能源资源高效利用与应对气候变化研究

G. Lu
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摘要

高效利用能源是当前国家发展战略的重要内容之一。碳调峰和碳中和的提出对工业和智慧农业提出了新的要求。新兴产业和智慧农业振兴战略的实现离不开政策和金融的支持。然而,传统观念和金融服务面临着信息不对称等诸多痛点。对各种可回收资源落后处理、高能耗、高污染、高投资、低收益等技术路线、方法、投入产出、环境保护等问题进行新改革,对原有设备进行优化升级改进,使热效率提高20-50%,减少能源利用转化、综合利用、合理利用、冷排放技术的次数和环节;设计投入产出,资源利用,能源利用,生态化,二氧化碳可在常温下定向回收排放,为周围植物或植物工厂提供光合作用的养分;而种植过程中产生的甲烷温室气体可以作为补充燃料循环进入炉内,真正实现自然碳中和。它解决了垃圾处理困难的问题。产生的能量多级利用,节约能源20-50%,提高热效率,减少开采,减少燃烧,减少排放。燃烧后的二氧化碳和排放经过合理的设计,并直接提供给工厂或工厂。中和了植物工厂之后,内部形成了循环经济,带动了现代智慧农业的蓬勃发展。二氧化碳排放量将减少40-90%。无热污染,在室温下进行排放。激进规则,特别是传统技术应排放180-300°C的余热进行总热回收,并将其转化为冷排放,效率为76%,正负差为176%,以冷替代热污染。气候变化在让大自然实现自然平衡和中性方面发挥着巨大作用
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient Utilization and Response of Energy Resources Climate Change Research
The efficient utilization of energy resources is one of the most important national development strategies at present. The proposal of carbon peaking and carbon neutrality has put forward new requirements for industry and smart agriculture. The realization of the revitalization strategy of emerging industries and smart agriculture is inseparable from the support of policies and finance. However, traditional concepts and financial services face many pain points such as information asymmetry. Carry out new reforms on technical routes, methods, input and output, and environmental protection issues such as backward treatment of various recyclable resources, high energy consumption, high pollution, high investment and low income, and optimize, upgrade and improve the original equipment to increase thermal efficiency by 20-50%, reduce the number of times and links of energy utilization and conversion, comprehensive utilization, rational utilization, cold discharge technology, recover all the waste heat that should be discharged, reduce carbon dioxide emissions by 20-50%, and increase the output income several times, tailor-made Design input and output, resource utilization, energy utilization, ecologicalization, carbon dioxide can be directionally recycled under normal temperature emissions to provide surrounding plants or plant factories as nutrients for photosynthesis, and methane greenhouse gas generated during planting can be recycled into the furnace as a supplementary fuel, Truly achieve natural carbon neutrality in nature. It solves the problem of difficult waste disposal. The generated energy is used in multiple stages, saving 20-50% of energy, improving thermal efficiency, reducing mining, reducing combustion, and reducing emissions. The carbon dioxide after combustion and emissions are designed with reasonable design and are directed to provide plants or plants. After the neutralization of the plant factory, an internal circular economy has been formed, which has driven the vigorous development of modern smart agriculture. Carbon dioxide emissions will be reduced by 40-90%. There is no thermal pollution, and the emission is carried out at room temperature. Radical rule, especially the traditional technology should discharge waste heat of 180-300 °C for total heat recovery and convert it into cold discharge with an efficiency of 76%, the difference between positive and negative is 176%, and heat pollution is replaced by cold. Climate change plays a huge role in allowing nature to achieve natural balance and neutrality
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