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Production of activated carbons from waste tyres for low temperature NOx control

机译:从废轮胎生产活性炭用于低温NOx控制

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摘要

Waste tyres were pyrolysed in a bench scale reactor and the product chars were chemically activated with alkali chemical agents, KOH, K2CO3, NaOH and Na2CO3 to produce waste tyre derived activated carbons. The activated carbon products were then examined in terms of their ability to adsorb NOx (NO) at low temperature (25°C) from a simulated industrial process flue gas. This study investigates the influence of surface area and porosity of the carbons produced with the different alkali chemical activating agents on NO capture from the simulated flue gas. The influence of varying the chemical activation conditions on the porous texture and corresponding NO removal from the flue gas was studied. The activated carbon sorbents were characterized in relation to BET surface area, micropore and mesopore volumes and chemical composition. The highest NO removal efficiency for the waste tyre derived activated carbons was ∼75% which was obtained with the adsorbent treated with KOH which correlated with both the highest BET surface area and largest micropore volume. In contrast, the waste tyre derived activated carbons prepared using K2CO3, NaOH and Na2CO3 alkali activating agents appeared to have little influence on NO removal from the flue gases. The results suggest problematic waste tyres, have the potential to be converted to activated carbons with NOx removal efficiency comparable with conventionally produced carbons.
机译:废轮胎在台式反应器中热解,产物炭用碱性化学试剂KOH,K2CO3,NaOH和Na2CO3进行化学活化,以产生废轮胎衍生的活性炭。然后根据活性炭产品在低温(25°C)下从模拟工业过程烟气中吸附NOx(NO)的能力进行检查。这项研究调查了不同的碱化学活化剂产生的碳的表面积和孔隙率对模拟烟道气中NO捕集的影响。研究了化学活化条件的变化对多孔织构以及烟道气中相应NO去除的影响。相对于BET表面积,微孔和中孔体积以及化学组成来表征活性炭吸附剂。废轮胎衍生的活性炭的最高NO去除率约为75%,这是用KOH处理过的吸附剂获得的,这与最高BET表面积和最大的微孔体积有关。相反,使用K2CO3,NaOH和Na2CO3碱活化剂制备的废轮胎衍生的活性炭似乎对烟道气中NO的去除影响很小。结果表明,有问题的废轮胎具有被转化为活性炭的潜力,其脱氮效率与传统生产的碳相当。

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    Al-Rahbi AS; Williams PT;

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  • 年度 2016
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  • 正文语种 en
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