醇胺溶液在烟气CO2捕集过程中氧化降解的研究进展
Research progress on oxidative degradation of alcoholamine solution in flue gas CO2 capture processes
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- 引用格式:
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陈祖翰,吴爱琴,罗斌,汤国军,周明宇,赵启龙.醇胺溶液在烟气CO2捕集过程中氧化降解的研究进展[J].天然气与石油,2025,43(2):43-48.doi:10.3969/j.issn.1006-5539.2025.02.006
CHEN Zuhan, WU Aiqin, LUO Bin, TANG Guojun, ZHOU Mingyu, ZHAO Qilong.Research progress on oxidative degradation of alcoholamine solution in flue gas CO2 capture processes[J].Natural Gas and Oil,2025,43(2):43-48.doi:10.3969/j.issn.1006-5539.2025.02.006
- DOI:
- 10.3969/j.issn.1006-5539.2025.02.006
- 作者:
- 陈祖翰1 吴爱琴1 罗斌2 汤国军1 周明宇1 赵启龙3
CHEN Zuhan1, WU Aiqin1, LUO Bin2, TANG Guojun1, ZHOU Mingyu1, ZHAO Qilong3
- 作者单位:
- 1. 中国石油工程建设有限公司西南分公司, 四川 成都 610041; 2. 中石油安岳天然气净化有限公司, 四川 资阳 642300; 3. 四川省精细化工研究设计院有限公司, 四川 自贡 643000
1. CPECC Southwest Company, Chengdu, Sichuan, 610041, China; 2. PetroChina Anyue Natural Gas Purification Co., Ltd., Ziyang, Sichuan, 642300, China 3. Sichuan Institute of Fine Chemical Industry Research and Design Co., Ltd., Zigong, Sichuan, 643000, China
- 关键词:
- 碳捕集;醇胺法;氧化降解;抑制氧化降解
Carbon capture; Alcoholamine method; Oxidative degradation; Inhibition of oxidative degradation
- 摘要:
- 醇胺溶剂凭借优良的吸收能力和显著的经济优势被广泛应用于烟气二氧化碳(CO2)捕集技术中。然而,通常烟气组分复杂,存在多种其他活性组分,氧气(O2)会对醇胺溶剂产生较大影响。O2与醇胺溶液反应,发生氧化降解,导致捕集效率降低,降解产物可能对捕集设备产生负面影响。为解决这一问题,探讨了醇胺溶液的氧化降解原理,分析了影响氧化降解的多种因素,总结了氧化降解过程中产生的物质,并研究了抗氧化剂的作用。在此基础上,展望了抗降解剂在醇胺溶液中的应用前景,指出开发适用于烟气CO2捕集技术的抗降解剂是提高醇胺溶液抗降解性能的重要研究方向。
In carbon dioxide(CO2) capture technology for flue gas, alcoholamine solutions are widely utilized owing to their exceptional absorption capacity and notable economic advantages. However, the composition of flue gas is typically complex, often containing numerous other reactive components, among which oxygen(O2) has a particularly significant impact on alcoholamine solvents. When oxygen(O2) reacts with alcoholamine solutions, oxidative decomposition occurs, resulting in reduced capture efficiency and potentially adverse effects on capture equipment due to degradation products. To address this issue, this paper explores the principle of oxidative decomposition of alcoholamine solutions, analyzes various factors influencing this process, summarizes the substances produced during oxidative decomposition, and investigates the role of antioxidants. Furthermore, this paper also examines the potential applications of antidegradants in alcoholamine solutions and highlights that the development of antidegradants tailored for carbon dioxide(CO2) capture processes represents an important research direction for enhancing the antidegradation performance of alcoholamine solutions.