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应对区块链的碳足迹挑战。

Confronting the Carbon-Footprint Challenge of Blockchain.

作者信息

Shi Xiaoyang, Xiao Hang, Liu Weifeng, Lackner Klaus S, Buterin Vitalik, Stocker Thomas F

机构信息

Lenfest Center for Sustainable Energy, Department of Earth and Environmental Engineering, Columbia University, New York, New York10027, United States.

Shanxi Institute of Energy and Chemical Engineering, School of Chemical Engineering, Northwest University, Xi'an710069, China.

出版信息

Environ Sci Technol. 2023 Jan 6. doi: 10.1021/acs.est.2c05165.

Abstract

The distributed consensus mechanism is the backbone of the rapidly developing blockchain network. Blockchain platforms consume vast amounts of electricity based on the current consensus mechanism of Proof-of-Work (PoW). Here, we point out a different consensus mechanism named Proof-of-Stake (PoS) that can eliminate the extensive energy consumption of the current PoW-based blockchain. We comprehensively elucidate the current and projected energy consumption and carbon footprint of the PoW- and PoS-based Bitcoin and Ethereum blockchain platforms. The model of energy consumption of PoS-based Ethereum blockchain can lead the way toward the prediction of other PoS-based blockchain technologies in the future. With the widespread adoption of blockchain technology, if the current PoW mechanism continues to be employed, the carbon footprint of Bitcoin and Ethereum will push the global temperature above 1.5 °C in this century. However, a PoS-based blockchain can reduce the carbon footprint by 99% compared to the PoW mechanism. The small amount of carbon footprint from PoS-based blockchain could make blockchain an attractive technology in a carbon-constrained future. The study sheds light on the urgency of developing the PoS mechanism to solve the current sustainability problem of blockchain.

摘要

分布式共识机制是快速发展的区块链网络的核心。基于当前的工作量证明(PoW)共识机制,区块链平台消耗大量电力。在此,我们指出一种名为权益证明(PoS)的不同共识机制,它可以消除当前基于PoW的区块链的大量能源消耗。我们全面阐述了基于PoW和PoS的比特币和以太坊区块链平台当前及预计的能源消耗和碳足迹。基于PoS的以太坊区块链的能源消耗模型可为未来预测其他基于PoS的区块链技术指明方向。随着区块链技术的广泛应用,如果继续采用当前的PoW机制,比特币和以太坊的碳足迹将使本世纪全球气温上升超过1.5摄氏度。然而,与PoW机制相比,基于PoS的区块链可将碳足迹减少99%。基于PoS的区块链产生的少量碳足迹可能使区块链在碳受限的未来成为一项有吸引力的技术。该研究揭示了开发PoS机制以解决当前区块链可持续性问题的紧迫性。

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