64460 Monterrey, N.L., Mexico;

    Laboratorio de Biorremediacion Ambiental, Depto. de Microbiologia, Facultad de Medicina, UANL, Madero Pte. y Dr. Aguirre-Pequeno, 64460 Monterrey, N.L., Mexico;

    Laboratorio de Biorremediacion Ambiental, Depto. de Microbiologia, Facultad de Medicina, UANL, Madero Pte. y Dr. Aguirre-Pequeno, 64460 Monterrey, N.L., Mexico;

    Laboratorio de Biotecnotogia, Facultad de Ciencias Quimicas, UANL, Pedro de Alba s, Cd. Universitaria, 66400 San Nicolas de los Garza, N.L., Mexico;

    Instituto;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水资源调2查与水利规划;
  • 关键词

  • 入库时间 2022-08-26 14:08:25

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