Preparation of pH/temperature-responsive semi-IPN hydrogels based on sodium alginate and humic acid as slow-release and water-retention fertilizers

被引:0
作者
Bingyan Hua
Hongliang Wei
Chunwang Hu
Yaqi Zhang
Shuai Yang
Gang Wang
Tao Guo
Jingjing Li
机构
[1] Henan University of Technology,School of Chemistry and Chemical Engineering
来源
Polymer Bulletin | 2024年 / 81卷
关键词
Semi-IPN hydrogel; Fertilizer; Slow-release; Responsiveness; Water retention;
D O I
暂无
中图分类号
学科分类号
摘要
Herein, a semi-interpenetrating network (semi-IPN) hydrogel (SH/PNA) was prepared by simple free radical polymerization using N-isopropylacrylamide and 2-acrylamide-2-methylpropanesulfonic acid as monomers, poly(ethylene glycol) dimethacrylate as a crosslinking agent, and sodium alginate and humic acid as filled biomolecules. Fourier transform infrared spectroscopy, scanning electron microscopy, X-ray diffraction, and rheometer were used to characterize the structure and properties of the samples. The effect of feeding ratios on the gel mass fraction and swelling properties of the SH/PNA hydrogel was explored to optimize its preparation conditions. The swelling behavior under different pH and temperatures was investigated. The experimental result showed that the SH/PNA hydrogel had excellent water absorption capacity and pH/temperature dual responsiveness. Moreover, SH/PNA hydrogel was used as a carrier of urea to prepare slow-release and water-retention fertilizer by in situ loading method, and slow-release properties of urea in water and soil were measured. Taking into account its good ability for controlled release and water retention, the WSRF was expected to be a promising low-cost, environmentally friendly fertilizer that can be used in agriculture and horticulture.
引用
收藏
页码:4175 / 4198
页数:23
相关论文
共 238 条
  • [1] Sim DHH(2021)Encapsulated biochar-based sustained release fertilizer for precision agriculture: a review J Clean Prod 303 127018-616
  • [2] Tan IAW(2020)Formulation of a slow-release fertilizer by mechanical activation of smectite/glauconite and urea mixtures Appl Clay Sci 196 105775-800
  • [3] Lim LLP(2021)Development of polymer composites and encapsulation technology for slow-release fertilizers Rev Chem Eng 38 603-197
  • [4] Hameed BH(2019)A slow release brown coal-urea fertiliser reduced gaseous N loss from soil and increased silver beet yield and N uptake Sci Total Environ 649 793-252
  • [5] Rudmin M(2021)Starch phosphate carbamate hydrogel based slow-release urea formulation with good water retentivity Int J Biol Macromol 190 189-10858
  • [6] Banerjee S(2021)Urea fertilizer with precisely regulable slow-release performance by complexing with random copolyester J Environ Chem Eng 9 105120-628
  • [7] Yakich T(2021)Biodegradable hydrogels of cassava starch-g-polyacrylic acid/natural rubber/polyvinyl alcohol as environmentally friendly and highly efficient coating material for slow-release urea fertilizers J Ind Eng Chem 101 237-372
  • [8] Abd El-Aziz ME(2017)Preparation and properties of a novel semi-IPN slow-release fertilizer with the function of water retention J Agric Food Chem 65 10851-15717
  • [9] Salama DM(2020)Degradable polyester/urea inclusion complex applied as a facile and environment-friendly strategy for slow-release fertilizer: performance and mechanism Chem Eng J 381 122704-256
  • [10] Morsi SMM(2020)Structures, properties and application of alginic acid: a review Int J Biol Macromol 162 618-340