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Impact of Air Pollution Control Devices on Selenium in FGD and Wastewater Treatment Systems at Coal-Fired Boilers

机译:空气污染控制装置对燃煤锅炉烟气脱硫和废水处理系统中硒的影响

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Selenium can be toxic to aquatic life in high concentrations, even though it is an essential nutrient at lower concentrations. Processing fossil fuels (e.g., petroleum refining, coal combustion) can result in release of selenium to water bodies. Although there is currently no federal limit on selenium discharge from coal-fired wet FGD systems, some plants in the U.S. have limits on discharge of selenium from flue gas desulfurization (FGD) systems based on state water permits. Gaseous selenium post-combustion can be removed by wet FGDs as well as other air pollution control devices (APCDs). Removal of selenium before the FGD reduces the potential discharge of selenium in the wastewater. In this study, the behavior of selenium in limestone forced oxidation FGDs is modeled to determine how the concentration of selenium in FGD liquor depends on upstream APCDs such as ESP, fabric filter, and dry sorbent injection (DSI) as well as the operation of the FGD itself.
机译:硒即使在低浓度下也是必不可少的营养素,但在高浓度下仍可能对水生生物有毒。处理化石燃料(例如,炼油,燃煤)可能导致硒释放到水体中。尽管目前联邦对燃煤湿法烟气脱硫系统中的硒排放量没有任何限制,但美国的一些工厂根据州用水许可,对烟气脱硫(FGD)系统中硒的排放量有限制。燃烧后的气态硒可以通过湿法烟气脱硫装置以及其他空气污染控制装置(APCD)去除。在烟气脱硫之前去除硒可以减少废水中硒的潜在排放。在本研究中,对石灰石强迫氧化烟气脱硫中硒的行为进行了建模,以确定烟气脱硫液中硒的浓度如何取决于上游APCD(例如ESP,织物过滤器和干吸附剂注入(DSI))以及脱硫操作。 FGD本身。

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