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含有 KSO 的温敏和 pH 响应性甲基纤维素和羟丙基甲基纤维素水凝胶,用于保水和控制释放水溶性肥料。

Thermo and pH-responsive methylcellulose and hydroxypropyl methylcellulose hydrogels containing KSO for water retention and a controlled-release water-soluble fertilizer.

机构信息

Department of Forestry, National Chung-Hsing University, Taichung 402, Taiwan.

Department of Forestry, National Chung-Hsing University, Taichung 402, Taiwan.

出版信息

Sci Total Environ. 2019 Mar 10;655:958-967. doi: 10.1016/j.scitotenv.2018.11.264. Epub 2018 Nov 19.

Abstract

Hydrogel as commercial soil conditioner has the potential to improve soil properties and reduce water scarcity in growing plants. However, use of polyacrylamide-based hydrogel in agriculture pose potential human health hazards. Hydrogel systems were prepared from temperature-responsive methylcellulose (MC) and hydroxypropyl methylcellulose (HPMC) blended with potassium sulfate (KSO, K-containing fertilizer). Blended KSO in hydrogels affects the hydrophobic interaction of MC and HPMC, and hydrogels prepared in 0.25 M KSO decrease the gelation temperatures of MC and HPMC from 55.6 and 67.4 °C to 27.8 and 35.1 °C, respectively. The equilibrium swelling ratio (St) of MC and HPMC hydrogels was increased 15 times and hydrogels maintained a steady appearance. The swelling kinetics of the MC and HPMC hydrogels followed Schott's second-order model and kinetic parameters indicated that adding KSO can improve the initial swelling rate. KSO decreases the pore size of the MC and HPMC hydrogel from 26.8 and 21.5 μm to 14.7 and 14.2 μm. A plant growth assessment indicated inhibition in plant growth occurred without the application of the hydrogels. Adding KSO increases mechanical properties of the hydrogels. Treatment with 0.5% hydrogel considerably improves the water-holding and water-retention capacities of sandy soil. The 20-20-20 fertilizer release results revealed at that at 35 °C and a pH below 7, the hydrogel systems reduce the release rate of the fertilizer. The best result was observed with the Korsmeyer-Peppas model, indicating that the fertilizer transport mechanism involves Fickian diffusion and swelling-controlled release. This study discovered that environmentally responsive cellulose-based hydrogels have potential for use as soil conditioners and as controlled release devices in horticulture and agriculture.

摘要

水凝胶作为商业土壤调节剂具有改善土壤性质和减少种植植物缺水的潜力。然而,在农业中使用聚丙烯酰胺基水凝胶会对人体健康造成潜在危害。水凝胶系统由温度响应性甲基纤维素 (MC) 和羟丙基甲基纤维素 (HPMC) 与硫酸钾 (KSO,含钾肥料) 混合制备。水凝胶中混合的 KSO 会影响 MC 和 HPMC 的疏水相互作用,并且在 0.25 M KSO 中制备的水凝胶将 MC 和 HPMC 的凝胶化温度从 55.6 和 67.4°C 降低至 27.8 和 35.1°C。MC 和 HPMC 水凝胶的平衡溶胀比 (St) 增加了 15 倍,并且水凝胶保持稳定的外观。MC 和 HPMC 水凝胶的溶胀动力学遵循 Schott 二级模型,动力学参数表明添加 KSO 可以提高初始溶胀率。KSO 将 MC 和 HPMC 水凝胶的孔径从 26.8 和 21.5 µm 减小至 14.7 和 14.2 µm。植物生长评估表明,在不使用水凝胶的情况下,植物生长受到抑制。添加 KSO 可提高水凝胶的机械性能。用 0.5%水凝胶处理可大大提高沙土的持水和保水能力。20-20-20 肥料释放结果表明,在 35°C 和 pH 值低于 7 的条件下,水凝胶系统会降低肥料的释放率。使用 Korsmeyer-Peppas 模型观察到最佳结果,表明肥料输送机制涉及菲克扩散和溶胀控制释放。本研究发现,环境响应性纤维素基水凝胶具有作为土壤改良剂和在园艺和农业中作为控制释放装置的潜力。

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