College of Economics and Management, Nanjing University of Aeronautics & Astronautics (NUAA), Nanjing, 210016, China.
School of Economics and Management, Tongji University, Shanghai, 200092, China.
Environ Sci Pollut Res Int. 2023 Nov;30(53):114111-114139. doi: 10.1007/s11356-023-30366-2. Epub 2023 Oct 19.
Supply chain control and sustainability can be significantly improved using distributed ledger technologies such as blockchain. The blockchain has the potential to facilitate responsible sourcing appropriately, compliance with weather requirements, and sustainable delivery chains. The purpose of this study is to address the hassle of managing conservatism when approaching era adoption and to explore the performance enhancements in blockchain-generated implementations. To achieve this goal, we introduce a scientific approach aimed at studying the outcomes of various factors in the adoption process in the blockchain era and verifying their impact on the overall performance of the delivery chain. Furthermore, a team of multidisciplinary professionals will establish causal relationships among these elements through a consensus-based approach. Ultimately, fuzzy reasoning tools can be used to determine the relative weights between identified factors and delivery chain performance goals. We will assemble causal representations of diagnoses using a dense scientific map model and dynamically generate scenarios for each. The study demonstrates that the integration of blockchain power generation can significantly improve the effectiveness of mineral supply chains. It uses smart contracts to promote environmental sustainability, traceability, and transparency.
供应链控制和可持续性可以通过使用分布式账本技术(如区块链)得到显著改善。区块链有可能促进负责任的采购、符合天气要求和可持续的交付链。本研究的目的是解决在采用时代管理保守主义的麻烦,并探索区块链生成的实现中的性能增强。为了实现这一目标,我们引入了一种科学方法,旨在研究区块链时代采用过程中各种因素的结果,并验证它们对交付链整体性能的影响。此外,一组多学科专业人员将通过基于共识的方法在这些要素之间建立因果关系。最终,可以使用模糊推理工具来确定确定因素与交付链绩效目标之间的相对权重。我们将使用密集科学地图模型来组装诊断的因果表示,并为每个诊断动态生成场景。该研究表明,区块链发电的整合可以显著提高矿产供应链的有效性。它使用智能合约来促进环境可持续性、可追溯性和透明度。