Low carbon integrated vehicles and buildings

Kevin Kendall
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Abstract

This paper defines vehicles and buildings as main sources of United Kingdom (UK) carbon dioxide (CO2) and seeks to cut such emissions using green hydrogen made from combined wind and solar energy. Combustion vehicles powered by fossil petroleum emit near half of UK climate-warming CO2 while buildings heated by natural gas provide a third. First, current UK grid problems are defined: Electricity, gas and petroleum grids. Refueling green vehicles has been a particular problem. Then experiments on the private wire community of Keele University show how green hydrogen could integrate both green vehicles and buildings. Next, the model supply chain is planned and tested. Finally, experiments and calculations are outlined, analyzing the optimum system design criteria proposed. We conclude that economic green hydrogen can displace petroleum in vehicles, while powering buildings instead of natural gas. Also, the prospect in 2024 is that profits can be made all along the green hydrogen supply chain, such that new businesses involved in local private clean communities can cost less than the National Grid monopoly and other dominant fossil energy companies.
低碳综合车辆和建筑
本文将车辆和建筑物定义为英国二氧化碳(CO2)的主要来源,并试图利用风能和太阳能联合制成的绿色氢气来减少此类排放。以化石石油为动力的汽车排放的二氧化碳接近英国气候变暖排放量的一半,而以天然气取暖的建筑物排放的二氧化碳则占三分之一。首先,对英国当前的电网问题进行定义:电网、天然气网和石油网。为绿色车辆加油一直是个特殊问题。然后在基尔大学(Keele University)的私人电线社区进行实验,展示绿色氢气如何将绿色汽车和建筑结合起来。接下来,对供应链模型进行规划和测试。最后,概述了实验和计算,分析了提出的最佳系统设计标准。我们的结论是,经济的绿色氢能可以在汽车中取代石油,同时为建筑物提供动力,而不是天然气。此外,2024 年的前景是,绿色氢气供应链上的所有环节都能获利,因此,参与当地私营清洁社区的新企业的成本可以低于国家电网垄断企业和其他占主导地位的化石能源公司。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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