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强化结晶氨法脱碳实验研究 被引量:3

Carbon capture by ammonia with reinforced crystallization
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摘要 针对目前氨法二氧化碳捕集技术中存在的氨逃逸、再生能耗高、反应后期吸收率低等问题提出了强化结晶氨法捕碳工艺,采用氨水乙醇组成的混合吸收液,利用半连续鼓泡反应系统研究了实验过程中吸收液组成、吸收温度、烟气流量及烟气中CO_2体积分数对吸收及结晶规律的影响。实验结果表明,混合吸收液中选用高比例乙醇、较低的吸收温度、较高的烟气流量以及较大的CO_2体积分数有利于吸收液中晶体出现时间提前,有利于强化结晶过程,晶体含氨量占初始氨总量的分数可达38.75%,并且混合吸收液的CO_2吸收能力较纯氨水工况明显提高。创新之处在于:提出了一种强化结晶氨法捕碳工艺,对氨水乙醇混合吸收液的吸收及结晶规律进行研究,给出了能够改善吸收效果并利于结晶过程的有利工况。为接下来新工艺的进一步研究提供基础数据和参考。 In response of problems such as ammonia escape, high regenerated energy and low absorbed rate in the late stage, which exist in the research of carbon capture by ammonia now, this paper presents a novel process of carbon capture by ammonia with reinforced crystallization, using a new type of aqueous ammonia-ethanol mixing absorbent. The effect of absorption and crystalline regularity under different absorbent ingredients, different absorption temperatures, different flue gas flow, and different CO_2 volume fraction is studied using a semi-continuous bubbling reaction system. The experimental results show that mixing absorbent with relatively high ratio of ethanol, relatively low absorption temperature, and higher gas flow and larger volume fraction of CO_2 will be favorable for strengthening of process, including that the appearing time of crystals in the absorbent could bring forward and the ratio of ammonia account in the crystals to the initial total ammonia could be up to 38.75% as well as the CO_2 absorption capacity was improved significantly compared to pure aqueous ammonia. Novel ideas presented in this paper could be that a carbon capture process by ammonia with reinforced crystallization is suggested, and better conditions were given for improving absorption and reducing consumption of desorption energy. All basic data and results provided by this paper could be useful for further study of this new process.
出处 《化工学报》 EI CAS CSCD 北大核心 2016年第6期2440-2448,共9页 CIESC Journal
基金 面向中美先进煤炭技术合作的新一代煤转化与发电技术(国际科技合作项目)(2010DFA24580-502)~~
关键词 混合吸收液 吸收能力 再生 结晶 鼓泡反应器 mixing absorbent absorption capacity regeneration crystallization bubbling reactor
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  • 1GEORGIOS A, PAUL C. Global warming and carbon dioxide through sciences [J]. Environ. Int., 2009, 35: 390-401.
  • 2ZHAO B T, SU Y X, TAO W W, et al. Post-combustion CO2 capture by aqueous ammonia: a state-of-the-art review [J]. International Journal of Greenhouse Gas Control, 2012, 9: 355-371.
  • 3OLAJIRE A A.CO2 capture and separation technologies for end-of-pipe applications-a review [J]. Energy, 2010, 35(6): 2610-2628.
  • 4黄斌,许世森,郜时旺,刘练波,陶继业,牛红伟,蔡铭,程健.华能北京热电厂CO_2捕集工业试验研究[J].中国电机工程学报,2009,29(17):14-20. 被引量:90
  • 5IEA. World Energy Outlook 2007 China and India Insight[M]. Pairs: IEA Publications, 2008: 13.
  • 6TOBIESEN F A, JULIUSSEN O, SVENDSEN H F. Experimental validation of a rigorous desorber model for CO2 post-combustion capture [J]. Chemical Engineering Science, 2008, 63(10): 2641-2656.
  • 7CHEN E. Carbon dioxide absorption into piperazine promoted potassium carbonate using structures packing[D]. Austin: University of Texas, 2007.
  • 8晏水平,方梦祥,张卫风,骆仲泱,岑可法.烟气中CO_2化学吸收法脱除技术分析与进展[J].化工进展,2006,25(9):1018-1024. 被引量:111
  • 9CIFERNO J P, DI P P, TARKA T. An economic scoping study for CO2 capture using aqueous ammonia[R]. Washington D C: US Department of Energy (DOE), 2005.
  • 10KIM Y J, YOU J K, HONG W H, et al. Characteristics of CO2 absorption into aqueous ammonia [J]. Separation Science Technology, 2008, 43(4): 766-777.

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