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单体链结构对羟乙基纤维素基高吸水性树脂性能的影响及对水分亏缺胁迫下鹰嘴豆生长的改善。

Effect of chain structures of monomer on hydroxyethyl cellulose-based superabsorbent properties and improvement of chickpeas plant growth of water deficit-stressed.

机构信息

Department of Chemistry, University of Isfahan, Isfahan 81746-73441, Iran.

Department of Chemistry, University of Isfahan, Isfahan 81746-73441, Iran.

出版信息

Int J Biol Macromol. 2024 Jun;269(Pt 2):131906. doi: 10.1016/j.ijbiomac.2024.131906. Epub 2024 Apr 26.

Abstract

The aim of this research was evaluation of the influence of distance between zwitterionic monomer ions on the performance of superabsorbents. For this purpose, two zwitterionic monomers 4-(3-aminopropyl) amino-4-oxo-2-butenoic acid (APOB) and 4-(6-aminohexyl) amino-4-oxo-2-butenoic acid (AHOB) were prepared and applied for synthesis of two new superabsorbents through graft copolymerization onto hydroxyethyl cellulose (HEC) in the presence of acrylic acid (AA). In synthesis of superabsorbents factors such as the highest water absorbency capacity, absorbency rate, gel strength, and environmental problems should be resolved or improved. The results demonstrated that the water absorbency capacity and rate parameters (τ) of HEC-g-p(AA-co-APOB) and HEC-g-p(AA-co-AHOB) in distilled water were 986.62, 664.38 g/g, and 98.04, 140.84 min, respectively. The biodegradability of HEC-g-p(AA-co-APOB) was approximately 4 times more than HEC-g-p(AA-co-AHOB). However, based on the rheological analyses (G'/G″) HEC-g-p(AA-co-AHOB) was stronger than the other. Additionally, studies of water retention on soil containing HEC-g-p(AA-co-AHOB) superabsorbent (soil with 0.25 wt% material) showed that the after 30 days has ≤5 % water while soil in the absence of superabsorbent after 10 days completely dried. Studies of the growth of plants in soil demonstrated in the presence of HEC-g-p(AA-co-AHOB) the average length of shoots was 36 cm while without superabsorbent were 25 cm.

摘要

本研究旨在评估两性离子单体离子之间的距离对超吸收剂性能的影响。为此,合成了两种两性离子单体 4-(3-氨丙基)氨基-4-氧代-2-丁烯酸(APOB)和 4-(6-氨基己基)氨基-4-氧代-2-丁烯酸(AHOB),并将其应用于在丙烯酸(AA)存在下通过接枝共聚到羟乙基纤维素(HEC)上合成两种新型超吸收剂。在超吸收剂的合成中,应解决或改善最高吸水率、吸收速率、凝胶强度和环境问题等因素。结果表明,在蒸馏水中,HEC-g-p(AA-co-APOB)和 HEC-g-p(AA-co-AHOB)的吸水率和速率参数(τ)分别为 986.62、664.38 g/g 和 98.04、140.84 min。HEC-g-p(AA-co-APOB)的生物降解性大约是 HEC-g-p(AA-co-AHOB)的 4 倍。然而,根据流变学分析(G'/G″),HEC-g-p(AA-co-AHOB)比其他的更强。此外,对含有 HEC-g-p(AA-co-AHOB)超吸收剂的土壤(土壤中含有 0.25wt%材料)的保水性能研究表明,30 天后的含水量≤5%,而不含超吸收剂的土壤在 10 天后完全干燥。在土壤中种植植物的研究表明,在含有 HEC-g-p(AA-co-AHOB)的情况下,芽的平均长度为 36cm,而没有超吸收剂的情况下为 25cm。

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