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Experimental Studies of Additives for Suppression of Ammonia Vaporization in the Ammonia Based CO2 Capture Process

机译:基于氨基二氧化碳捕获过程中氨蒸发的添加剂的实验研究

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Ammonia-based CO2 capture process is a one of the promising technologies for CO2 mitigation in the industrial and power sector. Even though the process has many advantages compared with amine based CO2 capture processes, such as low reaction heat, low corrosiveness, and low chemical cost, it has received lesser attention than the amine processes. One of the important reasons is ammonia slip caused by the intrinsic nature of its high volatility. Many studies have been conducted to reduce ammonia slip, but few studies have been considered property changes such as heat of reaction, overall mass transfer coefficient and transfer capacity, comprehensively. To reduce ammonia slip, in this study, three additives have been tested. The property changes with additives were examined regarding ammonia vaporization, heat of reaction, overall mass transfer coefficient, and transfer capacity. According to the results, additives were effect in reducing the ammonia vaporization without any significant change on CO2 adsorption properties. Under laboratory conditions the most effective additive was additive A based on higher CO2 loading capacity, and less influence on reaction heat and mass transfer coefficient. For more practical evaluation, comprehensive studies including physic-chemical property changes in field conditions should be regarded.
机译:基于氨的二氧化碳捕获过程是工业和电力领域二氧化碳减灾的有希望的技术之一。尽管该过程与基于胺的二氧化碳捕获工艺相比具有许多优点,例如低反应热,低腐蚀性和低化学成本,但它受到比胺过程的较小的关注。其中一种重要原因是由其高挥发性的内在性质引起的氨滑。已经进行了许多研究以减少氨滑,但很少有研究被认为是综合的反应热量,整体传质系数和转移能力的性能变化。为了减少氨湿,在这项研究中,已经测试了三种添加剂。研究了对添加剂的性能变化,关于氨蒸发,反应热,总传质系数和转移能力。根据结果​​,添加剂对降低氨蒸发而没有任何显着变化的CO 2吸附性能。在实验室条件下,最有效的添加剂是基于更高的CO 2负载容量的添加剂A,并且对反应热量和传质系数的影响较小。对于更实际的评估,应考虑在现场条件下包括物理化学物质的综合研究。

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