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物理活化白酒糟制备多孔炭材料

李强 汪印 余剑 易彬 杨俊 许光文

新型炭材料2012,Vol.27Issue(6):440-447,8.
新型炭材料2012,Vol.27Issue(6):440-447,8.

物理活化白酒糟制备多孔炭材料

Preparation and characterization of activated carbons from spirit lees by physical activation

李强 1汪印 2余剑 1易彬 1杨俊 3许光文3

作者信息

  • 1. 中国科学院过程工程研究所多相复杂系统国家重点实验室,北京100190
  • 2. 中海油新能源投资有限责任公司,北京100016
  • 3. 泸州老窖股份有限公司,四川泸州646000
  • 折叠

摘要

Abstract

Spirit lees was carbonized and then activated by steam and CO2 to prepare activated carbons. The effect of carbonization temperature, type and amount of activator, activation temperature and time on the pore structure, and the adsorption of methylene blue and iodine were investigated. The gas products during activation were analyzed online to reveal the activation mechanism. Results showed that steam activation was rather more active than CO2. Regardless of the activation agent, a low carbonization temperature of 450 ℃ and a medium activation temperature of 800 ℃ favored the iodine adsorption. For the methylene blue adsorption, the same low carbonization temperature of 450 ℃, however, medium/high activation temperatures (850 to 900 ℃) are favorable. . The best activated carbon was prepared with a steam activator using a carbonization temperature of 4501 and an activation temperature of 800 ℃., which had a surface area and pore volume of 371.6 m2/g and 0.34 cm3/g, and iodine and methylene blue adsorption capacities of 580 mg/g and 90 mg/g respectively. O-and H-containing functional groups in the carbonized spirit lees reacted with the activation regent (steam or CO2) to form the initial pores, then the accessible active sites reacted with the activation regent to generate secondary pores.

关键词

白酒糟/多孔炭/物理活化/工业生物质/过程残渣

Key words

Spirit lees/ Porous carbon/ Physical activation/ Industrial biomass/ Process residue

分类

化学化工

引用本文复制引用

李强,汪印,余剑,易彬,杨俊,许光文..物理活化白酒糟制备多孔炭材料[J].新型炭材料,2012,27(6):440-447,8.

基金项目

国家高技术发展计划("863"计划,2009AA02Z209),国家自然科学基金(21006114,21006110和21106156). ("863"计划,2009AA02Z209)

新型炭材料

OA北大核心CSCDCSTPCDSCI

1007-8827

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