赤泥
拜耳法
铝土矿
原材料
环境科学
废物管理
温室气体
吸附
全球变暖
过程(计算)
化学
全球变暖潜力
工艺工程
铝酸钠
氢氧化钠
生化工程
纳米技术
聚合物
估价
气候变化
作者
Suman,Alok Tripathy,Alok Tripathy
摘要
ABSTRACT The rise in greenhouse gas emissions, mainly anthropogenic CO 2 , is causing global warming that leads to climate change and has become a matter of global concern. This review investigates the use of red mud in CO 2 capture and highlights recent advancements over the past 25 years. The bauxite ore is digested with sodium hydroxide to form sodium aluminate using Bayer's process, leaving behind a highly alkaline residue known as red mud. This residue is a well‐suited feedstock material for CO 2 capture processes and its subsequent neutralization. This article discusses the fundamentals of red mud and various pathways for carbonation. Then, the chemical and mineralogical components of red mud that contribute to the adsorption of CO 2 are investigated. It then focuses on research progress and provides an up‐to‐date review of recent advances in CO 2 capture using red mud. This article reviews the mechanism and critically evaluates the process variables that influence the adsorption of CO 2 in red mud. It also provides insight into recent activation methods to improve its capacity. It then discusses the associated post‐carbonation challenges with red mud, concluding that further research is needed in reshaping red mud's perception from industrial waste to a valuable feedstock material for key carbon‐emitting industries. This review serves as a comprehensive reference in the emerging area of CO 2 capture using red mud and addresses the distinct gap of process variables, mechanisms, and post‐carbonation challenges. The ultimate aim is to resolve the CO 2 emitted into the atmosphere and its simultaneous neutralization.
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