能源中性和社会包容的大气CO2提取

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引用次数: 0

摘要

本文概述了一项对抗温室效应过热的方案,并辅之以减少二氧化碳排放的措施,即从源头和大气中提取二氧化碳。与许多类似的系统一样,气体被氢氧化钠(NaOH)吸收,但该过程由天然风能或太阳能泵提供动力,所得的Na2 CO3和NaHCO3被销售,新鲜的NaOH主要由太阳能海水淡化厂的废盐水电渗析产生。该计划可以在两个主要规模上运行:国内规模和工业规模。前者需要融入社会结构,就像英国的废物回收一样,低二氧化碳提取吞吐量需要通过部署数百万个国内装置来弥补。第二个规模的例子是安装在有利海拔的二氧化碳捕集器,特别是在世界上运行的35万个主要风力涡轮机中的一些上。大气脱碳的补充将是在其源头捕获二氧化碳,无论是主要的,如发电站,还是较小但数量众多的,如化石燃料驱动的车辆。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy-neutral and socially inclusive abstraction of atmospheric CO2
A scheme is outlined for combating the overheated greenhouse effect by complementing measures to reduce CO2 generation by extracting CO2 at source and from the atmosphere. The gas is absorbed in sodium hydroxide (NaOH), as in many similar systems, but the process is powered by natural wind or solar pumps, the resulting Na2 CO3 and NaHCO3 are marketed, and fresh NaOH is generated mainly by electrodialysis of waste brine from solar desalination plants. The scheme could run at two main scales: domestic and industrial. The former requires integration into the social fabric, as has been waste recycling in the UK, the low CO2 extraction throughput to be compensated by the deployment of many millions of domestic units. The second scale is exemplified by CO2 traps mounted at favourable elevation, notably on some of the 350,000 major wind turbines operating worldwide. Atmospheric decarbonation would be complemented by CO2 trapping at its source, whether major, such as power stations, or minor but numerous, such as vehicles powered by fossil fuels.
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