The Development Logic, Influencing Factors and Realization Path for Low-Carbon Agricultural Mechanization
Received date: 2023-04-13
Online published: 2023-12-20
Supported by
National Natural Science Foundation of China(22BGL166)
Copyright
[Significance] With the escalating global climate change and ecological pollution issues, the "dual carbon" target of Carbon Peak and Carbon Neutrality has been incorporated into various sectors of China's social development. To ensure the green and sustainable development of agriculture, it is imperative to minimize energy consumption and reduce pollution emissions at every stage of agricultural mechanization, meet the diversified needs of agricultural machinery and equipment in the era of intelligent information, and develop low-carbon agricultural mechanization. The development of low-carbon agricultural mechanization is not only an important part of the transformation and upgrading of agricultural mechanization in China but also an objective requirement for the sustainable development of agriculture under the "dual carbon" target. Progress] The connotation and objectives of low-carbon agricultural mechanization are clarified and the development logic of low-carbon agricultural mechanization from three dimensions: theoretical, practical, and systematic are expounded. The "triple-win" of life, production, and ecology is proposed, it is an important criterion for judging the functional realization of low-carbon agricultural mechanization system from a theoretical perspective. The necessity and urgency of low-carbon agricultural mechanization development from a practical perspective is revealed. The "human-machine-environment" system of low-carbon agricultural mechanization development is analyzed and the principles and feasibility of coordinated development of low-carbon agricultural mechanization based on a systemic perspective is explained. Furthermore, the deep-rooted reasons affecting the development of low-carbon agricultural mechanization from six aspects are analyzed: factor conditions, demand conditions, related and supporting industries, production entities, government, and opportunities. Conclusion and Prospects] Four approaches are proposed for the realization of low-carbon agricultural mechanization development: (1) Encouraging enterprises to implement agricultural machinery ecological design and green manufacturing throughout the life cycle through key and core technology research, government policies, and financial support; (2) Guiding agricultural entities to implement clean production operations in agricultural mechanization, including but not limited to innovative models of intensive agricultural land, exploration and promotion of new models of clean production in agricultural mechanization, and the construction of a carbon emission measurement system for agricultural low-carbonization; (3) Strengthening the guidance and implementation of the concept of socialized services for low-carbon agricultural machinery by government departments, constructing and improving a "8S" system of agricultural machinery operation services mainly consisting of Sale, Spare part, Service, Survey, Show, School, Service, and Scrap, to achieve the long-term development of dematerialized agricultural machinery socialized services and green shared operation system; (4) Starting from concept guidance, policy promotion, and financial support, comprehensively advancing the process of low-carbon disposal and green remanufacturing of retired and waste agricultural machinery by government departments.
YANG Yinsheng , WEI Xin . The Development Logic, Influencing Factors and Realization Path for Low-Carbon Agricultural Mechanization[J]. Smart Agriculture, 2023 , 5(4) : 150 -159 . DOI: 10.12133/j.smartag.SA202304008
本研究不存在研究者以及与公开研究成果有关的利益冲突。
1 |
金书秦, 林煜, 牛坤玉. 以低碳带动农业绿色转型:中国农业碳排放特征及其减排路径[J]. 改革, 2021(5): 29-37.
|
2 |
白学峰, 常江雪, 滕兆丽, 等. 我国智能农业拖拉机关键技术研究进展[J]. 智能化农业装备学报(中英文), 2022, 3(2): 10-21.
|
3 |
罗锡文, 廖娟, 臧英, 等. 我国农业生产的发展方向:从机械化到智慧化[J]. 中国工程科学, 2022, 24(1): 46-54.
|
4 |
高焕文. 构建节约型农业机械化体系[J]. 中国农机化, 2007, 28(1): 7-10.
|
5 |
张培刚. 农业与工业化[M]. 北京: 中国人民大学出版社, 2014.
|
6 |
白人朴. 中国特色农业机械化理论体系研究[N]. 中国农机化导报, 2011-07-11.
|
7 |
白人朴. 中国特色农业机械化理论体系研究[J]. 农村牧区机械化, 2011(4): 5-6.
|
8 |
杨印生, 舒坤良. 低碳农业机械化与农业机械低碳化[J]. 农机化研究, 2015, 37(2): 6-9.
|
9 |
节约型农业机械化的科学发展[C]// 吉林省农业机械学会2008年学术年会论文集. 长春, 2008: 4-6.
|
10 |
杨印生. 坚持科学发展观 实现节约型农业机械化[J]. 新长征, 2008(11): 18-19.
|
11 |
于帅. 群贤集聚 探讨转变农业机械化发展方式[J]. 农业机械, 2011(31): 66-69.
|
12 |
迈克尔·波特. 国家竞争优势-上[M]. 北京: 中信出版社, 2012.
|
13 |
张兆同, 杨桂祥. 农业机械化高质量发展的内涵、问题与对策[J]. 农业经济, 2020(2): 6-8.
|
14 |
任露泉. 地面机械脱附减阻仿生研究进展[J]. 中国科学(E辑: 技术科学), 2008, 38(9): 1353-1364.
|
/
〈 |
|
〉 |