123

Blockchain in the Energy Industry

Chang, S.E., Chen, Y.C., & Wu, T.C. (2019). Exploring blockchain technology in international

trade: Business process re-engineering for letter of credit. Industrial Management and

Data Systems. https://doi​.org​/10​.1108​/IMDS​-12​-2018​-0568

Chitchyan, R., & Murkin, J. (2018). Review of blockchain technology and its expectations:

Case of the energy sector. arXiv:1803.03567.

Corrales Compagnucci, M., Kono, T., & Teramoto, S. (2020). Legal aspects of decentralized

and platform-driven economies. In Legal Tech and the New Sharing Economy, (pp.

1–11). Springer Singapore. https://doi​.org​/10​.1007​/978​-981​-15​-1350​-3_1

Debnath, K.B., & Mourshed, M. (2018). Challenges and gaps for energy planning models in

the developing-world context. Nature Energy, 3(3), 172–184.

Deign, J. (2017). 15 Firms leading the way on energy blockchain. Greentech Media.

Diestelmeier, L. (2017). Regulating for blockchain technology in the electricity sector:

Sharing electricity-and opening Pandora’s Box? In 16th Annual Conference in Science,

Technology, and Society Studies. Kyoto, Japan

Diestelmeier, L. (2019). Changing power: Shifting the role of electricity consumers with

blockchain technology: Policy implications for EU electricity law. Energy Policy, 128,

189–196. https://doi​.org​/10​.1016​/j​.enpol​.2018​.12​.065

Dogo, E.M., Salami, A.F., Nwulu, N.I., & Aigbavboa, C.O. (2019). Blockchain and inter­

net of things-based technologies for intelligent water management system. Artificial

Intelligence in IoT (pp. 129–150). Springer International Publishing. https://doi​.org​/10​.

1007​/978​-3​-030​-04110​-6_7

Dong, Z., Luo, F., & Liang, G. (2018). Blockchain: A secure, decentralized, trusted cyber

infrastructure solution for future energy systems. Journal of Modern Power Systems

and Clean Energy, 6(5), 958–967. https://doi​.org​/10​.1007​/s40565​-018​-0418-0

Edeland, C., & Mörk, T. (2018). Blockchain technology in the energy transition an explor­

atory study on how electric utilities blockchain technology in the energy transition.

Trita-Itm-Ex Nv, 2018, 78.

Fabiano, N. (2018). The Internet of Things ecosystem: The blockchain and data protection

issues. Advances in Science, Technology and Engineering Systems, 3, (2), 01–07.

https://doi​.org​/10​.25046​/aj030201

Feng, Q., He, D., Zeadally, S., Khan, M.K., & Kumar, N. (2019). A survey on privacy protec­

tion in blockchain system. Journal of Network and Computer Applications. https://doi​.

org​/10​.1016​/j​.jnca​.2018​.10​.020

George, R.P., Peterson, B.L., Yaros, O., Beam, D.L., Dibbell, J.M., & Moore, R.C. (2019).

Blockchain for business. Journal of Investment Compliance, 20(1), 17–21https://doi​.org​/

10​.1108​/joic​-01​-2019​-0001

Giancaspro, M. (2017). Is a ‘smart contract’ really a smart idea? Insights from a legal perspec­

tive. Computer Law and Security Review, 33(6), 825–835. https://doi​.org​/10​.1016​/j​.clsr​

.2017​.05​.007

Giotitsas, C., Pazaitis, A., & Kostakis, V. (2015). A peer-to-peer approach to energy produc­

tion. Technology in Society, 42, 28–38). https://doi​.org​/10​.1016​/j​.techsoc​.2015​.02​.002

Gómez-Bolaños, E., Hurtado-Torres, N.E., & Delgado-Márquez, B.L. (2020). Disentangling

the influence of internationalization on sustainability development: Evidence from the

energy sector. Business Strategy and the Environment. 29(1), 229–239.

Goranovic, A., Meisel, M., Fotiadis, L., Wilker, S., Treytl, A., & Sauter, T. (2017). Blockchain

applications in microgrids: An overview of current projects and concepts. In

Proceedings IECON 2017: 43rd Annual Conference of the IEEE Industrial Electronics

Society. Beijing, China. https://doi​.org​/10​.1109​/IECON​.2017​.8217069

Governatori, G., Idelberger, F., Milosevic, Z., Riveret, R., Sartor, G., & Xu, X. (2018). On

legal contracts, imperative and declarative smart contracts, and blockchain systems.

Artificial Intelligence and Law, 26(4), 377–409. https://doi​.org​/10​.1007​/s10506​-018​-

9223-3