Azmat Ullah, Muhammad Ayat, Yi He, Benjamin Lev
No abstract is available for this record.
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Azmat Ullah, Muhammad Ayat, Yi He, Benjamin Lev
No abstract is available for this record.
Shahbaz Khan, Abid Haleem, Zafar Husain, Danny Samson · 5 authors
Abstract In the era of digitalization, Blockchain is an evolving technology that has the potential to change the shape of numerous industries. Blockchain is considered the transforming technology that has the ability to change the conventional supply chain network by providing additional transparency of transactions in terms of information and physical goods. Additionally, the implementation of blockchain technology in the supply chain is required to accomplish the objectives of industry 4.0. However, there has to date been a scarcity of blockchain implementations due to the numerous barriers associated with it. Therefore, the primary aim of this research is to identify and investigate the major barriers to implementing blockchain technology in supply chains. We identified ten significant barriers to adopting blockchain technology through a literature review and expert opinions. Additionally, the finalized barriers were categorized into an influential and influenced group using the DEMATEL method. The findings of this study show that 'influential group' barriers require more attention from the supply chain partners to mitigate these barriers. The primary influential barriers are 'Lack of information sharing,' 'Trust management issues,' and 'Lack of upgraded technologiesâ, and these barriers require immediate attention from supply chain stakeholders wishing to use blockchain. These findings contribute to improving managerial decisions and digital strategies regarding blockchain within organisations, and how implementation can effectively be achieved.
Shuai Li, Shaojian Qu
With the gradual and widespread application of blockchain technology in the supply chain, its characteristics can help solve the financing problem of MSMEs. To this end, this paper constructs a cooperative game model for suppliers, manufacturers and retailers in the case of a cross-level guarantee of order-to-factoring, studies the pricing strategy of supply chain finance members based on blockchain technology by adopting the Stackelberg primary-secondary game method, and makes a reasonable allocation of total supply chain revenue with the help of the Shapley value of the cooperative game. The study found that the adoption of blockchain can be effective in increasing the benefits to supply chain members and systems. The adoption of blockchain increases the blockchain costs but decreases the financing costs for the supplier. The Shapley value of the cooperative game is used to distribute the benefits, allowing for Pareto improvements in the benefits to supply chain members. In the next step, we will focus on examining the impact of risk assessment and the degree of information disclosure on supply chain finance with blockchain technology.
Hugo Eduardo Ramirez, Juliån Fernando Sanchéz
This paper studies the optimal liquidation of stocks in the presence of temporary and permanent price impacts, and we focus in the case of cryptocurrencies. We start by presenting analytical solutions to the problem with linear temporary impact, and linear and quadratic permanent impact. Then, using data from the order book of the BNB cryptocurrency, we estimate the functional form of the temporary and permanent price impact in three different scenarios: underestimation, overestimation and average estimation, finding different functional forms for each scenario. Using finite differences and optimal policy iteration, we solve the problem numerically and observe interesting changes in the optimal liquidation policy when applying calibrated linear and power forms for the temporary and permanent price impacts. Then, with these optimal policies, we identify optimal liquidation trajectories and simulate the liquidation of initial inventories to compare the performance among the optimal strategies under different parametrizations and against a naive strategy. Finally, we characterize the optimal policies based on the functional form of the inventory and find that policies generating the highest revenue are those starting with a low trading rate and increasing it as time passes.
Mohammed A. Alqarni, Mohammed Saeed Alkatheiri, Sajjad Hussain Chauhdary, Sajid Saleem
Blockchain is a disrupting technology that has the capability to completely alter the design, activities, and product flows in logistics and supply chain networks. It provides assurance of openness, immutability, transparency, security, and neutrality for all supply chain agents and stakeholders. In this paper, we explore the improvements and tradeoffs introduced by using blockchains in logistics management in terms of the sustainability of society, the environment, and economic dimensions of the supply chain. Blockchain technology makes it much more difficult to counterfeit products by providing indisputable and immutable proof of the provenance of the raw materials, products, and sale to the end consumer. This can potentially enhance the trust of the consumer in the product and financially benefit the manufacturer through the protection of their intellectual property rights. This paper explores the benefits, applications, and issues related to the usage of blockchain and smart contracts for logistics and supply-chain management. We focus on the implementation, deployment, audit, and operational aspects of smart contracts in the blockchain applied to terrestrial, maritime, and aerial logistics networks. The paper also discusses opportunities and challenges that arise due to the use of smart contracts in these sectors.
Ardavan Babaei, Majid Khedmati, Mohammad Reza Akbari Jokar, Erfan Babaee Tırkolaee
With the development of communication infrastructure, the design of supply chains has changed significantly. Blockchain technology, as one of the most cutting-edge technologies, can promote transparency among members of the supply chain network. To the best of our knowledge, this is the first study that tries to develop a novel bi-objective optimization model to integrate the transparency resulting from the use of blockchain for designing a three-level supply chain network. The first objective function is to minimize total cost while the second objective function seeks to maximize transparency based on the application of blockchain technology. Moreover, it is worth noting that it is the first attempt to investigate the role of a blockchain model under stochastic conditions. The bi-objectiveness and stochastic nature of the proposed model are then treated using Fuzzy Goal Programming (FGP) and Chance-Constrained programming (CCP) approaches, respectively. To tackle the problem, an improved Branch and Efficiency (B&E) algorithm is developed by incorporating transparency along with cost and service. The impacts of blockchain exclusively through transparency (Case 1) or through transparency, cost, and benefits (Case 2) in Supply Chain Design (SCD) are compared. The results demonstrated that the first case has less computational complexity and better scalability, while the second case has more transparency, less congestion, and more security. As one of the main implications, supply chain managers who are focused on cost minimization as well as transparency maximization are advised to take into account the trade-off between featuring costs and benefits of blockchain technology.
JungâFa Tsai, Dinh-Hieu Tran, Phi-Hung Nguyen, Ming-Hua Lin
Blockchain technology is emerging and has high potential to improve and transform the agricultural supply chain. This study investigates the critical barriers to blockchain technology adoption in the Vietnamese agricultural supply chain using a novel interval-valued hesitant fuzzy Decision-Making Trial and Evaluation Laboratory (IVHF-DEMATEL) approach. The IVHF-DEMATEL technique is applied to identify cause-and-effect relationships and draw the influence-relations map of the barriers. In contrast to prior work, which converts fuzzy sets into crisp sets and then uses crisp set operations, this study is the first study to investigate the Vietnamese agricultural supply chain that uses fully hesitant fuzzy operations representing expertsâ assessment without information loss during the conversion. Our results show that âlack of government regulationâ, âlack of scalability and system speedâ, âa large amount of resource and capital requirementsâ, and âlack of trust among agro-stakeholder or public perceptionâ are the main barriers. Consistent with previous studies, âlack of government regulationâ is the most significant barrier. The results also indicate the hesitant degree of each barrier and better inform decision-makers about uncertain situations. Moreover, a priority order for tackling barriers is proposed to accelerate blockchain adoption in the Vietnamese agricultural supply chain.
Saroj Kumar Nanda, Sandeep Kumar Panda, Madhabananda Dash
Nowadays blockchain technology plays a vital role in creative developments and important discoveries in the world. Blockchain develops secure and trustworthy platforms for data sharing in various application areas such as secure sharing of medical data, Anti-money laundering, tracking systems, Supply chain, and logistics monitoring, Crypto-currency exchange, etc. Today's Supply chain in the healthcare sector faces many problems like security, transparency, tampering with medical products, counterfeit drugs, more paperwork, high cost, and more time-consuming process while transporting medical equipment from manufacture to end-users. To overcome these problems, we introduce Novel Approach for Integrated IoT (Internet of Things) With Blockchain in Health Supply Chain (NAIBHSC) approach. By using this approach, we can eliminate all supply chain-related issues between suppliers and end-users. The goal of this research is by combining Blockchain technology with IoT to develop a smart health supply chain management system. This approach provides security, privacy, trust, visibility, decentralized tracking and tracing of the medical product, avoids counterfeit drugs, avoids the damage to medical components, authentication, reduces the cost, and provides the status of the products during the shipment process between manufacturers to end-user. In this approach, we conduct a series of experiments on a different group of users. The experimental results show that compare to existing approaches our proposed NAIBHSC approach gives better response time that is the average Transaction Per Second (TPS) for a group of 500 users is 100 milliseconds, reduces the latency time that is average latency time for 500 users group has 403 milliseconds, and improves the overall performance of the smart health supply chain management system.
Yuling Sun, Xiaomei Song, Yihao Jiang, Jian Guo
Blockchain technology allows fresh agricultural enterprises to share records stored on the chain, and the technology can benefit information management systems, such as decentralization and transparency. This study uses game theory to examine a blockchain introduction strategy for fresh agricultural enterprises in a competitive environment, considering consumer traceability preferences. We establish a pricing decision model in traditional and blockchain traceability modes and identify optimal solutions. Additionally, we analyze the impact of the blockchain introduction strategy, consumer preferences, and blockchain influence factor on optimal pricing decisions. The results indicate that the introduction of blockchain could improve the profits of enterprises under certain conditions. Moreover, consumer traceability preferences and the blockchain influence factor could significantly affect the blockchain introduction strategy. We also discover that when the blockchain influence factor meets a certain range, introducing blockchain technique in the traceability system could shift demand from traditional enterprises to blockchain enterprises. The total market demand for blockchain enterprises under the blockchain traceability mode will increase, whereas that of traditional enterprises under the blockchain traceability mode will decrease. Both consumer traceability preferences and the blockchain influence factor could significantly affect optimal pricing. Finally, some management suggestions are provided for the traceability of fresh agricultural enterprises based on the research conclusions.
Jasur Salikhov, Saidjahon Hayrutdinov, Timur Muminov
The objective of this study is to establish an efficient contractual coordination model for advancing the supply chain (SC) towards sustainability with blockchain technology. The problem of SC unsold product remanufacturing is investigated under the influence of efforts on recovery quality and information sharing within blockchain technology. Firstly, a functional model describes how the recovery quality affected by the added effort and demand of the remanufactured products is affected by the price. Secondly, the downstream SC faced market uncertainty with consumer sensitivity analyzed, and the SC information-sharing systems were reconsidered in order to improve consumer satisfaction. Then, under the conditions of information sharing and recovery quality efforts, the decentralized SC decision-making mode is discussed. The above demonstrates that the SC unsold products remanufacturing under the decentralized decision-making mode cannot be coordinated. To prove the efficiency of unsold products remanufacturing we investigated the centralized SC mode as a benchmark, which is known as the most efficient system. Finally, in order to effectively coordinate the whole chain, a mechanism of âcost and revenue sharingâ is proposed, and the constraints of supplierâs choice of remanufacturing are given. The results show that the âcost and revenue sharingâ mechanism can effectively coordinate the SC and the expected profits of downstream and upstream will be in winâwin condition. Moreover, the âcost and revenue sharingâ mechanism in a sustainable SC unsold product remanufacturing essentially builds an incentive among members to improve the efficiency of existing resource usage and the environmental implications.
Manjot Singh Bhatia, Atanu Chaudhuri, YaĆanur Kayıkçı, Horst Treiblmaier
Agricultural commodity supply chains are characterised by the involvement of multiple intermediaries, lack of access to finance and poor financial conditions of farmers. Additionally, there exist numerous inefficiencies and a lack of transparency in the trading processes. Blockchain-enabled supply chain finance (SCF) solutions can potentially help to overcome these problems. However, there is limited research on the process of developing and implementing such solutions and the potential consequences of their implementation. In this paper, we apply the Context-Intervention-Mechanism-Outcome (CIMO) framework to systematically analyse case studies of four firms that have developed blockchain-enabled SCF solutions in agricultural commodity supply chains. The findings show that blockchain-enabled SCF solutions can reduce different types of transaction costs such as costs associated with information search, negotiation and contracting costs, and costs of accessing finance. The solutions designed with the core objective of improving the financial conditions of farmers will differ from those with the core objective of reducing process inefficiencies. The findings of the study will benefit companies planning to develop and implement blockchain-enabled SCF solutions, by highlighting operational challenges and offering concrete solutions on how they can be overcome.
Corban Allenbrand
Conflicts between supply chain members emerge because individual strategic actions may not be jointly optimal. Efforts to forecast consumer demand represent a source of conflict. The coordination of forecasts requires a powerful incentive alignment approach. This work proposes a smart contract equipped consortium blockchain system that creates an incentive structure that makes coordination with respect to forecasts economically appealing. Distortions of demand information due to uncoordinated forecasting are captured by a bullwhip measure that factors both forecast error and variance. Cooperation under the system is shown to help minimize this bullwhip measure, thus generating new outcomes for the participants that allow for a higher reward. Under a fixed payout structure, the system achieves credibility of continued cooperation, thus promoting an optimally coordinated equilibrium between the retailer and supplier. Blockchain technology represents a novel information system and consensus formation mechanism that can intermediate the behavior of a supply chain network.
Yeh-Cheng Yang, Wen-Sheng Shieh, Chun-Yueh Lin
The crypto and digital assets ecosystems have attracted investment, regulators, and speculators to their environment. As the blockchain-based framework can reduce transaction costs, generate distributed trust, and enable decentralized platforms, it has become a potential new base for decentralized business models. Previous studies have highlighted the advantages and drawbacks of each platform, such as interest rates, cost concerns, transparency issues, hacking issues, and hazards. Consequently, it is challenging for investors to evaluate the cryptocurrency trading system which determines the optimum exchanges and crucial aspects. Therefore, in order to rank the optimal digital token trading system, this paper develops an evaluation architecture to determine the various token trading systems. The developed architecture integrates fuzzy theory and the best-worst method (BWM) into the decision-making process to assess decision behaviors regarding preference for digital token trading systems in investors in Taiwan. First, this work establishes the views and parameters by modifying the Delphi method based on a literature review and survey. Second, the fuzzy-BWM is applied to obtain the fuzzy weights of the views and parameters. Then, defuzzification and BWM are used to rank the optimal alternatives of the digital token trading systems for investors. The results indicate that the optimal digital token trading system is the decentralized platform, and the critical parameters are gas fees, interest rates, and the mechanism of savings under fuzzy uncertain scenarios. This means that when considering the uncertain and ambiguous characteristics of the expert decision process in digital token trading systems, the evaluation is decentralized and the gas fees are the most important parameter in the digital token investment platform. Academically, the fuzzy BWM-based decision-making architecture can provide corporations and investors with valuable guidance to rank the optimal digital token trading systems based on fuzzy uncertain scenarios. Commercially, the proposed architecture could provide corporations and investors with a useful model to measure the optimal digital token trading system.
Xiutian Shi, Siru Chen, Xiaofan Lai
No abstract is available for this record.
Yeray Mezquita, BlaĆŸ Podgorelec, Ana BelĂ©n Gil GonzĂĄlez, Juan M. Corchado
The main purpose of supply chain systems based on blockchain technology is to take advantage of technology innovations to ensure that a tracked asset's audit trail is immutable. However, the challenge lies in tracking the asset among different blockchain-based supply chain systems. The model proposed in this paper has been designed to overcome the identified challenges. Specifically, the proposed model enables: (1) the asset to be tracked among different blockchain-based supply-chain systems; (2) the tracked asset's supply chain to be cryptographically verified; (3) a tracked asset to be defined in a standardized format; and (4) a tracked asset to be described with several different standardized formats. Thus, the model provides a great advantage in terms of interoperability between different blockchain-driven supply chains over other models in the literature, which will need to replicate the information in each blockchain platform they operate with, while giving flexibility to the platforms that make use of it and maintain the scalability of those logistic platforms. This work aims to examine the application of the proposed model from an operational point of view, in a scenario within the pharmaceutical sector.
Mohammod Abul Kashem, Mohammad Shamsuddoha, Tasnuba Nasir, Asma Akter Chowdhury
In response to significant disruption, supply chain optimization became sensitive to increasing consumer expectations, unexpected demand fluctuation, and inventory costs. Proactive movement, understanding, and empowerment have fostered the beneficial results of supply chain optimization, cooperation, and operational resilience. These pioneering activities are critical to achieving a paradigm shift in the supply chain, even agility in response to changing demand. However, sophisticated analytics such as artificial intelligence (AI) and blockchain are supposed to overcome these challenges to make smarter decisions on a daily basis. Due to these facts, this study aimed to model AIâs and blockchainâs role in supply chain optimization by conducting a systematic literature review based on the idealized framework of Rejeb et al. (2022) and the SALSA mechanism. In addition, this paradigm-shifting approach will provide fairer views and options for managing forecasting, planning, monitoring, and reporting across the entire supply chain. The emphasis remains on real-time accuracy, easy access, and optimization of operational indicators such as sales, visibility, and end-to-end supply chain operations at all times and from any location. It will be an eye-opening experience to enable stakeholders and partners to communicate information collaboratively, consistently, and efficiently.
Xiaoping Xu, Luling Yan, TsanâMing Choi, T.C.E. Cheng
Blockchain technology has been widely used in many industries. One current application is in remanufacturing. In this paper we consider the combination of remanufacturing and blockchain, and model a supply chain composed of a manufacturer, a third-party firm, and an online platform. Among them, the manufacturer faces the cap-and-trade regulation and adopts blockchain to record the information on the used products and then remanufactures products. The platform has the power to expand the potential market size and can operate in the marketplace or reselling mode. The third-party firm collects used products for the manufacturer. We conduct a Stackelberg game analysis and obtain the following major findings: First, the optimal production quantities and optimal collection rates with and without blockchain in the marketplace and reselling modes increase with the allocated cap and platform-enabled power. Second, in the reselling or marketplace mode, the manufacturer should not adopt blockchain if the emissions intensity is low; otherwise, it should adopt blockchain. Third, selecting the reselling (marketplace) mode is more profitable for the manufacturer if the platform-enabled power is low (high). Fourth, for quantity coordination, the reselling mode under the wholesale price contract can always coordinate the manufacturer and platform, and the manufacturer, online platform, and third-party firm. However, the marketplace mode with a commission rate can only coordinate the manufacturer, online platform, and third-party firm. For social welfare coordination, the manufacturer, online platform, and third-party firm can achieve coordination in the marketplace or reselling mode. Finally, extending the work to consider the cross-channel effect, we find that the major findings for both quantity coordination and social welfare coordination in the reselling and marketplace modes still hold.
Haji Suleman Ali, Feiyan Jia, Zhiyuan Lou, Jingui Xie
Despite blockchain's potential to transform corporations by providing new ways of organizing business processes and handling information, extant research pays inadequate attention to how and under what conditions blockchain technology provides additional financial value for shareholders. Drawing on the efficient market hypothesis and signaling theory, we examined the relationship between firms' blockchain use, development announcements, and stock market reactions. We used the event study methodology to analyze a sample of blockchain projects initiated by US firms between 2016 and 2019. The sample contains 114 firm-event observations. The findings show that the average abnormal return over a 2 days event period (including the day of the announcement and the day after the announcement) was positive. This positive stock market reaction is even more substantial when firms announce blockchain projects that focus on saving cost or time. Our findings also indicate that blockchain announcements tend to elicit more positive market reactions from smaller firms. We analyzed 249 firm-event observations containing firms from around the world and conclude that blockchain technology has a non-significant long-term impact on operating performance. The contingency approach adopted in our research provides advice for selecting the right mix of blockchain investment initiatives that is most suitable for a given organizational context.
Senyu Xu, Huajun Tang, Yuxin Huang
Purpose The purpose of this research is to investigate how to introduce a financing scheme to tackle the manufacturer's capital constraint problem, discuss the effects of data-driven marketing (DDM) quality, cross-channel-return (CCR) rate and financing interest rate on the members' pricing and delivery-lead-time decisions and optimal performances, and analyzes `how to achieve the coordination within a dual-channel supply chain (DSC) by contract coordination. Design/methodology/approach This work establishes a DSC model with DDM, and the offline retailer can provide internal financing to the capital-constrained online manufacturer. The demand under the price is determined based on DDM quality, customer channel preference and delivery lead time. Then, combined with the Stackelberg game, the optimal pricing and delivery-lead-time decisions are discussed under the inconsistent and consistent pricing strategies with decentralized and centralized systems. Furthermore, it designs a manufacturer-revenue sharing contract to coordinate the members under the two pricing strategies. Findings (1) The increase of DDM quality will reduce the delivery-lead-time under the inconsistent or consistent pricing strategy and will push the selling prices; (2) The growth of the CCR rate will raise selling prices and extend the delivery-lead-time under the decentralized decision; (3) Under price competition, the offline selling price is higher than the online selling price when customers prefer the offline channel and vice versa; (4) The retailer and the manufacturer can achieve a win-win situation through a manufacturer-revenue sharing contract. Originality/value This paper contributes to the studies related to DSC by investigating pricing and delivery-lead-time decisions based on DDM, CCR, internal financing and supply chain contract and proposes some managerial implications.
Vincent Charles, Ali Emrouznejad, Tatiana Gherman
No abstract is available for this record.
Sunil Tiwari, Pankaj Sharma, TsanâMing Choi, Andrew E. B. Lim
In global supply chains, third-party logistics (3PL) services have proven to be critically important in helping many supply chain agents with distribution tasks so that they can focus on their core competencies of product development and manufacturing. However, there are many inadequacies in current global supply chains that affect the functions of 3PL. These shortcomings have necessitated digital transformation in many businesses. This digitalization enhances information sharing and supply chain visibility, which improves supply chain performance; however, it may create challenges regarding cybersecurity and data quality. Blockchain technology (BCT), with features such as being highly secure and distributed, can help. In this paper, we examine the literature and identify challenges associated with 3PL and how BCT can be used for 3PL. Then, we conduct interviews with four innovation/project managers of well-established logistics companies to uncover the status of BCT adoption in 3PL and the challenges that are hampering the adoption of this technology. Finally, we propose a framework together with a decision roadmap for BCT implementation.
Xuefeng Zhang, Zhe Li, Guo Li
Blockchain is a driver for digitalization in the fresh industry, but the resulting improvements in each supply chain memberâs performance are difficult to predict. In this study, we examine the effects of blockchain-based digital transition in a cold supply chain with a manufacturer, a retailer, and a third-party logistics service provider (3PL). Our study provides several managerial implications. First, blockchain adoption would lead to a preservation service level increase if the 3PL charges a low transportation fee, but a preservation service level decrease if the 3PL charges a high one. Second, the blockchain adoption may induce the manufacturer to increase its wholesale price, which does not cause the retailer to cut the order quantity but instead sets a lager one. Third, our results indicate that simply relying on the market mechanism may not enable the cold supply chain to make the optimal decision; thus, government intervention or an exogenous coordination mechanism must be introduced to drive the cold supply chain members to reach a consensus on blockchain-based digital transition. Finally, the main results in the basic model are proven to remain robust. Managerial implications are discussed and provided.
Anwara Happy, Md. Maruf Hossan Chowdhury, Moira Scerri, Md. Alamgir Hossain · 5 authors
Purpose Despite the availability of several published reviews on the adoption of blockchain (BC) in supply chain (SC), at present, the literature lacks a comprehensive review incorporating the antecedents and consequences of BC adoption. Moreover, the complex adoption of BC in SC, explained with the mediating and moderating relationships, is not fully consolidated. Thus, the aim of this study was to conduct a systematic literature review (SLR) on BC technology adoption (BCTA) in SC by integrating its antecedents and consequences. Design/methodology/approach Keyword searches were performed in multiple databases resulting 382 articles for evaluation and verification. After careful screening with respect to the purpose of the study and systematic processing of the retrieved articles, a total of 211 peer-reviewed articles were included in this study for review. Findings Various technological, organisational, individual, social, environmental, operational and economic factors were found as the antecedents of BCTA in SC. In addition, numerous applications of BC Technology (BCT) were identified, including asset management, identity management, transaction management, data management and operations management. Finally, the consequences of BCTA were categorised as operational, risk management, economic and sustainability outcomes. Practical implications This study can assist relevant decision-makers in managing the factors influencing BCTA and the potential uses of the technology to enhance SC performance. Originality/value By integrating the antecedents, applications and consequences of BCTA in SC, including the mediators and moderators, an integrated framework was developed that can potentially assist researchers to develop theoretical models. Further, the results of this SLR provide future directions for studying BCTA in supply chain management (SCM).
Yi Zheng, Yaoqun Xu, Zeguo Qiu
Blockchain technology has brought about profound revolutions in supply chain management. Notably, in the agricultural sector, blockchain-based traceability has become an essential tool to maintain the safety and quality of farm commodities. However, the implementation of blockchain technology in agricultural traceability is not prevalent. In this paper, mathematical modeling and simulation methods were used to investigate the decision making regarding the adoption of blockchain traceability in agriculture, which comprises producers, processors, and governments. This paper provides further analysis of the optimal blockchain-based traceability strategies of the members of the agricultural product supply chain in different scenarios. The results reveal the following: (1) Producers and processors should manage the traceability costs for adopting blockchains to improve their brand image and gain more benefits. (2) The government should encourage supply chain agents to participate in traceability by establishing an effective reward-and-punishment mechanism. In addition, the research will help agricultural supply chain agents to design strategies to implement traceability in agriculture and create a transparent and efficient data-driven agricultural products supply chain. Furthermore, these findings provide guidance to policymakers to develop policies to accelerate the implementation of blockchain-based traceability systems to guarantee fraud-free and sustainable agricultural supply chains.