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改性莴笋叶渣净化空气中甲醛
引用本文:陈莉, 徐国聪, 荆佩欣, 耿梦梦, 段莎莎, 崔清清, 周丽. 改性莴笋叶渣净化空气中甲醛[J]. 环境工程学报, 2015, 9(6): 2941-2946. doi: 10.12030/j.cjee.20150666
作者姓名:陈莉  徐国聪  荆佩欣  耿梦梦  段莎莎  崔清清  周丽
作者单位:1.运城学院生命科学系, 运城 044000; 2.山西运城市康杰中学, 运城 044000
基金项目:山西省教育厅科技创新项目(2013154) 运城学院院级产学研项目(CY-2013004)
摘    要:通过对莴笋叶2种处理吸附甲醛,得出简便高效的碱热烫处理,并采用二次正交旋转回归组合对其优化,得出煮沸时间25 min、水浴温度80℃、水浴时间2.5 h,莴笋叶渣对甲醛吸附率可达37.05%,实测值36.4%,二者吻合.通过与活性炭、硅藻纯吸附效果比较,优化处理莴笋叶渣与硅藻纯吸附效果相当,均优于活性炭.电镜观测知优化莴笋叶渣与活性炭、硅藻纯均具粗糙、皱褶、疏松结构,傅里叶红外光谱分析出—C=C—基团在甲醛吸附中起主要作用.

关 键 词:甲醛   碱热烫   莴笋叶   扫描电镜   傅里叶红外光谱
收稿时间:2014-06-17

Indoor purification of formaldehyde by optimized lettuce leaf
Chen Li, Xu Guocong, Jing Peixin, Geng Mengmeng, Duan Shasha, Cui Qingqing, Zhou Li. Indoor purification of formaldehyde by optimized lettuce leaf[J]. Chinese Journal of Environmental Engineering, 2015, 9(6): 2941-2946. doi: 10.12030/j.cjee.20150666
Authors:Chen Li  Xu Guocong  Jing Peixin  Geng Mengmeng  Duan Shasha  Cui Qingqing  Zhou Li
Affiliation:1.Department of Life Science, Yuncheng University, Yuncheng 044000, China; 2.Kangjie High School, Yuncheng 044000, China
Abstract:The most convenient and efficient method is alkali blanching in the study on comparisons of adsorption capacity of formaldehyde by lettuce leaf treated with two different means. Under conditions of boiling time of 25 min, water bath temperature of 80℃, water bath time of 2.5 h, the adsorption rate of formaldehyde by lettuce leaf reached 37.05% through further optimization binding the quadratic regression orthogonal rotation combination, the measured value was 36.4%. Compared with activated carbon, diatom plain and lettuce leaf adsorption effect, the optimized lettuce leaf and diatom plain had equivalent adsorption capacity, both of them were better than activated carbon. The optimized lettuce leaf, activated carbon and diatom plain altogether shared a common structure which was characterized with rough, winkle and loose by SEM. The group called C=C is identified as the mainly functional element in adsorption activity by the FTIR analysis.
Keywords:formaldehyde  lettuce leaf  alkali blanching  SEM  FTIR
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