首页> 外文期刊>Journal of Polymers and the Environment >Radiation Crosslinking of Modifying Super Absorbent (Polyacrylamide/Gelatin) Hydrogel as Fertilizers Carrier and Soil Conditioner
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Radiation Crosslinking of Modifying Super Absorbent (Polyacrylamide/Gelatin) Hydrogel as Fertilizers Carrier and Soil Conditioner

机译:改性高吸收性聚丙烯酰胺/明胶水凝胶作为肥料载体和土壤改良剂的辐射交联

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摘要

A novel approach is developed for preparing a highly porous super absorbent hydrogel (SAH). Synthetic and natural hydrogel based acrylamide (Am) and gelatin (G) were polymerized and crosslinked by gamma radiation. Three hydrogels compositions have been prepared in weight ratio 1:2, 1.5:1.5 and 2:1 (wt:wt) for 30% PAAM/G and exposed to gamma radiation at dose of 30 kGy. The effect of chemical modifications on increasing the swelling power of polyacrylamide gelatin (PAAM/G) has been evaluated. The alkaline hydrolysis of PAAM/G hydrogel with concentrated NaOH converts amid groups CONH2 to carboxylic groups COONa. The modified hydrogels will take the codes PAAM-COOH/G, PAAM-COONa/G and PAAM-COOK/G that dramatically increased the degree of swelling from 220 to 720 (g/g). Furthermore, studies on the slow release ability of three kinds of fertilizer (K, P and urea) loaded on modified PAAM-COOH/G and evaluated the ability of SAH hydrogels to absorb and then gradually release water and fertilizer. A mathematical model for fertilizer release from PAAM-COOK/G was applied to calculate the diffusion coefficient D. The main aim of this article is performed the effect of soil amendment with PAAM-COOK/G on eliminating water stress was tested for bean plant (Vicia faba) irrigation cycles in drought-prone environments. The growth of bean plant was monitored by measuring the highest and size of leaves and bean seed. The effect of water stress was monitored also, by measuring the intensity of chlorophyll for both SAH and control soil. The results indicated that the chemical modification of (PAAM/G) into (PAAM-COOK/G) could greatly improve water absorbency. The experimental data indicated that the SAH has a positive effect to use as fertilizers carrier and soil conditioner.
机译:开发了一种用于制备高度多孔的超吸收性水凝胶(SAH)的新颖方法。合成和天然水凝胶基丙烯酰胺(Am)和明胶(G)聚合并通过伽马射线辐射交联。对于30%PAAM / G,已经制备了重量比为1∶2、1.5∶1.5和2∶1(wt∶wt)的三种水凝胶组合物,并以30kGy的剂量暴露于γ射线。评估了化学修饰对提高聚丙烯酰胺明胶(PAAM / G)溶胀力的影响。 PAAM / G水凝胶用浓NaOH进行的碱水解将酰胺基CONH2转化为羧基COONa。改性的水凝胶将采用PAAM-COOH / G,PAAM-COONa / G和PAAM-COOK / G编码,从而将溶胀度从220(g / g)显着增加。此外,研究了改性PAAM-COOH / G上加载的三种肥料(K,P和尿素)的缓释能力,并评估了SAH水凝胶吸收然后逐渐释放水分和肥料的能力。应用了从PAAM-COOK / G释放肥料的数学模型来计算扩散系数D。本文的主要目的是对豆类植物进行PAAM-COOK / G改良土壤除水胁迫的效果测试(干旱环境下的蚕豆(Vicia faba)灌溉周期。通过测量叶和豆种子的最高含量和大小来监测豆类植物的生长。还通过测量SAH和对照土壤的叶绿素强度来监测水分胁迫的影响。结果表明,将(PAAM / G)化学改性为(PAAM-COOK / G)可以大大提高吸水率。实验数据表明,SAH可用作肥料载体和土壤改良剂。

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