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Preparation of a low-cost and eco-friendly superabsorbent composite based on wheat bran and laterite for potential application in Chinese herbal medicine growth

机译:一种基于麦麸和红土的低成本环保型高吸收性复合材料的制备有望在中草药生长中应用

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摘要

A low-cost and eco-friendly superabsorbent composite is prepared through the free-radical graft co-polymerization of wheat bran (WB), acrylic acid (AA) and laterite (LA) in an aqueous solution. Elemental map, scanning electron microscopy and Fourier transform infrared spectra revealed that the LA evenly distributed in the superabsorbent composite and wheat bran-g-poly(acrylic acid)/laterite (WB-g-PAA/LA) formed successfully. Thermogravimetric analysis confirmed that the WB-g-PAA/LA had high thermal stability. Furthermore, the properties of the WB-g-PAA/LA, such as swelling in saline solutions and degradation, are also assessed. The final WB-g-PAA/LA (5 wt%) superabsorbent composite attained an optimum water absorbency of 1425 g g−1 in distilled water and 72 g g−1 in 0.9 wt% NaCl solution. The water absorbency of WB-g-PAA/LA (10 wt%) is even greater than that of the WB-g-PAA. Moreover, the water-retention capacity of WB-g-PAA/LA (5 wt%) is high, and the water-retention process followed a zero-order reaction. The reaction rate constant is 8.2428 × 105 exp(−Ea/RT) and the apparent activation energy (Ea) is 35.11 kJ mol−1. Furthermore, WB-g-PAA/LA (5 wt%) may regulate the release of urea, indicating that the superabsorbent composite could provide a promising application as a urea fertilizer carrier. Additionally, it increased the germination and growth rates of Glycyrrhiza uralensis Fisch, suggesting it could influence the growth of Chinese herbal medicine.
机译:通过将麦麸(WB),丙烯酸(AA)和红土(LA)在水溶液中进行自由基接枝共聚反应,可制得一种低成本,环保的超吸收性复合材料。元素图,扫描电子显微镜和傅立叶变换红外光谱表明,LA均匀地分布在高吸收性复合材料中,成功形成了麦麸-g-聚丙烯酸(WB-g-PAA / LA)。热重分析证实WB-g-PAA / LA具有较高的热稳定性。此外,还评估了WB-g-PAA / LA的特性,例如盐溶液中的溶胀和降解。最终的WB-g-PAA / LA(5 wt%)高吸水复合材料在蒸馏水中的最佳吸水率为1425 g g -1 ,在吸水时为72 g g -1 在0.9 wt%NaCl溶液中。 WB-g-PAA / LA的吸水率(10重量%)甚至大于WB-g-PAA的吸水率。此外,WB-g-PAA / LA(5重量%)的保水能力高,并且保水过程遵循零级反应。反应速率常数为8.2428×10 5 exp(-Ea / RT),表观活化能(Ea)为35.11 kJ mol -1 。此外,WB-g-PAA / LA(5 wt%)可以调节尿素的释放,表明超吸收性复合材料可以作为尿素肥料载体提供有希望的应用。此外,它提高了甘草的发芽率和生长速率,表明它可能影响中草药的生长。

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