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Removal of Carbonyl Sulfide Using Activated Carbon Adsorption

机译:活性炭吸附脱除羰基硫

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Wastewater treatment plant odors are caused by compounds such as hydrogen sulfide (H_2S), methyl mercap-tans, and carbonyl sulfide (COS). One of the most efficient odor control processes is activated carbon adsorption; however, very few studies have been conducted on COS adsorption. COS is not only an odor causing compound but is also listed in the Clean Air Act as a hazardous air pollutant. Objectives of this study were to determine the following: (1) the adsorption capacity of 3 different carbons for COS removal; (2) the impact of relative humidity (RH) on COS adsorption; (3) the extent of competitive adsorption of COS in the presence of H_2S; and (4) whether ammonia injection would increase COS adsorption capacity. Vapor phase react (VPR; reactivated), BPL (bituminous coal-based), and Centaur (physically modified to enhance H_2S adsorption) carbons manufactured by Calgon Carbon Corp. were tested in three laboratory-scale columns, 6 in. in depth and 1 in. in diameter. Inlet COS concentrations varied from 35 to 49 ppm_v (86-120 mg/m~3). RHs of 17%, 30%, 50%, and 90% were tested. For competitive adsorption studies, H_2S was tested at 60 ppm_v, with COS at 30 ppm_v. COS, RH, H_2S, and ammonia concentrations were measured using an International Sensor Technology Model IQ-350 solid state sensor, Cole-Parmer humidity stick, InterScan Corp. 1000 series portable analyzer, and Drager Accuro ammonia sensor, respectively. It was found that the adsorption capacity of Centaur carbon for COS was higher than the other two carbons, regardless of RH. As humidity increased, the percentage of decrease in adsorption capacity of Centaur carbon, however, was greater than the other two carbons. The carbon adsorption capacity for COS decreased in proportion to the percentage of H_2S in the gas stream. More adsorption sites appear to be available to H_2S, a smaller molecule. Ammonia, which has been found to increase H_2S adsorption capacity, did not increase the capacity for COS.
机译:废水处理厂的气味是由诸如硫化氢(H_2S),甲基硫醇和羰基硫(COS)之类的化合物引起的。活性炭吸附是最有效的气味控制方法之一。但是,关于COS吸附的研究很少。 COS不仅是造成气味的化合物,而且在《清洁空气法》中也被列为有害空气污染物。本研究的目的是确定以下内容:(1)三种不同碳的COS去除能力; (2)相对湿度(RH)对COS吸附的影响; (3)H_2S存在下COS竞争吸附的程度; (4)注氨是否会增加COS的吸附能力。由Calgon Carbon Corp.生产的汽相反应(VPR;重新活化),BPL(烟煤基)和Centaur(经物理改性以增强H_2S吸附)碳在3个实验室规模的色谱柱中进行了测试,深度为6英寸,色谱柱为1英寸。入口COS浓度从35到49 ppm_v(86-120 mg / m〜3)不等。测试了RH分别为17%,30%,50%和90%。为了进行竞争性吸附研究,以60 ppm_v测试H_2S,以30 ppm_v测试COS。分别使用国际传感器技术型号IQ-350固态传感器,Cole-Parmer湿度棒,InterScan Corp. 1000系列便携式分析仪和Drager Accuro氨传感器测量COS,RH,H_2S和氨浓度。结果发现,与RH无关,半人马碳对COS的吸附能力高于其他两个碳。随着湿度的增加,人马碳的吸附能力下降的百分比大于其他两个碳。 COS的碳吸附能力与气流中H_2S的百分比成比例下降。较小的分子H_2S似乎有更多的吸附位点。已发现增加H_2S吸附能力的氨并未增加COS的能力。

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