首页> 外文期刊>The Korean journal of chemical engineering >Optimal synthesis of carboxymethylcellulose-based composite superabsorbents
【24h】

Optimal synthesis of carboxymethylcellulose-based composite superabsorbents

机译:基于羧甲基纤维素的复合超吸收剂的最佳合成

获取原文
获取原文并翻译 | 示例
           

摘要

As a liquid fertilizer slow-release material, carboxymethylcellulose-based superabsorbents having biodegradable properties have recently attracted attention. To improve the gel properties of this superabsorbent, which has relatively low mechanical strength, additive materials such as graphite oxide (GO), reduced graphene oxide (rGO), activated carbon, and bentonite were used in this work. While preparing composite superabsorbents using electron beam (EB) radiation, effects of the type and composition of additives, absorbed dose of EB, and type of radiation on the properties of the prepared materials were investigated. In addition, it was attempted to find the optimum synthesis conditions for the preparation of composite superabsorbents. Gel strength and gel fraction were measured to determine the intermolecular binding force of the prepared composite superabsorbents. Swelling tests were carried out in distilled water, urea aqueous solution and NaCl aqueous solution, respectively, to determine the equilibrium swelling ratio and swelling rate in various environments. To examine the applicability of the prepared superabsorents in the field, elution tests were performed using urea as a simulated nitrogen fertilizer. Plant growth experiments were also carried out with spinach and crown daisy to confirm the applicability of the prepared superabsorbents for agricultural purpose. Super-absorbents with GO and rGO showed high gel fraction and high mechanical strength due to the high intermolecular binding force between polymer gel and carbon additive material. In the composite superabsorbents with GO and rGO, gel strength and gel fraction increased with the increase of the amount of inorganic additives, but the equilibrium swelling ratio decreased. Superabsorbents prepared by irradiation of EB at 10 kGy exhibited the highest equilibrium swelling ratio, and the equilibrium swelling ratio decreased as the absorbed dose increased. Furthermore, composite superabsorbents prepared by EB irradiation showed higher gel strength than those prepared by gamma-ray irradiation. Plant growth was better in the experimental group containing the superabsorbent and the liquid fertilizer, indicating that the prepared composite superabsorbent could function as a slow-release liquid fertilizer.
机译:作为液体肥料缓释材料,羧甲​​基纤维素的基于羧甲基纤维素的超吸收剂最近引起了可生物降解性质的关注。为了改善该超低机械强度的凝胶性质,在该工作中使用具有相对低的机械强度,添加剂材料如石墨氧化物(GO),还原的氧化碳(RGO),活性炭和膨润土。在使用电子束(EB)辐射的制备复合超吸收剂的同时,研究了添加剂类型和组成,EB的类型和组成以及对制备材料的性质的辐射的效果。此外,试图找到用于制备复合超吸收剂的最佳合成条件。测量凝胶强度和凝胶分数以确定制备的复合超吸收性的分子结合力。溶胀试验分别在蒸馏水,尿素水溶液和NaCl水溶液中进行,以确定各种环境中的平衡溶胀比和溶胀率。为了检查制备的超吸盘在现场的适用性,使用尿素作为模拟氮肥进行洗脱试验。植物生长实验也用菠菜和皇冠菊花进行,以证实制备的超吸收剂用于农业目的的适用性。由于聚合物凝胶和碳添加剂材料之间的高分子结合力,具有Go和Rgo的超高凝胶分数和高机械强度。在复合超吸收剂与RGO和RGO,凝胶强度和凝胶级分随无机添加剂量的增加而增加,但平衡溶胀比率降低。通过10kGy照射EB的辐射制备的超吸收剂表现出最高的平衡溶胀比,随着吸收剂量的增加,平衡溶胀比降低。此外,通过EB辐射制备的复合超吸收性表现出比γ射线照射制备的凝胶强度较高。含有超吸收剂和液体肥料的实验组植物生长更好,表明制备的复合超吸收剂可以用作缓释液体肥料。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号