| Literature DB >> 28671846 |
Diejing Feng1,2, Bo Bai1,2, Honglun Wang3, Yourui Suo3.
Abstract
Synergistic utilization of water and fertilizer has vital contribution to the modern production of agriculture. This work reports on a simple and facile strategy to prepare biodegradable yeast/sodium alginate/poly(vinyl alcohol) superabsorbent microspheres with a diffusion barrier merit by thermo-chemical modification route. The integrated performances, including water absorbency, water retention, water evaporation ratio, leaching loss control, sustained-release behaviors, and degradation in soil, were systematically investigated. The results revealed that the modified microspheres were a triumphant water and fertilizer manager to effectively hold water and control the unexpected leakage of fertilizer for sustained release. Therefore, this work provides a promising approach to ameliorate the utilization efficiency of water and fertilizer in potential agriculture applications.Entities:
Keywords: biodegradation; denser cross-linked network; diffusion barrier; superabsorbent microspheres; sustained release; water holding
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Year: 2017 PMID: 28671846 DOI: 10.1021/acs.jafc.7b01849
Source DB: PubMed Journal: J Agric Food Chem ISSN: 0021-8561 Impact factor: 5.279