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中文摘要
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描述(由申请人提供):在美国各地,供水商和管理人员发现水中1,4-二氧六环的危险水平。该化合物已被广泛应用数十年,包括(1)油漆、清漆和印刷品中的溶剂;(2)人造皮革中的处理剂;(3)杀虫剂和熏蒸剂中的成分;(4)药物中的净化剂;以及(5)树脂、油、塑料、粘合剂、蜡和水泥中的溶剂。1,4-二氧六环在水中的含量极低(十亿分之一),可能是一种人类致癌物。它是高度可溶的,因此在水中广泛传播。最重要的是,新的传统水处理技术可以去除水中的1,4-二氧六环。目前消除水中1,4-二氧六环的途径只有两种:紫外线或过氧化氢结合臭氧氧化(即高级氧化)和生物降解。紫外线和化学氧化工艺的能源和化学品成本往往高得令人望而却步。此外,还存在产生有害副产品(如致癌的溴酸盐)的重大风险,这些技术在某些情况下(如高含量的无机盐)的适用性有限。生物降解可替代地具有许多缺点,包括过程稳定性、需要诱导降解、有限的性能、堵塞、性能敏感性和污泥或二次废物流的产生。然而,如果这些问题可以克服,生物处理提供了一个有前途的方法,完全降解1,4-二氧六环为无害的产品,保护公众健康。该第二阶段示范提案基于成功的第一阶段结果,显示了新生物方法的可行性。在第一阶段,设计并测试了一种用于1,4-二氧六环降解的技术,该技术不需要预诱导,并且可以使用新的高性能生物工艺来应用。在第一阶段工作中开发的原型将在实际污染场地进行规模化和试点。试点项目将寻求确定新技术的性能和操作参数,评估长期和可持续的操作,并解决技术经济分析的参数。第二阶段工作的主要成果将是展示和全面表征消除水资源中1,4-二氧六环的首个高性能生物工艺。该技术的预期价值主张包括操作简单,快速有效的降解,广泛适用于各种水源,可靠的性能,以及与现有方法相比更低的总成本,特别是化学氧化。最重要的是,第二阶段的资金将为保护和修复饮用水供应提供一个宝贵的工具,从而为子孙后代保障公共安全和环境可持续性。
英文摘要
DESCRIPTION (provided by applicant): Across the United States, water suppliers and managers are finding dangerous levels of 1,4-dioxane in water. This compound has been used for decades in a wide range of applications including as (1) a solvent in paints, varnishes, and prints; (2) treatment agent in artificial leather; (3) ingredient in pesticides and fumigants; (4) purifying agent in pharmaceuticals; and (5) solvent in resins, oils, plastics, adhesives, waxes, and cement. 1,4-dioxane is a probable human carcinogen at extremely low levels in water (parts-per-billion). It is highly soluble and thus travels extensively in water. Most importantly, ew conventional water treatment technologies can remove 1,4-dioxane from water. There are only two current routes of eliminating 1,4-dioxane in water: UV or hydrogen peroxide coupled with ozone oxidation (i.e. advanced oxidation), and biological degradation. The energy and chemical costs of UV and chemical oxidation processes are often prohibitively high. There is also a significant risk of producing harmful by-products (such as carcinogenic bromate) and these technologies have limited applicability in certain circumstances such as high levels of inorganic salts. Biological degradation alternatively suffers from a number of drawbacks, including process stability, the need to induce degradation, limited performance, clogging, performance sensitivity, and the production of sludge or secondary waste streams. If these problems can be overcome, however, biological treatment offers a promising method of completely degrading 1,4-dioxane into harmless products and protecting public health. This Phase II demonstration proposal is based on successful Phase I results showing the feasibility of a new biological approach. In Phase I, a technology was designed and tested for 1,4-dioxane degradation that does not require pre-induction and can be applied using a new high performance bioprocess. The prototype developed in the Phase I work will be scaled and piloted at an actual contaminated site. The pilot will seek to establish performance and operational parameters of the new technology, evaluate long-term and sustainable operation, and address parameters informing a technoeconomic analysis. The major outcome of this Phase II effort will be the demonstration and full characterization of a first-of-its-kind high performance bioprocess for eliminating 1,4-dioxane in water resources. The technology's intended value proposition includes simple operation, rapid and effective degradation, wide applicability to a range of water sources, reliable performance, and lower overall costs compared to existing methods, especially chemical oxidation. Most importantly, the Phase II funding will provide a valuable tool for protecting and remediating drinking water supplies, thus safeguarding public and safety, and environmental sustainability for generations to come.
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Development of a High Performance Bioprocess for Eliminating 1,4-Dioxane in Water
  • 批准号:
    8393555
  • 项目类别:
  • 资助金额:
    $13.1万
  • 财政年份:
    2012
  • 负责人:
    Joseph Salanitro
  • 依托单位:
Development of a High Performance Bioprocess for Eliminating 1,4-Dioxane in Water
  • 批准号:
    8648317
  • 项目类别:
  • 资助金额:
    $106.85万
  • 财政年份:
    2012
  • 负责人:
    Joseph Salanitro
  • 依托单位:
海外基金