[碳中和植物在减少污染和碳封存方面的研究进展]。

Q2 Environmental Science Huanjing Kexue/Environmental Science Pub Date : 2024-06-08 DOI:10.13227/j.hjkx.202307068
Yun Chen, Qi-Xing Zhou, Zong-Xin Tao, Tong Zheng, Kang-Ying Wu, Jia-le Zhang, Shao-Hu Ouyang
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引用次数: 0

摘要

在经济发展和生态承载力的双重约束下,中国有必要探索更多的技术手段来实现碳中和与碳峰值。植物是陆地和海洋碳汇系统的重要载体,而植物修复也是治理环境污染的科学方法。然而,目前的研究多集中在植物固碳(包括降低环境介质中污染物浓度和降解污染物两方面)或植物减污的单一方面,没有考虑植物减污和固碳的双重效益。为了探索植物的碳中和效应,我们重点研究了碳中和植物的减污固碳效应及其研究进展,评估了碳中和植物与其他生物(如动物和土壤微生物)和环境功能材料的减污固碳潜力。此外,还探讨了碳中性植物与动物、微生物、环境功能材料和生态系统在减少污染和固碳方面的协同耦合机制。最后,我们对碳中性植物在污染减排和碳汇效应方面的未来研究提出了建设性的展望。
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[Research Progress in Reducing Pollution and Sequestration of Carbon by Carbon Neutral Plants].

Under the dual constraints of economic development and ecological carrying capacity, it is necessary to explore more technical means to achieve carbon neutrality and peak in China. Plants are important carriers of terrestrial and marine carbon sink systems, whereas phytoremediation is also a scientific method to remedy environmental pollution. However, the current studies mostly focus on the single aspect of plant carbon sequestration (including both the reduction of pollutant concentrations in environmental media and degradation of pollutants) or plant pollution reduction, without considering the dual benefits of plant pollution reduction and carbon sequestration. In order to explore the carbon neutral effect of plants, we focused on the pollution reduction and carbon sequestration effect of carbon neutral plants and its progress and evaluated the pollution reduction and carbon sequestration potential of carbon neutral plants and other organisms (such as animals and soil microorganisms) and environmental functional materials. The mechanisms underlying the synergistic coupling of carbon neutral plants and animals, microorganisms, and environmental functional materials and ecosystems in reducing pollution and carbon sequestration were also explored. Finally, we proposed constructive prospects for future research on the effects of carbon neutral plants on pollution reduction and carbon sink.

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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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