Energy Engineering Research Laboratory, Central Research Institute of Electric Power Industry, 2-6-1, Nagasaka, Yokosuka, 240-0196, Japan.
Energy Engineering Research Laboratory, Central Research Institute of Electric Power Industry, 2-6-1, Nagasaka, Yokosuka, 240-0196, Japan.
J Environ Manage. 2017 Dec 1;203(Pt 3):925-936. doi: 10.1016/j.jenvman.2017.05.067. Epub 2017 Jun 7.
Electricity production from coal fuel with minimizing efficiency penalty for the carbon dioxide abatement will bring us sustainable and compatible energy utilization. One of the promising options is oxy-fuel type Integrated Gasification Combined Cycle (oxy-fuel IGCC) power generation that is estimated to achieve thermal efficiency of 44% at lower heating value (LHV) base and provide compressed carbon dioxide (CO) with concentration of 93 vol%. The proper operation of the plant is established by introducing dry syngas cleaning processes to control halide and sulfur compounds satisfying tolerate contaminants level of gas turbine. To realize the dry process, the bench scale test facility was planned to demonstrate the first-ever halide and sulfur removal with fixed bed reactor using actual syngas from O-CO blown gasifier for the oxy-fuel IGCC power generation. Design parameter for the test facility was required for the candidate sorbents for halide removal and sulfur removal. Breakthrough test was performed on two kinds of halide sorbents at accelerated condition and on honeycomb desulfurization sorbent at varied space velocity condition. The results for the both sorbents for halide and sulfur exhibited sufficient removal within the satisfactory short depth of sorbent bed, as well as superior bed conversion of the impurity removal reaction. These performance evaluation of the candidate sorbents of halide and sulfur removal provided rational and affordable design parameters for the bench scale test facility to demonstrate the dry syngas cleaning process for oxy-fuel IGCC system as the scaled up step of process development.
通过最小化二氧化碳减排的效率损失来从煤炭燃料中发电,将为我们带来可持续和兼容的能源利用。一种有前途的选择是富氧燃料型整体煤气化联合循环(oxy-fuel IGCC)发电,据估计,该技术在低热值(LHV)基础上可实现 44%的热效率,并提供浓度为 93%的压缩二氧化碳(CO)。通过引入干合成气清洁工艺来控制卤化物和硫化合物,满足燃气轮机可容忍污染物水平,从而建立工厂的正常运行。为了实现干法工艺,计划建立中试规模测试设施,使用富氧 IGCC 发电用 O-CO 吹风气化炉的实际合成气,首次在固定床反应器中进行卤化物和硫的去除。需要为候选的卤化物去除和硫去除吸附剂设计测试设施的设计参数。在加速条件下对两种卤化物吸附剂进行了穿透测试,并在不同空速条件下对蜂窝状脱硫吸附剂进行了测试。两种卤化物和硫吸附剂的结果均表明,在令人满意的短吸附床深度内,去除效果令人满意,并且杂质去除反应的床转化率较高。这些候选的卤化物和硫去除吸附剂的性能评估为中试规模测试设施提供了合理且可承受的设计参数,以展示用于富氧 IGCC 系统的干合成气清洁工艺,作为工艺开发的扩展步骤。