The Role of Nanotechnology for Energy Storage, Conservation and Post Combustion CO2 Capture in Industry: A Review

Meselu Eskezia Ayalew
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引用次数: 2

Abstract

Nanotechnology is referred to as the science of nanoscale which is objects that range in nanometers in size. The use of nanomaterials in energy conversion and storage represents an opportunity to improve the performance, density and ease of transportation in renewable resources. Energy is an unavoidable theme in contemporary society, ranging from basic daily life to superior science and technology. Over increasing energy demand and always deteriorating environmental issues, electricity has turn out to be bottleneck and is hindering the development of society. The use of nanotechnology to increase a suite of sustainable power manufacturing schemes is one of the most necessary scientific challenges of the 21st century. The challenge is to design, to synthesize, and to represent new useful nanomaterials with controllable sizes, shapes, and structures. And also now a day’s a serious interset is required to reduce the level of CO2 the use of advanced and environment friendly CO2 seize technologies. Carbon dioxide seize and storage (CCS) applied sciences can also play an necessary function in this direction. Nanotechnology is used to seize CO2 formore than a few industrial processes. This review is ordinarily centered on the role of nanotechnology in the electricity storage, conservation and post-combustion CO2 absorption process. The features of nanomaterials and nanoparticles have been studied in the current work.
纳米技术在能源储存、节能和燃烧后二氧化碳捕集中的作用综述
纳米技术指的是纳米尺度的科学,纳米尺度是指以纳米为尺度的物体。纳米材料在能量转换和储存方面的应用为提高可再生资源的性能、密度和运输便利性提供了机会。从基本的日常生活到先进的科学技术,能源都是当代社会不可回避的主题。在日益增长的能源需求和日益恶化的环境问题下,电力已经成为阻碍社会发展的瓶颈。利用纳米技术来增加一套可持续的电力制造方案是21世纪最必要的科学挑战之一。挑战在于设计、合成和展示具有可控尺寸、形状和结构的新型有用纳米材料。同时,现在需要有一个严肃的兴趣来减少二氧化碳的水平,使用先进的和环境友好的二氧化碳捕获技术。二氧化碳捕获与封存(CCS)应用科学也可以在这个方向上发挥必要的作用。纳米技术在许多工业过程中被用于捕获二氧化碳。这篇综述通常集中在纳米技术在电力储存、保护和燃烧后二氧化碳吸收过程中的作用。目前的工作主要是研究纳米材料和纳米颗粒的特性。
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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