农业科学与技术(英文版)
農業科學與技術(英文版)
농업과학여기술(영문판)
AGRICULTURAL SCIENCE & TECHNOLOGY
2008年
5期
8-12,18
,共6页
邵兵%邱舒%张文莉%倪良%邵怿%王超
邵兵%邱舒%張文莉%倪良%邵懌%王超
소병%구서%장문리%예량%소역%왕초
Polyvinyl alcohol%Hollow micrasphere%Emulsion chemical cross-linking%Urea%Sustained release effect
[Objective] The aim of this study was to discuss the optimizing preparation conditions of polyvinyl alcohol (PVA) hollow microsphere and its application in the production of slow-release urea fertilizer. [Method] PVA hollow microsphere was prepared by the emulsion chemical cross-linking meth-od, while its composition, morphology and particle size was analyzed by technologies of FT-IR, SEM and TEM respectively. Thus, factors such as rate of emulsified speed, crosslink temperature and linking agent amount with effects on morphology and particle size of hollow microsphere were also discussed in this study. Furthermore, based on the optimizing preparation conditions, PVA fertilizer carrier microsphere was prepared by coating urea to investigate its sustained release effect on urea. [Result] The optimizing preparation conditions of polyvinyl alcohol (PVA) hollow microsphere were as follows: rate of e-mulsified speed 6 000 r/min, crosslink temperature 35 ℃ and linking agent amount 25 ml. PVA fertilizer cartier microsphere had significant sustained re-lease effect on urea, and the optimal cross-linking time was 3 hours. [Conclusion] This study provides theoretical basis for the development of new slow-release fertilizer.