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Powder Resistivity Inferred Differential Collection of Heterogeneous Coal Fly Ash and Powered Activated Carbon Admixtures Within a Cylindrical Electrostatic Precipitator

机译:粉末电阻率推断圆柱形静电除尘器中非均质粉煤灰和动力活性炭混合物的差分收集

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One of the primary goals of U.S. EPA's Mercury Air Toxics Standards (MATS) is to remove approximately 90 % of mercury emissions from coal-fired power plants (CFPPs). Sorbent injection upstream of electrostatic precipitators (ESPs) has been the leading method for capturing mercury at CFPPs. However, electrostatic precipitators (ESPs) that are marginally sized and/or operated may face new performance challenges due to sorbent injection. Injected mercury sorbent particles having different properties (i.e., particle size, surface chemistry, or electrical properties), mixing with native fly ash, can potentially affect the collection behaviors of ESPs. The present study uses powder resistivity to study the differential collection behaviors within a cylindrical ESP by manually feeding admixtures containing Norit Darco~® FGD powdered activated carbon (PAC) and fly ash samples from either Powder River Basin (PRB) or Illinois bituminous coals. Powder resistivity measurements, performed on fly ash admixtures at various PAC ratios (i.e. 0-10 wt. %) prior to ESP processing, serve as the initial resistivity data to infer the impact of PAC injection on ESP collection by comparing to powder resistivity of samples collected from the collection electrode. This study presents not only the evidence of differential collection behaviors within an ESP but also the implications for mercury emissions and the particulate matter (PM) control through ESPs.
机译:美国EPA的《汞空气毒物标准》(MATS)的主要目标之一是消除燃煤电厂(CFPP)约90%的汞排放。静电除尘器(ESPs)上游的吸附剂注入是在CFPPs处捕集汞的主要方法。但是,由于吸附剂的注入,尺寸和/或运行空间很小的静电除尘器(ESP)可能会面临新的性能挑战。与天然粉煤灰混合的具有不同特性(即粒度,表面化学或电特性)的注入的汞吸附剂颗粒可能会影响ESP的收集行为。本研究使用粉末电阻率,通过人工添加含有NoritDarco®FGD粉末状活性炭(PAC)和粉河盆地(PRB)或伊利诺伊州烟煤样品的粉煤灰的混合物,研究圆柱形ESP内的差异收集行为。在进行ESP处理之前,对粉煤灰掺合物以各种PAC比率(即0-10 wt。%)进行粉末电阻率测量,作为初始电阻率数据,通过与样品的粉末电阻率进行比较,推断PAC注入对ESP收集的影响。从收集电极收集。这项研究不仅提供了ESP中不同收集行为的证据,而且还显示了通过ESP对汞排放和颗粒物(PM)控制的影响。

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