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中国管理科学 ›› 2025, Vol. 33 ›› Issue (10): 293-303.doi: 10.16381/j.cnki.issn1003-207x.2023.0111

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区块链技术对低碳供应链合作策略的影响研究

孙嘉轶(), 路阳阳, 滕春贤   

  1. 哈尔滨理工大学经济与管理学院,黑龙江 哈尔滨 150080
  • 收稿日期:2023-01-19 修回日期:2023-08-27 出版日期:2025-10-25 发布日期:2025-10-24
  • 通讯作者: 孙嘉轶 E-mail:sjy_sjx@163.com
  • 基金资助:
    黑龙江省自然科学基金项目(LH2022G010);国家社会科学基金一般项目(22BJL117);黑龙江省哲学社会科学研究规划项目(22GLB108);中央支持地方高校改革发展资金人才培养项目(2021)

A Study on the Impact of Blockchain Technology on the Cooperative Strategy of Low Carbon Supply Chain

Jiayi Sun(), Yangyang Lu, Chunxian Teng   

  1. School of Economics and Management,Harbin University of Science and Technology,Harbin 150080,China
  • Received:2023-01-19 Revised:2023-08-27 Online:2025-10-25 Published:2025-10-24
  • Contact: Jiayi Sun E-mail:sjy_sjx@163.com

摘要:

本文研究区块链技术对碳减排供应商与碳减排制造商合作减排策略的影响。构建有无区块链技术下低碳供应链独立与合作减排的4种决策模型,分析消费者低碳偏好、区块链信任参数与成本参数对低碳供应链碳减排决策的影响,探讨区块链技术对系统合作减排策略的作用效果。研究结果表明,无论是否采用区块链技术,合作碳减排都是供应商与制造商提升碳减排效率的有效方式,但合作对利润的影响不一定都是有利的,企业应该根据其价值目标合理选择;越高的绿色信任系数对碳减排效率与利润越有利,选择采取区块链技术时,绿色信任系数达到最优;当供应商和制造商采用区块链技术对期间费用的影响系数小于某一阈值时,采用区块链技术比未采取区块链技术时的碳减排效率更高,但当区块链技术的使用成本高于阈值时,选择使用区块链技术会影响供应商与制造商的利润。

关键词: 低碳供应链, 区块链技术, 合作减排, 绿色信任, 期间费用

Abstract:

Being the world’s largest carbon emitter, the rapid socio-economic development in China has resulted in the emergence of a prominent carbon emission problem. Addressing this issue, the underscored point is the necessity of enterprises’ involvement in carbon emission reduction behaviors. Collaborative carbon reduction is considered an indispensable approach for mitigating carbon emissions throughout supply chains. Enterprises undertake carbon reduction activities through this pivotal method. Nevertheless, the establishment of complete mutual trust between suppliers and manufacturers is confronted with challenges, which are accompanied by heightened cooperation costs and a market permeated with deceptive marketing practices. As a result, the identification of low-carbon products becomes a complex endeavor for consumers. A pathway to resolution is discovered through the utilization of blockchain technology, which adeptly tackles challenges pertaining to information exchange and sharing among multiple entities. The above challenges will be addressed through the enhancement of transaction trust and the introduction of innovative solutions. The evaluation of the extent and implications of blockchain technology in the cooperative emission reduction strategy is emphasized within the context of a low-carbon supply chain. The formulation of optimal strategies for the adoption of blockchain technology and the execution of emission reduction collaborations in such supply chains is being pursued. Additionally, an analysis is conducted to assess the influence of consumer preferences for low-carbon products, blockchain trust parameters, and cost factors on decision-making processes regarding emission reduction and pricing strategies within the supply chain system. Cooperation in carbon reduction and the adoption of blockchain technology are subject to the discretion of suppliers and manufacturers, influenced by their unique circumstances. Four distinct models are developed for making decisions within low-carbon supply chains. These models encompass individual decisions about emission reduction rates without utilizing blockchain technology, collective decisions about emission reduction rates without utilizing blockchain technology, individual decisions about emission reduction rates while incorporating blockchain technology, and collective decisions about emission reduction rates with the integration of blockchain technology. The resolution is attained through the application of the Stackelberg game model, where in the role of the dominant player is assumed by the supplier, while the manufacturer functions as the follower. With the integration of blockchain technology into the supply chain, a state of information symmetry is established between enterprises and consumers. This empowers consumers with in-depth insights into the attributes of low-carbon products, consequently nurturing an unwavering trust in such products. It is underscored that irrespective of blockchain adoption, collaborative carbon reduction remains an effective avenue for enhancing carbon reduction rates for both suppliers and manufacturers. However, the impact of such collaboration on profits is not universally favorable, necessitating prudent decision-making aligned with individual value objectives. Importantly, the introduction of blockchain technology notably amplifies the factor of green trust. This factor directly correlates with the enhancement of carbon reduction rates and profit margins. When blockchain technology is adopted by suppliers and manufacturers with an impact coefficient of period costs lower than a certain threshold, a higher reduction rate will be achieved compared to not adopting blockchain technology. However, when the costs associated with blockchain technology surpass the threshold, its utilization directly influences the profit margins of suppliers and manufacturers. This study’s data is derived from the investigation of real-life cases and references to relevant literature, aimed at providing theoretical foundations and decision-making references for the use of blockchain technology in low-carbon supply chains and the selection of emission reduction cooperation strategies.

Key words: low carbon supply chain, blockchain, collaborative emissions reduction, green trust, period costs

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