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玉米淀粉/丙烯酰胺接枝型高吸水性树脂的合成 被引量:10
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作者 王直刚 《化学工程师》 CAS 2004年第8期12-14,共3页
本文以硝酸铈铵为引发剂 ,研究了单体浓度、引发剂浓度、反应温度和反应时间等因素对玉米淀粉与丙烯酰胺接枝共聚制备高吸水性树脂的影响 ,通过反应条件和正交试验 ,确定了最适宜的反应条件和工艺路线 ,制备出了吸水率在 4 5 0~ 70 0g&... 本文以硝酸铈铵为引发剂 ,研究了单体浓度、引发剂浓度、反应温度和反应时间等因素对玉米淀粉与丙烯酰胺接枝共聚制备高吸水性树脂的影响 ,通过反应条件和正交试验 ,确定了最适宜的反应条件和工艺路线 ,制备出了吸水率在 4 5 0~ 70 0g·g-1的玉米淀粉接枝型高吸水性树脂。 展开更多
关键词 硝酸铈铵 引发剂 接枝共聚 正交试验 玉米淀粉/丙烯酰胺接枝型高吸水性树脂 合成
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《世界环境》 2003年第5期83-90,共8页
联合国拟在网上公布海洋哺乳动物地图 联合国环境规划署官员8月2日宣布,联合国计划在因特网上公布一个标明全球鲸、海豹等海洋哺乳动物位置的地图,以敦促各国政府与公司加强对这些地区的保护。
关键词 环境管理 海洋哺乳动物 地图 SARS病毒 转基因食品法 燃料电池公交车 家具环境污染 绿色消费理念 玉米树脂 污水处理厂 自来水 造纸企业 噪声控制
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A Comparative Study of the Cellular Microscopic Characteristics and Mechanisms of Maize Seedling Damage from Superabsorbent Polymers 被引量:7
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作者 CHEN Xian HUANG Lei +2 位作者 MAO Xiaoyun LIAO Zongwen Zhenli HE 《Pedosphere》 SCIE CAS CSCD 2017年第2期274-282,共9页
Superabsorbent polymers(SAPs) as soil moisture conditioners have been increasingly used in agriculture, but conflicting results were reported regarding the effects of SAPs on crop growth. In this study, both laborator... Superabsorbent polymers(SAPs) as soil moisture conditioners have been increasingly used in agriculture, but conflicting results were reported regarding the effects of SAPs on crop growth. In this study, both laboratory cultivation and analysis were conducted to investigate the effects of different SAPs on the growth and physiology of crops under water-saving agricultural practices. Maize(Zea mays L.) seedlings were cultivated using distilled water or three different SAP hydrogels, sodium polyacrylate(SP), potassium polyacrylate(PP), and sodium polyacrylate embedded with phosphate rock powder(SPP), as growth media. Growth characteristics of the model plant and damage were assessed using scanning electron microscopy(SEM) and transmission electron microscopy(TEM). The results showed that both the SP and PP treatments had pronounced negative effect on the hydrogels of growth of maize seedlings. The SPP treatment appeared to facilitate the stem-leaf growth and had no obvious adverse effect on root growth. All the three hydrogel treatments caused varying degrees of damage to the organizational structure and cellular morphology of the roots, with the SP and PP treatments causing the most severe damage; the membrane system of root cells was damaged by both SP and PP treatments. An excessive accumulation of sodium and reduction of calcium occurred in the roots may be responsible for the observed damage to the cell membrane system, which, in turn, may have promoted the wilting of the cells. 展开更多
关键词 damage mechanism nutrient concentration root tip cell SAP hydrogels soil moisture conditioners water-savingagriculture
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