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Immobilization of biosorbent in hydrogel as a new environmentally friendly fertilizer for micronutrients delivery

机译:固定在水凝胶中的生物吸附剂作为一种新型的微量营养素环保肥料

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The aim of this work was to study the use of alginate-carboxymethyl cellulose-eggshell biocomposites as a material with controlled release of Cu2+ ions. The composition of biocomposites was optimized with Response Surface Methodology (5.0 wt% sodium alginate, 1.2 wt% carboxymethyl cellulose, 10.0 wt% eggshells). Physicochemical properties of biocomposites, kinetics and equilibrium of copper(II) ion sorption on structures were investigated. The General Rate Law model best described the kinetics data and the values of kinetic rate constants were 0.259, 0.358 min(-1) for wet and dry capsules. The description of the sorption kinetics was also presented with the Weber-Morris diffusion model, which indicated a multi-stage process. The maximum sorption capacities for wet and dry biocomposites were 281 and 49 mg g(-1). The composites presented a slow release of ions in the model soil solution (9 wt%/14 days). Studied biocomposites have a good potential as controlled release fertilizers fitting into the concept of sustainable development and precision agriculture. The new fertilizer formulations have the potential to by used as a new type of slow-release fertilizer that delivers micronutrient ions according to the plants uptake pattern with minimization of losses into the environment. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是研究使用藻酸盐-羧甲基纤维素-蛋壳生物复合材料作为可控释放Cu2 +离子的材料。用响应表面方法(5.0wt%海藻酸钠,1.2wt%羧甲基纤维素,10.0wt%蛋壳)优化生物复合物的组成。研究了生物复合物的理化性质,动力学和平衡铜(II)离子在结构上的吸附。通用速率定律模型最能描述动力学数据,湿胶囊和干胶囊的动力学速率常数分别为0.259、0.358 min(-1)。韦伯-莫里斯扩散模型也对吸附动力学进行了描述,该模型表明了多阶段过程。湿和干生物复合材料的最大吸附能力分别为281和49 mg g(-1)。复合材料在模型土壤溶液中离子释放缓慢(9 wt%/ 14天)。研究的生物复合材料作为控释肥料与可持续发展和精确农业的概念相吻合具有很大的潜力。新的肥料配方有可能被用作新型的缓释肥料,该肥料根据植物的吸收方式输送微量营养素离子,并最大程度地减少对环境的损失。 (C)2019 Elsevier Ltd.保留所有权利。

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