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Increasing oxygen functional groups of activated carbon with non-thermal plasma to enhance mercury removal efficiency for flue gases

机译:通过非热等离子体增加活性炭的氧官能团,以提高烟道气的除汞效率

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To improve mercury removal efficiency of activated carbon (AC), a simple and efficient non-chemical treatment method was proposed: AC was treated by non-thermal plasma in air environment and characterized with ultimate analysis, Brunauer-Emmett-Teller (BET) surface area and X-ray photoelectron spectroscopy (XPS) technique. Mercury removal performance of AC was tested in a bench-scale quartz tube reactor. AC samples with different treatments were used as contrast sorbents for adsorption and desorption experiments. The results showed that AC treated with non-thermal plasma had higher mercury removal efficiency than others, and longer treatment time resulted in higher efficiency, the main reason was that non-thermal plasma treatment increased active sites, carbonyl groups (C=O) and ester groups (C(O)-O-C) of AC, which played an important role in mercury absorption. By further analysis, it was found that increasing the active sites of AC was more effective than increasing the surface area for improving the mercury removal efficiency. And ester groups dominated mercury removal efficiency at higher temperature. Moreover, the results of the temperature programmed desorption (TPD) experiments indicated that the mercury desorption peak of carbonyl groups and ester groups should occur at 230 degrees C and 320 degrees C, respectively. By removing the functional groups of AC, mercury desorption peak desorbed by sorbent's pore at 130 degrees C was found. The non-thermal plasma treatment is a potential method for improving the mercury adsorption performance of sorbents. (C) 2014 Elsevier B.V. All rights reserved.
机译:为了提高活性炭(AC)的除汞效率,提出了一种简单有效的非化学处理方法:在空气环境中用非热等离子体处理AC,并进行最终分析,Brunauer-Emmett-Teller(BET)表面进行表征。区域和X射线光电子能谱(XPS)技术。在台式石英管反应器中测试了AC的除汞性能。经过不同处理的AC样品用作对比吸附剂,用于吸附和解吸实验。结果表明,用非热等离子体处理的交流电除汞效率更高,且处理时间越长效率越高,主要原因是非热等离子体处理增加了活性位,羰基(C = O)和AC的酯基(C(O)-OC),在吸收汞中起重要作用。通过进一步分析,发现增加AC的活性位点比增加表面积来提高除汞效率更有效。较高温度下,酯基控制着除汞效率。此外,程序升温脱附(TPD)实验的结果表明,羰基和酯基的汞脱附峰分别出现在230摄氏度和320摄氏度。通过除去AC的官能团,发现在130摄氏度时吸附剂的孔解吸了汞的解吸峰。非热等离子体处理是改善吸附剂的汞吸附性能的潜在方法。 (C)2014 Elsevier B.V.保留所有权利。

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