4.7 Article

Fabrication and characterization of β-cypermethrin-loaded PLA microcapsules prepared by emulsion-solvent evaporation: loading and release properties

Journal

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
Volume 25, Issue 14, Pages 13525-13535

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-018-1557-6

Keywords

PLA; Microcapsule; Emulsion-solvent evaporation

Funding

  1. Basic Research Project (Natural Science Foundation for Young Scholars) of Jiangsu Province, China [BK20170489]
  2. Basic Research Project (Natural Science Foundation for Young Scientists) of Yangzhou, China [YZ2016104]
  3. Program of Practice and Innovation Training Projects for College Students in Jiangsu Province [201511117091X, 201711117053Y]

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Microcapsulses can be designed to effectively encapsulate, protect, and control the release of pesticides. In this study, emulsion-solvent evaporation method was used to fabricate microcapsules using dichloromethane as the solvent, polylactic acid (PLA) as the carrier materials, poly(vinyl alcohol) as the emulsifier, and beta-cypermethrin as the entrapped pesticide. The effects of process parameters on the microcapsules characteristics (size, loading content, and encapsulation efficiency) were investigated. Also, the release behavior of the beta-cypermethrin was measured experimentally and modeled mathematically. Kinetic analysis indicated that release mechanism of beta-cypermethrin was compatible to Fickian diffusion. By optimizing the process parameters. beta-cypermethrin-loaded microcapsules were successfully produced with spherical shape, smooth surface, high encapsulation efficiency (> 80%). and a range of pesticide contents. These parameters could be adjusted to achieve delivery systems with desirable release profiles. The results are beneficial to develop delivery systems for rational and effective usage of pesticides.

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