Developing an environmental friendly approach for enhancing water retention with the amendment of water-absorbing polymer and fertilizers

Bharat Rattan, Ankit Garg, Sreedeep Sekharan, L. Sahoo
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Abstract

The effect of climate/environmental change has resulted in adverse water stress conditions which necessitates the sustainable approaches for improving the water use efficiency to boost agricultural production in Central Asia. Water-absorbing polymer (WAP) has emerged as one of the amendments for soil water stress management. WAP are chemically cross-linked structure capable of absorbing and storing a large amount of water. The agricultural land has different levels of fertilizers which can influence the performance of WAP because of its sensitivity due to external ionic medium. Therefore, the combined or hybrid use of WAP and organic/ inorganic fertilizers may inhibit the functionality of WAP, which needs to be thoroughly investigated. This study demonstrates the performance of two different WAPs (a commercially WAP (crosslinked potassium polyacrylate) and a laboratory synthesized WAP (crosslinked fly ash-polyacrylate superabsorbent composite)) with varying combinations of fertilizers in silt loam (agrarian soil). The combined use of fertilizers and WAP have improved the water retention properties of soils due to modification in the soil pore volume for both the WAPs. Quantification from water retention properties revealed a significant increase in plant wilting time (PWT) and plant available water content (PAWC) under the combined influence of fertilizers and WAP amended soils, indicating the possibility of high-water availability to plant roots. The study suggests the potential of WAPs as an efficient soil conditioner even in the presence of fertilizer for countering the negative impacts of water stress conditions. WAPs might minimize the requirement for chemical fertilizers, which helps to enhance the climate/environmental change and agriculture sector in the Central Asian region.
开发一种环境友好的方法,通过改进吸水聚合物和肥料来提高保水能力
气候/环境变化的影响导致了不利的水压力条件,这就需要采取可持续的方法来提高水的利用效率,以促进中亚的农业生产。吸水聚合物(WAP)已成为土壤水分胁迫管理的一种修正材料。WAP是一种化学交联结构,能够吸收和储存大量的水。农用地上施用不同程度的肥料会影响WAP的性能,因为WAP对外界离子介质非常敏感。因此,WAP与有机/无机肥料的组合或混合使用可能会抑制WAP的功能,这需要深入研究。本研究展示了两种不同的WAP(商用WAP(交联聚丙烯酸钾)和实验室合成的WAP(交联粉煤灰-聚丙烯酸酯高吸水性复合材料)在粉壤土(农业土壤)中使用不同肥料组合的性能。化肥和WAP的复合施用通过改变土壤孔隙体积而改善了土壤的保水性能。保水特性量化显示,在肥料和WAP改性土壤的共同作用下,植物萎蔫时间(PWT)和植物有效水分含量(PAWC)显著增加,表明植物根系有可能获得高水分有效性。该研究表明,即使在肥料存在的情况下,wap作为一种有效的土壤调节剂的潜力也可以抵消水分胁迫条件的负面影响。wap可能会最大限度地减少对化肥的需求,这有助于加强中亚地区的气候/环境变化和农业部门。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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