磷酸盐
自愈水凝胶
化学
多糖
肥料
核化学
控制释放
水溶液
生物降解
有机化学
化学工程
工程类
作者
M. H. Jayan S. Karunarathna,Zachery R. Hatten,Kerri M. Bailey,Evan T. Lewis,Amanda L. Morris,Autumn R. Kolk,Jenna C. Laib,Nathan Tembo,Richard A. Williams,Benjamin Phillips,Bethany L. Ash,W. Robert Midden,Alexis D. Ostrowski
标识
DOI:10.1021/acs.jafc.9b02860
摘要
Photoresponsive hydrogels from polysaccharides and Fe(III) were used as a new system to capture and release PO43– from waste solutions. Uptake of 0.6–1.5 mg of phosphate per gram of hydrogels was determined from 800 ppm phosphate solutions (pH 4.8−9.0). These beads also captured 1.2 mg g–1 of phosphate from animal waste (raw manure, 727 ppm phosphate, pH 7.6), which accounted for above 80% phosphate uptake. Irradiation of phosphate-loaded hydrogels degraded the gels due to the photochemistry of the Fe(III)–carboxylates, giving controlled phosphate release (∼81% after 7 days). No release (<2% after 7 days) was seen in the dark. Kale plant trials showed complete degradation of the hydrogels in ∼2 weeks under greenhouse conditions. Biomass analysis of kale treated with phosphate-loaded beads compared to controls indicated no signs of toxicity. These results show that Fe(III)–polysaccharide hydrogels were able to reclaim phosphates from waste solutions and can be used as a controlled-release fertilizer.
科研通智能强力驱动
Strongly Powered by AbleSci AI