首页> 外文期刊>Fuel >Kinetic mechanism studies on reactions of mercury and oxidizing species in coal combustion
【24h】

Kinetic mechanism studies on reactions of mercury and oxidizing species in coal combustion

机译:煤燃烧中汞与氧化性物质反应的动力学机理研究

获取原文
获取原文并翻译 | 示例
           

摘要

The emission of mercury by coal-fired power plants has become a recent concern on the part of the electric utility industry. Knowledge of mercury kinetic mechanisms is imperative for the research of predicting mercury transformation and finding its effective control methods in coal combustion flue gas. Near the end of the flue gas path, mercury exists as a combination of elemental vapor and HgCl_2 vapor. HgCl_2 is more likely to be removed from the flue gas. Thus, the degree of oxidation is considered to be a critical factor that tends to reduce emission. In the present work, the microcosmic kinetic mechanisms of reactions between mercury and oxidizing species were investigated by ab initio calculations of quantum chemistry, The geometry optimizations of reactants, transition states, intermediates and products were made by the quantum chemistry MP2 method at SDD basis function level. All molecule energies were calculated at QCISD(T)/SDD level and corrected with zero point energy. The activation energies and heat of reactions were calculated. The reaction rate constants were calculated from transition state theory (TST). The performance of the ab initio calculations of quantum chemistry was assessed through comparisons with the literature data. The comparisons showed that the ab initio calculations of quantum chemistry were in agreement with the literature data. The results showed that quantum chemistry was an effective means for investigating kinetic mechanism of mercury interaction with combustion-generated flue gas.
机译:燃煤电厂的汞排放已成为电力行业的近期关注点。对汞动力学机理的了解对于预测汞转化以及在燃煤烟气中寻找有效的控制方法至关重要。在烟气路径的末端附近,汞以元素蒸气和HgCl_2蒸气的组合形式存在。 HgCl_2更有可能从烟道气中去除。因此,氧化程度被认为是趋于减少排放的关键因素。本文通过量子化学的从头算研究了汞与氧化性物种之间反应的微观动力学机理,并通过SDD基函数的量子化学MP2方法对反应物,过渡态,中间体和产物进行了几何优化。水平。所有分子能量均在QCISD(T)/ SDD水平下计算,并用零点能量校正。计算了活化能和反应热。根据过渡态理论(TST)计算反应速率常数。通过与文献数据进行比较,评估了量子化学从头算计算的性能。比较表明,量子化学的从头算与文献数据相符。结果表明,量子化学是研究汞与燃烧烟气相互作用的动力学机理的有效手段。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号