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I
ABSTRACT
ABSTRACT
Superabsorbent polymers (SAP) have three-dimensional network of hydrophilic polymers that can swell to an equilibrium state, and retains a significant amount of water and/or biological fluids. They can rapidly absorb as ten times as their own mass of water or even a thousand times due to excellent water absorption capability. Owing to their excellent characteristics, such as high water absorption rate, steady water retention, and nontoxicity, superabsorbents have been considerably utilized in many areas.
With N,N-methylene bisacrylamide as crosslinking agent and potassium persulfate as initiator, the high-hydrophilia compound material starch-g-poly (acrylic acid)/organic mordenite was prepared by using inverse suspension polymerization and the influence of content of organic mordenite, crosslinking agent ,initiator, and neutralization degree on the water absorption capability of the compound material was reached. FTIR is performed to evaluate the effects of water absorption on superabsorption composite.
The experimental results showed that the optimum conditions is the mordenite content of 10 wt. %, the initiator content of 0.3%, the crosslinking content of 0.08% neutralization degree of 80%.In this case, the water absorption capability of the superabsorbent composite prepared was 532.5 g/g. The high absorption value can be reached in 1 hour in deionized water, indicating that the superabsorbent composite has faster absorption rate. Placed in a natural state during one day, the gel only lost 15 wt. %. After 7 days, the average water loss rate is only 10.98% per day. This result shown the superabsorbent composite has good water retention property. In addition, absorption capability can be less affected by temperature, indicating that it can be applied in a wide temperature range.
Keywords£ºInverse suspension; Superabsorbent composite; absorption capability; organic mordenite
II
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