Startseite Estimating the Impact of Blockchain Adoption in the Food Processing Industry and Supply Chain
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Estimating the Impact of Blockchain Adoption in the Food Processing Industry and Supply Chain

  • Francesco Longo EMAIL logo , Letizia Nicoletti und Antonio Padovano ORCID logo
Veröffentlicht/Copyright: 12. September 2019
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Abstract

Food supply chains are benefiting from blockchain technology, as it establishes a shared, secure record of information flows, thus reducing food safety risks, increasing consumers’ trust in products’ provenance and enhancing supply chain efficiency. However, despite some embryonic applications, systematic literature review reports very few investigation studies. This article proposes a potential design and update frequency of relevant data to be stored in the Ethereum blockchain for monitoring and traceability purposes and explores the cost connected to every transaction in the case of a fresh milk processing industry and supply chain, from dairy farms to the end consumers. Results show that (i) investments are limited for the supply chain actors; (ii) the benefits of a blockchain-enabled supply chain can be achieved with a minimal impact on the product’s consumer price, and (iii) the costs of operating the blockchain increases as we move down along the tiers of the supply chain.

Acknowledgements

Icons have been retrieved from Flaticon website (Eucalyp, www.flaticon.com).

References

[1] Bhardwaj S, Kaushik M. Blockchain—technology to drive the future. In: Smart computing and informatics. Singapore: Springer, 2018:263–71.10.1007/978-981-10-5547-8_28Suche in Google Scholar

[2] Galvez JF, Mejuto JC, Simal-Gandara J. Future challenges on the use of blockchain for food traceability analysis. TrAC Trends Anal Chem. 2018;107:222–32.10.1016/j.trac.2018.08.011Suche in Google Scholar

[3] Kersten W, Seiter M, von See B, Hackius N, Maurer T. Trends and strategies in logistics and supply chain management–digital transformation opportunities. BVL International. 2017.Suche in Google Scholar

[4] Iansiti M, Lakhani KR. The truth about blockchain. Harv Bus Rev. 2017;95:118e127.Suche in Google Scholar

[5] Kitchenham B. Procedure for undertaking systematic reviews. Computer Science Department, Keele University (TRISE-0401) and National ICT Australia Ltd (0400011T. 1), Joint Technical Report. 2004.Suche in Google Scholar

[6] Bermeo-Almeida O, Cardenas-Rodriguez M, Samaniego-Cobo T, Ferruzola-Gómez E, Cabezas-Cabezas R, Bazán-Vera W. Blockchain in agriculture: a systematic literature review. In: International Conference on Technologies and Innovation, 6 Nov 2018. Cham: Springer, 2018:44–56.10.1007/978-3-030-00940-3_4Suche in Google Scholar

[7] Tse D, Zhang B, Yang Y, Cheng C, Mu H. Blockchain application in food supply information security. In: 2017 IEEE International Conference on Industrial Engineering and Engineering Management (IEEM), 10 Dec 2017. IEEE, 2017:1357–61.10.1109/IEEM.2017.8290114Suche in Google Scholar

[8] Codex Alimentarius Commission (CAC). Principles for traceability/Product tracing as a tool within a food inspection and certification system. CAC/GL. 2006;60.Suche in Google Scholar

[9] Charlebois S, Sterling B, Haratifar S, Naing SK. Comparison of global food traceability regulations and requirements. Compr Rev Food Sci Food Saf. 2014;13:1104–23.10.1111/1541-4337.12101Suche in Google Scholar

[10] Bosona T, Gebresenbet G. Food traceability as an integral part of logistics management in food and agricultural supply chain. Food Control. 2013;33:32–48.10.1016/j.foodcont.2013.02.004Suche in Google Scholar

[11] Ebrahim-Khanjari N, Hopp W, Iravani SM. Trust and information sharing in supply chains. Prod Oper Manage. 2012;21:444–64.10.1111/j.1937-5956.2011.01284.xSuche in Google Scholar

[12] Özer Ö, Zheng Y, Chen KY. Trust in forecast information sharing. Manage Sci. 2011;57:1111–37.10.1287/mnsc.1110.1334Suche in Google Scholar

[13] Lu Q, Xu X. Adaptable blockchain-based systems: a case study for product traceability. IEEE Softw. 2017;34:21–7.10.1109/MS.2017.4121227Suche in Google Scholar

[14] Hobbs JE, Bailey D, Dickinson DL, Haghiri M. Traceability in the Canadian red meat sector: do consumers care? Can J Agric Econ/Revue Canadienne D’agroeconomie. 2005;53:47–65.10.1111/j.1744-7976.2005.00412.xSuche in Google Scholar

[15] Pearson S, May D, Leontidis G, Swainson M, Brewer S, Bidaut L, et al. Are Distributed Ledger Technologies the panacea for food traceability? Global Food Secur. 2019;1:145–9.10.1016/j.gfs.2019.02.002Suche in Google Scholar

[16] Forbes. Blockchain Gains Traction in the Food Supply Chain, July 2018.Suche in Google Scholar

[17] Mao D, Hao Z, Wang F, Li H. Innovative blockchain-based approach for sustainable and credible environment in food trade: a case study in Shandong Province, China. Sustainability. 2018;10:3149.10.3390/su10093149Suche in Google Scholar

[18] Tian F. An agri-food supply chain traceability system for China based on RFID & blockchain technology. In: 2016 13th international conference on service systems and service management (ICSSSM), 24 Jun 2016. IEEE, 2016:1–6.Suche in Google Scholar

[19] Kim M, Hilton B, Burks Z, Reyes J. Integrating blockchain, smart contract-tokens, and IoT to design a food traceability solution. In: 2018 IEEE 9th Annual Information Technology, Electronics and Mobile Communication Conference (IEMCON), 1 Nov 2018. IEEE, 2018:335–40.10.1109/IEMCON.2018.8615007Suche in Google Scholar

[20] Caro MP, Ali MS, Vecchio M, Giaffreda R. Blockchain-based traceability in Agri-Food supply chain management: a practical implementation. In: 2018 IoT Vertical and Topical Summit on Agriculture-Tuscany (IOT Tuscany), 8 May 2018. IEEE, 2018:1–4.10.1109/IOT-TUSCANY.2018.8373021Suche in Google Scholar

[21] Tian F. A supply chain traceability system for food safety based on HACCP, blockchain & Internet of things. In: 2017 International Conference on Service Systems and Service Management. IEEE, 2017:1–6.Suche in Google Scholar

[22] Tan B, Yan J, Chen S, Liu X. The impact of blockchain on food supply chain: the case of Walmart. In: International Conference on Smart Blockchain, 10 Dec 2018. Cham: Springer, 2018:167–77.10.1007/978-3-030-05764-0_18Suche in Google Scholar

[23] Hua J, Wang X, Kang M, Wang H, Wang FY. Blockchain based provenance for agricultural products: A distributed platform with duplicated and shared bookkeeping. In: 2018 IEEE Intelligent Vehicles Symposium (IV), 26 Jun 2018. IEEE, 2018:97–101.10.1109/IVS.2018.8500647Suche in Google Scholar

[24] Baralla G, Ibba S, Marchesi M, Tonelli R, Missineo S. A blockchain based system to ensure transparency and reliability in food supply chain. In: European Conference on Parallel Processing, 27 Aug 2018. Cham: Springer, 2018:379–91.10.1007/978-3-030-10549-5_30Suche in Google Scholar

[25] Wood GE. A secure decentralised generalised transaction ledger. Ethereum Project Yellow Pap. 2014;151:1–32.Suche in Google Scholar

[26] Gueron S, Johnson S, Walker J. SHA-512/256. In: 2011 Eighth International Conference on Information Technology: New Generations (ITNG). IEEE, 2011:354–8.10.1109/ITNG.2011.69Suche in Google Scholar

Received: 2019-03-25
Revised: 2019-06-04
Accepted: 2019-07-17
Published Online: 2019-09-12

© 2019 Walter de Gruyter GmbH, Berlin/Boston

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