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VOCs排放控制与综合利用的战略探索助力碳中和的新未来
Strategic Exploration of VOCs Emission Control and Comprehensive Utilisation Fuels a New Carbon Neutral Future

DOI: 10.12677/aep.2025.151015, PP. 113-123

Keywords: VOCs,碳中和,排放控制,综合利用,战略探索
VOCs
, Carbon Neutrality, Emission Control, Comprehensive Utilization, Strategy Exploration

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Abstract:

随着全球气候变化的日益严峻,碳中和已成为各国可持续发展的重要目标。挥发性有机化合物(VOCs)作为主要的污染物之一,不仅对空气质量造成严重污染,还对人类健康构成威胁,同时也是温室气体排放的重要来源。VOCs排放控制与综合利用不仅是应对环境挑战的必然选择,更是企业实现碳中和的重要路径,其在实现碳中和的过程中扮演着关键角色也已然成为实现碳中和目标的重要战略。本文旨在探讨在碳中和的背景下,控制VOCs排放及其综合利用的意义与实践作用。通过系统性探索与创新实践,未来可望构建起低碳、环保的新型社会,为可持续发展奠定基础。
With the increasing severity of global climate change, carbon neutrality has become an important goal for sustainable development in various countries. Volatile organic compounds (VOCs), as one of the major pollutants, not only cause serious pollution to air quality, but also pose a threat to human health, and are an important source of greenhouse gas emissions. VOCs emission control and comprehensive utilisation is not only an inevitable choice to meet the environmental challenges, but also an important path for enterprises to achieve carbon neutrality, and the key role it plays in achieving carbon neutrality has also become an important strategy to achieve the goal of carbon neutrality, become an important strategy to achieve carbon neutrality. This paper aims to explore the significance and practical role of controlling VOCs emissions and their comprehensive utilisation in the context of carbon neutrality. Through systematic exploration and innovative practice, it is expected that a new low-carbon and environmentally friendly society will be built in the future, laying the foundation for sustainable development.

References

[1]  杜建锋, 张金兰, 韩叠. 污水处理碳中和运行技术研究进展[J]. 清洗世界, 2023, 39(8): 88-90.
[2]  徐涛. 挥发性有机物污染综合控制与治理概述[J]. 清洗世界, 2023, 39(9): 153-156.
[3]  黄成浩. 污染源废气挥发性有机物在线监测技术探讨[J]. 计量与测试技术, 2020, 47(11): 64-65+68.
[4]  Han, D., Gao, S., Fu, Q., Cheng, J., Chen, X., Xu, H., et al. (2018) Do Volatile Organic Compounds (VOCs) Emitted from Petrochemical Industries Affect Regional PM2.5? Atmospheric Research, 209, 123-130.
https://doi.org/10.1016/j.atmosres.2018.04.002
[5]  Wang, H., Nie, L., Li, J., Wang, Y., Wang, G., Wang, J., et al. (2013) Characterization and Assessment of Volatile Organic Compounds (VOCs) Emissions from Typical Industries. Chinese Science Bulletin, 58, 724-730.
https://doi.org/10.1007/s11434-012-5345-2
[6]  Bhaskaran, A., Sharma, D., Roy, S. and Singh, S.A. (2023) Technological Solutions for Nox, Sox, and VOC Abatement: Recent Breakthroughs and Future Directions. Environmental Science and Pollution Research, 30, 91501-91533.
https://doi.org/10.1007/s11356-023-28840-y
[7]  Miah, M.R., Yang, M., Khandaker, S., Bashar, M.M., Alsukaibi, A.K.D., Hassan, H.M.A., et al. (2022) Polypyrrole-based Sensors for Volatile Organic Compounds (VOCs) Sensing and Capturing: A Comprehensive Review. Sensors and Actuators A: Physical, 347, Article 113933.
https://doi.org/10.1016/j.sna.2022.113933
[8]  Ravi Kumar, Y., Deshmukh, K., Kovářík, T. and Khadheer Pasha, S.K. (2022) A Systematic Review on 2D Materials for Volatile Organic Compound Sensing. Coordination Chemistry Reviews, 461, Article 214502.
https://doi.org/10.1016/j.ccr.2022.214502
[9]  Pathak, A.K. and Viphavakit, C. (2022) A Review on All-Optical Fiber-Based VOC Sensors: Heading Towards the Development of Promising Technology. Sensors and Actuators A: Physical, 338, Article 113455.
https://doi.org/10.1016/j.sna.2022.113455
[10]  Shen, Y., Tissot, A. and Serre, C. (2022) Recent Progress on MOF-Based Optical Sensors for VOC Sensing. Chemical Science, 13, 13978-14007.
https://doi.org/10.1039/d2sc04314a
[11]  Khatib, M. and Haick, H. (2022) Sensors for Volatile Organic Compounds. ACS Nano, 16, 7080-7115.
https://doi.org/10.1021/acsnano.1c10827
[12]  陈建华, 魏登科. 工业源VOCs治理现状、存在的问题及建议[J]. 化工管理, 2024(6): 67-70.
[13]  徐海红, 赵晓宏, 董振龙, 等. 我国VOCs污染治理监管存在的问题及对策[J]. 环境影响评价, 2021, 43(2): 7-11.
[14]  李援. 石化行业挥发性有机物污染治理技术探讨[J]. 炼油技术与工程, 2018, 48(7): 1-4.
[15]  张轩, 郭斌, 孙嘉祺, 等. 光催化处理挥发性有机物研究进展[J]. 现代化工, 2020, 38(5): 20-23+25.
[16]  张琰, 李好管. 挥发性有机物(VOCs)治理: 技术进展及政策探析[J]. 煤化工, 2022, 50(6): 1-10+15.
[17]  许天啸, 王蕾. 工业挥发性有机物VOCs污染处理技术初探[J]. 绿色科技, 2016, 18(18): 74-75+78.

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