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钯基催化剂在水中优先污染物处理的关键评价。

Critical review of Pd-based catalytic treatment of priority contaminants in water.

机构信息

Department of Civil and Environmental Engineering, Villanova University, Villanova, Pennsylvania 19085, United States.

出版信息

Environ Sci Technol. 2012 Apr 3;46(7):3655-70. doi: 10.1021/es204087q. Epub 2012 Mar 20.

Abstract

Catalytic reduction of water contaminants using palladium (Pd)-based catalysts and hydrogen gas as a reductant has been extensively studied at the bench-scale, but due to technical challenges it has only been limitedly applied at the field-scale. To motivate research that can overcome these technical challenges, this review critically analyzes the published research in the area of Pd-based catalytic reduction of priority drinking water contaminants (i.e., halogenated organics, oxyanions, and nitrosamines), and identifies key research areas that should be addressed. Specifically, the review summarizes the state of knowledge related to (1) proposed reaction pathways for important classes of contaminants, (2) rates of contaminant reduction with different catalyst formulations, (3) long-term sustainability of catalyst activity with respect to natural water foulants and regeneration strategies, and (4) technology applications. Critical barriers hindering implementation of the technology are related to catalyst activity (for some contaminants), stability, fouling, and regeneration. New developments overcoming these limitations will be needed for more extensive field-scale application of this technology.

摘要

使用钯 (Pd) 基催化剂和氢气作为还原剂催化还原水中污染物已在实验室规模上进行了广泛研究,但由于技术挑战,该技术仅在现场规模上得到了有限的应用。为了推动克服这些技术挑战的研究,本综述批判性地分析了 Pd 基催化还原优先饮用水污染物(即卤代有机物、含氧阴离子和亚硝胺)领域的已发表研究,并确定了应解决的关键研究领域。具体来说,该综述总结了与以下方面相关的知识现状:(1) 重要污染物类别的拟议反应途径;(2) 不同催化剂配方对污染物还原的速率;(3) 催化剂活性在天然水污染物和再生策略方面的长期可持续性;(4) 技术应用。阻碍该技术实施的关键障碍与催化剂活性(对于某些污染物)、稳定性、结垢和再生有关。需要克服这些限制的新发展,才能更广泛地将该技术应用于现场规模。

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