Title :
Preparation and properties of water-retention and fertilizer-retention from montmorillonite/acrylic resin
Author :
Feng, Qiming ; Dong, Faqin ; Wang, Weiqing ; Li, Jinli
Author_Institution :
Coll. of Environ. Eng. & Resources, Southwest Univ. of Sci. & Technol., Mianyang, China
Abstract :
Water-retention and fertilizer-retention (WRFR) was prepared by solution polymerization, and the properties of WRFR were studied. The optimum preparation conditions were as follows: cross-linking agent, montmorillonite and initiator were 0.05%, 15% and 0.45% as the monomer by weight, respectively; the reaction temperature was 75 °C, and the neutralization degree was 90%. The distilled water absorption rate of the prepared WRFR was 796 g/g. The water evaporation quantity of the prepared WRFR in 24 h at ambient temperature was less than 9%, and this value was increased to 99.72% the prepared WRFR was treated by water bath at 60 °C for 10 h. The water-retention rate was 57.4% while the prepared WRFR was centrifuged at 4000 rpm for 10 min, and the adsorption rate of 10.0 g/L urea solution was 500 g/g. After dynamically washed by 50 mL distilled water, the residual urea of the fertilizer was 31.78%, which prepared by using 0.1 g WRFR to adsorb 20% urea solution.
Keywords :
absorption; chemical engineering; fertilisers; polymerisation; resins; acrylic resin; cross-linking agent; distilled water absorption; fertilizer-retention properties; montmorillonite resin; solution polymerization; temperature 60 degC; temperature 75 degC; time 10 h; time 10 min; time 24 h; water bath; water evaporation; water-retention properties; Resins; Montmorillonite/acrylic resin; Slow-release effect of nitrogen; Water-retention and fertilizer-retention (WRFR);
Conference_Titel :
Materials for Renewable Energy & Environment (ICMREE), 2011 International Conference on
Conference_Location :
Shanghai
Print_ISBN :
978-1-61284-749-8
DOI :
10.1109/ICMREE.2011.5930615