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原位形成二醛黄原胶-明胶席夫碱水凝胶作为有效的控释肥料。

In situ forming dialdehyde xanthan gum-gelatin Schiff-base hydrogels as potent controlled release fertilizers.

机构信息

Department of Chemistry, Ravenshaw University, Cuttack 753003, Odisha, India.

Department of Chemistry, Odisha University of Technology and Research, Bhubaneswar 751029, Odisha, India.

出版信息

Sci Total Environ. 2023 Jun 1;875:162660. doi: 10.1016/j.scitotenv.2023.162660. Epub 2023 Mar 7.

Abstract

Controlled release fertilizer (CRF) hydrogels have blossomed into promising materials in agriculture owing to the sustained release of the fertilizer and also as soil conditioner. Apart from the traditional CRF hydrogels; Schiff-base hydrogels have garnered significant thrust that release nitrogen slowly in addition to reducing the environmental pollution. Herein, we have fabricated Schiff-base CRF hydrogels composed of dialdehyde xanthan gum (DAXG) and gelatin. The formation of the hydrogels was accomplished via the simplistic in situ crosslinking reaction between the aldehyde groups of DAXG and the amino groups of gelatin. The hydrogels acquired a compact network upon increasing the DAXG content in the matrix. The phytotoxic assay on different plants indicated the hydrogels to be nontoxic. The hydrogels demonstrated good water-retention behaviour in soil, along with reusability even after 5 cycles. A controlled release profile for urea was evident from the hydrogels wherein macromolecular relaxation played a crucial role in the release mechanism. Growth assays on Abelmoschus esculentus (Okra) plant presented an intuitive evaluation on the growth and water-holding capacity of the CRF hydrogel. The present work demonstrated a facile preparation of CRF hydrogels to enhance the utilization of urea and retain soil humidity as fertilizer carriers.

摘要

控释肥料 (CRF) 水凝胶因其肥料的持续释放以及作为土壤调节剂而在农业中迅速发展成为有前途的材料。除了传统的 CRF 水凝胶外;席夫碱水凝胶也备受关注,因为它们除了减少环境污染外,还能缓慢释放氮。在此,我们制备了由醛基化黄原胶 (DAXG) 和明胶组成的席夫碱 CRF 水凝胶。水凝胶的形成是通过 DAXG 的醛基与明胶的氨基之间的简单原位交联反应完成的。随着 DAXG 在基质中含量的增加,水凝胶获得了一个紧密的网络。对不同植物的植物毒性试验表明水凝胶无毒。水凝胶在土壤中表现出良好的保水性能,即使经过 5 次循环后仍具有可重复使用性。水凝胶对尿素的释放呈现出明显的控制释放特性,其中大分子弛豫在释放机制中起着关键作用。在对 Abelmoschus esculentus(秋葵)植物的生长试验中,CRF 水凝胶的生长和保水能力得到了直观的评价。本工作展示了一种简便的 CRF 水凝胶的制备方法,以提高尿素的利用率并保持土壤湿度作为肥料载体。

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