4.6 Article

Preparation of ethyl cellulose-glycerol tribenzoate microcapsules in CO2/N2-switchable hydrophilicity solvent and solvent recycling

Journal

JOURNAL OF APPLIED POLYMER SCIENCE
Volume 139, Issue 33, Pages -

Publisher

WILEY
DOI: 10.1002/app.52788

Keywords

ethyl cellulose; microcapsule; solvent recycling; switchable hydrophilicity solvent

Funding

  1. scientific research starting project of SWPU [2018QHZ019]
  2. Southwest Petroleum University
  3. State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation [PLN201826]

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In this study, a novel method of preparing microcapsules was introduced using CO2/N-2 switchable hydrophilicity solvent combined with an emulsion method. The prepared ethyl cellulose-glycerol tribenzoate microcapsules (EGM) exhibited spherical morphology and adjustable particle size. The method showed high yields and encapsulation rates, providing a new idea for microcapsule preparation and expanding the application field of switchable hydrophilicity solvents.
In this article, a novel method of microcapsule preparation was provided, that is, ethyl cellulose-glycerol tribenzoate microcapsule (EGM) was prepared using CO2/N-2 switchable hydrophilicity solvent(N, N-dimethylcyclohexylamine) combined with an emulsion method. Microcapsules were prepared and solvents were recovered by changing the properties of the solvent. The optimum preparation conditions of EGM were the materials ratio of 20%, the oil-water ratio of 4.5:5.5, emulsifier content of 2%, the Span80-Tween80 ratio of 1:3, and the core-shell ratio of 1. The morphology of EGM is spherical, and the particle size can be adjusted from 0.01 mu m to 90 mu m by controlling the agitation speed in the synthesis process. Surprisingly, the average yield(Y[%]) reached 95.36%, the effective content(W[%]) reached 41%, and the encapsulation rate(E[%]) reached 90.66% of EGM. The solvent recovery rate(SR[%]) of the first recovered is 96.37%. Significantly, this method not only provides a new idea for the preparation of microcapsules but also expands the application field of switchable hydrophilicity solvents, which makes it has great potential application value in the field of microcapsule preparation in the future.

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