利用农业废弃物中的活性炭固碳-废竹

E. Ayodele, Victoria Ezeagwula, Precious Igbokwubiri
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引用次数: 0

摘要

竹子是世界上热带雨林中生长最快的树木之一,它们有各种用途,从建筑到用于石油和天然气胶结的飞灰产生,到开发活性炭是竹子的最新用途之一。本文主要介绍了竹材活性炭在碳捕获和固碳方面的研究进展。正如可持续发展目标12和目标13所暗示的那样,改善空气质量的需求变得势在必行。主要的温室气体之一是二氧化碳,占环境中温室气体的80%以上。在21世纪,消除温室气体而不向环境中增加另一种污染物是备受追捧的。随着脚手架和其他支撑系统在建筑行业的出现,竹子大多被视为农业废物。在本研究工作中,我们考虑了一种替代方案,即利用竹子产生活性的、多孔的、高表面积的碳,用于从各种二氧化碳排放源大气中提取二氧化碳,并用于水的净化,而不是在当地社区燃烧竹子或将其用于烹饪,从而产生二氧化碳和飞灰。本文主要研究有效吸附CO2的活性炭的质量检测。测量孔隙率、孔隙体积、体积和BET表面积。活性炭的孔隙率为27%,BET表面积为1260m²/g。固定碳为11.7%,挥发性为73%,灰分为1.7%。
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Carbon Dioxide Sequestration Using Activated Carbon From Agro Waste-Waste Bamboo
Bamboo trees are one of the fastest growing trees in tropical rainforests around the world, they have various uses ranging from construction to fly ash generation used in oil and gas cementing, to development of activated carbon which is one of the latest uses of bamboo trees. This paper focuses on development of activated carbon from bamboo trees for carbon capture and sequestration. The need for improved air quality becomes imperative as the SDG Goal 12 and SDG Goal13 implies. One of the major greenhouse gases is CO2 which accounts for over 80% of greenhouse gases in the environment. Eliminating the greenhouse gases without adding another pollutant to the environment is highly sought after in the 21st century. Bamboo trees are mostly seen as agricultural waste with the advent of scaffolding and other support systems being in the construction industry. Instead of burning bamboo trees or using them for cooking in the local communities which in turn generates CO2 and fly ash, an alternative was considered in this research work, which is the usage of bamboo trees to generate activated, moderately porous and high surface area carbon for extracting CO2 from various CO2 discharge sources atmosphere and for water purification. This paper focuses on the quality testing of activated carbon that can effectively absorb CO2. The porosity, pore volume, bulk volume, and BET surface area were measured. The porosity of the activated carbon is 27%, BET surface area as 1260m²/g. Fixed carbon was 11.7%, Volatility 73%, ash content 1.7%.
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