Department of Chemistry, Faculty of Science, Beni-Suef University, Egypt.
Department of Chemistry, Faculty of Science, Cairo University, Egypt.
Carbohydr Polym. 2022 Sep 1;291:119555. doi: 10.1016/j.carbpol.2022.119555. Epub 2022 May 2.
Hydrogels could be employed in agriculture for efficient management of water and controlled-release urea (CRU). This study aimed to synthesize a superabsorbent hydrogel for CRU by cross-linking sodium alginate (Alg) and N-(2-hydroxy-3-trimethyl ammonium) propyl chitosan chloride (HTACC). The hydrogel structure was characterized by various techniques, and the urea loading and releasing behaviors of the synthetic hydrogels were investigated. The results revealed that the maximum urea loading ranged between 107 and 200%, and that the urea loading kinetics fitted with Langmuir model followed by the Freundlich model. The urea release behavior reached equilibrium after 30 days and urea releasing kinetics fitted with the zero-order and Higuchi models. The synthesized hydrogels exerted significant antimicrobial activities and molecular docking showed their binding affinity toward glucosamine-6-phosphate synthase, β-lactamase II, TraR binding site and nucleoside diphosphate kinase. In conclusion, these Alg/HTACC hydrogels showed swelling, urea release, and antimicrobial properties suitable to meet the plant requirements and produce economic and environmental benefits.
水凝胶可用于农业领域,以实现高效的水资源管理和控释尿素(CRU)。本研究旨在通过交联海藻酸钠(Alg)和 N-(2-羟基-3-三甲基铵基)丙基壳聚糖盐酸盐(HTACC)来合成一种用于 CRU 的高吸水性水凝胶。通过各种技术对水凝胶结构进行了表征,并研究了合成水凝胶的尿素负载和释放行为。结果表明,最大尿素负载范围在 107%至 200%之间,尿素负载动力学符合 Langmuir 模型,随后符合 Freundlich 模型。30 天后,尿素释放行为达到平衡,尿素释放动力学符合零级和 Higuchi 模型。合成的水凝胶表现出显著的抗菌活性,分子对接表明它们对葡萄糖胺-6-磷酸合酶、β-内酰胺酶 II、TraR 结合位点和核苷二磷酸激酶具有结合亲和力。总之,这些 Alg/HTACC 水凝胶表现出的溶胀、尿素释放和抗菌性能可满足植物的需求,并带来经济和环境效益。