4.6 Article

Microwave-Assisted Synthesis of a Semi-interpenetrating Polymer Network Slow-Release Nitrogen Fertilizer with Water Absorbency from Cotton Stalks

期刊

ACS SUSTAINABLE CHEMISTRY & ENGINEERING
卷 4, 期 12, 页码 6572-6579

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acssuschemeng.6b01466

关键词

Cotton stalk; bentonite; Polyvinylpyrrolidone; Semi-interpenetrating polymer network; Microwave irradiation; Slow-release fertilizer

资金

  1. National Natural Science Foundation of China [21466034]
  2. Science and Technology Fund Projects of Shihezi University [2013ZRKXJQ01]
  3. Science and Technology Innovation Team Project of Eighth Division in Xinjiang Group [2015TD03]

向作者/读者索取更多资源

A semi-interpenetrating polymer network (semi-IPN) slow-release nitrogen fertilizer with water absorbency was synthesized via microwave irradiation. Urea was incorporated as the nitrogen source into a cotton stalk-g-poly(acrylic acid)/bentonite (CS-g-PAA/bent) network and linear polyvinylpyrrolidone (PVP). A reaction mechanism for synthesis of CS-g-PAA/ bent/PVP/urea was proposed. Variables influencing water absorbency, such as microwave power, irradiation time, and contents of CS, PVP, and bent were evaluated and optimized. The sample prepared under optimized conditions had a water absorbency of 1018.4 g/g in distilled water and 71.3 g/g in 0.9 wt % NaCI solution. The structure and properties of samples were characterized through various analysis technologies. Swelling measurements and water-retention study indicated that the sample possessed excellent water absorbency in different environments and enhanced the water-retention capacity of soil by introduction of bent and formation of a semi-IPN structure. Investigation of leaching behavior indicated that the sample has the potential to carry the necessary N. The results indicated that about 60% of nutrients were released after 30 days based on anomalous transport, and the sample improved the seed germination rate and promoted cotton growth. Thus, microwave irradiation is a possible method to produce slow-release fertilizers that could be widely applicable in agriculture and horticulture.

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