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酸-高温改性海泡石对单宁酸的吸附性能及其表面化学特性研究 被引量:7
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作者 宿程远 李伟光 刘兴哲 《西安建筑科技大学学报(自然科学版)》 CSCD 北大核心 2012年第2期248-252,共5页
以单宁酸为目标污染物,分析了溶液初始pH、吸附时间以及吸附剂投加量等因素对酸-高温改性海泡石吸附单宁酸的影响,并通过表面电荷、X射线衍射与红外光谱的测定分析,探讨了天然海泡石、酸-高温改性海泡石以及改性海泡石吸附单宁酸后的表... 以单宁酸为目标污染物,分析了溶液初始pH、吸附时间以及吸附剂投加量等因素对酸-高温改性海泡石吸附单宁酸的影响,并通过表面电荷、X射线衍射与红外光谱的测定分析,探讨了天然海泡石、酸-高温改性海泡石以及改性海泡石吸附单宁酸后的表面化学特性.结果表明,溶液初始pH=2增加到pH=10时,酸-高温改性海泡石对单宁酸的去除率由35.0%上升到74.8%,吸附量由7.0mg/g上升到15.0mg/g.随着吸附剂投加量的增加,单宁酸的去除率呈上升趋势.当吸附时间为6h时,去除率可达71.0%,吸附量为14.2mg/g,而后去除率与吸附量基本保持不变.海泡石与酸-高温改性海泡石电荷零点所对应的pHZPC分别为7.32±0.1和6.44±0.1,表明酸-高温改性增加了海泡石表面的酸度,形成了更多的表面吸附位;同时酸-高温改性提高了海泡石的纯度和吸附性能,改性海泡石吸附单宁酸后,其红外图谱显示在2 975、2 919和1 629cm-1处出现了吸收峰,表明改性海泡石对单宁酸有较好的吸附作用. 展开更多
关键词 海泡石 酸-高温改性 单宁 吸附
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Modification of CaO-based sorbents prepared from calcium acetate for CO_2 capture at high temperature 被引量:8
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作者 Xiaotong Liu Junfei Shi +2 位作者 Liu He Xiaoxun Ma Shisen Xu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第5期572-580,共9页
CaO-based sorbent is considered to be a promising candidate for capturing CO_2 at high temperature. However,the adsorption capacity of CaO decreases sharply with the increase of the carbonation/calcination cycles. In ... CaO-based sorbent is considered to be a promising candidate for capturing CO_2 at high temperature. However,the adsorption capacity of CaO decreases sharply with the increase of the carbonation/calcination cycles. In this study, CaO was derived from calcium acetate(CaAc_2), which was doped with different elements(Mg, Al,Ce, Zr and La) to improve the cyclic stability. The carbonation conversion and cyclic stability of sorbents were tested by thermogravimetric analyzer(TGA). The sorbents were characterized by N_2 isothermal adsorption measurements, scanning electron microscopy(SEM) and X-ray diffraction(XRD). The results showed that the cyclic stabilities of all modified sorbents were improved by doping elements, while the carbonation conversions of sorbents in the 1st cycle were not increased by doping different elements. After 22 cycles, the cyclic stabilities of CaO–Al, CaO–Ce and CaO–La were above 96.2%. After 110 cycles, the cyclic stability of CaO–Al was still as high as 87.1%. Furthermore, the carbonation conversion was closely related to the critical time and specific surface area. 展开更多
关键词 CO2 capture CaO-based sorbent Carbonation conversion Cyclic stability Critical time Mesoporous structure
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