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Superabsorbent polymer with improved permeability and absorption rate using hollow glass microspheres
Authors:Yong Rok Kwon  Seung Ho Lim  Hae Chan Kim  Jung Soo Kim  Young Wook Chang  Jun Choi  Dong Hyun Kim
Affiliation:1. Department of Human Convergence Technology Group, Korea Institute of Industrial Technology (KITECH), Ansansi, Republic of Korea

Department of Material Chemical Engineering, Hanyang University, Ansansi, Republic of Korea;2. Department of Human Convergence Technology Group, Korea Institute of Industrial Technology (KITECH), Ansansi, Republic of Korea;3. Department of Human Convergence Technology Group, Korea Institute of Industrial Technology (KITECH), Ansansi, Republic of Korea

Department of Packaging, Yonsei University, Wonju-si, Gangwon-do, Republic of Korea;4. Department of Material Chemical Engineering, Hanyang University, Ansansi, Republic of Korea

Abstract:Itaconic acid-vinyl sulfonic acid based super absorbent polymer (SAP) was synthesized by aqueous solution polymerization using ammonium persulfate as the initiator, tetra (ethylene glycol) diacrylate as the internal crosslinking agent, and sodium hydroxide as the neutralizing agent. Surface-crosslinking was introduced to improve the low absorbency under load of the itaconic acid-based SAP. Hollow glass microspheres were added during surface-crosslinking to improve the absorption properties and permeability of the SAP. Hollow glass microspheres increased the specific surface area of SAP and acted as an incompressible filler resulting in the improvement of gel strength and the relief of gel blocking by preventing adhesion between SAP particles. The surface-crosslinked SAP with 2 wt% hollow glass microspheres showed the highest permeability and absorbency under load. The absorption rate of the synthesized material was also increased.
Keywords:absorption properties  hollow glass microsphere  itaconic acid  superabsorbent polymer  surface-crosslinking
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