首页|复合型酸气吸附剂的制备及性能研究

复合型酸气吸附剂的制备及性能研究

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以高效处置矿山、地质、冶金等行业实验室和分析室在生产中产生的酸性有害气体为目的,以天然黏土矿物、碱金属矿物和无机助剂为原料,通过配方设计、挤出成型制备了系列复合型酸气吸附剂,并采用酸溶液浸泡实验和固定床动态吸附实验研究了其吸附性能。结果表明,复合型酸气吸附剂对HC1、HNO3的浸泡吸附量分别为0。50~0。80 g/g和0。55~0。95 g/g,对挥发性HC1、HNO3酸气吸收4h后的Cl-、NO3-吸附量分别大于35和40 mg/g,优于活性炭和市售同类型产品。复合型酸气吸附剂具有均匀微孔隙,其微观结构和化学组成更有利于挥发性酸气的扩散、捕捉和反应等,对Cl-、NO3-的吸附过程符合准二级动力学模型,主要通过化学吸附、吸收作用并伴有物理吸附实现对挥发性HC1、HNo3酸气的去除,具有推广价值。
Preparation and Properties of Composite Acid Gas Adsorbents
The study aimed at the efficient disposal of acidic harmful gases generated in the production of laboratories and analysis rooms in mining,geology,metallurgy and other industries.Natural clay minerals,alkali metal minerals and inorganic additives were took as raw materials,a series of composite acid gas adsorbents were prepared through formula design and extrusion molding,and their adsorption performances were studied by acid solution immersion experiment and fixed bed dynamic adsorption experiment.The results show that the soaking adsorption amounts of composite acid gas adsorbent on HC1 and HNO3 are 0.50~0.80 g/g and 0.55~0.95 g/g,and the adsorption amounts of Cl-and NO3-on volatile HCl and HNO3 absorbed for 4 h are more than 35 and 40 mg/g,respectively,which are much higher than that of activated carbon and the same type of products on the market.The composite acid gas adsorbent has uniform microporosity,and its microstructure and chemical composition are more conducive to the diffusion,capture and reaction of volatile acid gas.The adsorption process on Cl-and NO3-is in accordance with the pseudo-second order kinetic model,which indicates it is mainly through chemical adsorption and absorption,and physical adsorption to remove volatile HC1,HNO3 acid gas.The composite acid gas adsorbent has certain promotional value.

volatile acid gascomposite adsorbentclay mineralalkali metal mineralHC1HNO3

仇秀梅、刘叶冬阳、蔡浩、龚关、梁雅琪

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湖北省地质实验测试中心,自然资源部稀土稀有稀散矿产重点实验室,武汉 430034

湖北省地质局,资源与生态环境地质湖北省重点实验室,武汉 430034

挥发性酸气 复合型吸附剂 黏土矿物 碱金属矿物 HCl HNO3

2024

硅酸盐通报
中国硅酸盐学会 中材人工晶体研究院

硅酸盐通报

CSTPCD北大核心
影响因子:0.698
ISSN:1001-1625
年,卷(期):2024.43(12)