论文标题

对加密货币和可能解决方案的能耗和碳足迹的分析

An Analysis of Energy Consumption and Carbon Footprints of Cryptocurrencies and Possible Solutions

论文作者

Kohli, Varun, Chakravarty, Sombuddha, Chamola, Vinay, Sangwan, Kuldip Singh, Zeadally, Sherali

论文摘要

迫切需要控制人类引起的全球变暖,以实现可持续的未来。 $ co_2 $级别的水平正在稳步上升,尽管全世界的国家正在积极朝着2015年巴黎协定期间提出的可持续性目标迈进,但要实现可持续的全球运营模式,我们仍然还有很长的路要走。自2009年引入比特币以来,加密货币的普及伴随着温室气体排放和高电能消耗的趋势越来越多。流行的能源跟踪研究(例如,数字学家和剑桥比特币能源消耗指数(CBECI)估计的能耗范围为29.96 TWH至135.12 TWH和26.41 TWH和26.41 TWH至176.98 TWH,截至2021年7月,比特币的能源消耗范围为2021年7月,与国家相当于国家的能源消费和theede。数字工学家在碳足迹上的最新估计显示,截至2021年7月,比特币的排放量为64.18吨$ CO_2 $,接近希腊和阿曼的排放。这篇综述汇编了2018年至2021年的各种研究进行的估计。我们将这些加密货币与世界各国的能源消耗和碳足迹进行了比较,以及签证等集中交易方法。我们确定了与加密货币相关的问题,并提出了可以帮助减少其能量使用和碳足迹的解决方案。最后,我们介绍了有关加密货币网络的案例研究,即以太坊2.0和PI网络,讨论了它们如何解决我们确定的一些挑战。

There is an urgent need to control global warming caused by humans to achieve a sustainable future. $CO_2$ levels are rising steadily and while countries worldwide are actively moving toward the sustainability goals proposed during the Paris Agreement in 2015, we are still a long way to go from achieving a sustainable mode of global operation. The increased popularity of cryptocurrencies since the introduction of Bitcoin in 2009 has been accompanied by an increasing trend in greenhouse gas emissions and high electrical energy consumption. Popular energy tracking studies (e.g., Digiconomist and the Cambridge Bitcoin Energy Consumption Index (CBECI)) have estimated energy consumption ranges of 29.96 TWh to 135.12 TWh and 26.41 TWh to 176.98 TWh respectively for Bitcoin as of July 2021, which are equivalent to the energy consumption of countries such as Sweden and Thailand. The latest estimate by Digiconomist on carbon footprints shows a 64.18 Mt$CO_2$ emission by Bitcoin as of July 2021, close to the emissions by Greece and Oman. This review compiles estimates made by various studies from 2018 to 2021. We compare with the energy consumption and carbon footprints of these cryptocurrencies with countries around the world, and centralized transaction methods such as Visa. We identify the problems associated with cryptocurrencies, and propose solutions that can help reduce their energy usage and carbon footprints. Finally, we present case studies on cryptocurrency networks namely, Ethereum 2.0 and Pi Network, with a discussion on how they solve some of the challenges we have identified.

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