生物高聚物
黄原胶
化学
生化工程
农业
可持续农业
高分子科学
化学工程
生物技术
材料科学
有机化学
聚合物
工程类
生物
流变学
复合材料
生态学
作者
Zhicheng Zheng,Zhaoju Sun,Mei Li,Jiyong Yang,Yike Yang,Hong Liang,Hongmei Xiang,Jiao Meng,Xiang Zhou,Liwei Liu,Zhibing Wu,Yang Song
标识
DOI:10.1016/j.ijbiomac.2024.136562
摘要
During the development of green agriculture and pesticide use, "reducing pesticides use and improving control efficiency" is imperative. To date, new pesticide formulations created by nanotechnology can be expected to overcome the difficulties that cannot be solved by the traditional pesticide processes and make pesticide formulations close to the needs of green agricultural production. As natural polysaccharides, Xanthan gum (XG) charactered by a repeated units and side chain of d-glucose, d-mannose, and d-glucuronic acid, and thereby having the unprecedented features in response to wide practice in various fields. This review introduces the properties of the natural polymer XG and its current status of application in agriculture, focusing on the pesticide adjuvant and preparation of novel pesticide and fertilizer delivery systems (such as core-shell and hydrogel), and combined with the applications in mulch film and soil engineering. Furthermore, the properties of Xantho-oligosaccharides suitable for agriculture were discussed. Finally, the potential of XG for the creation of nanopesticides and its future prospects are highlighted. Taken together, XG's excellent performance endows it with a wide range of applications in the agriculture field, and result in strong stimulating the sustainable development of agriculture and evolution of agricultural industry.
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