Optimizing Green Bean Yield: Controlled Nitrogen Release with Nano-Urea-Modified Apatite

Muhammady Fathy, Mohamed Helal, Hassan Khater, Noha Abdelkader, Karima F. Abdelgawad
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Abstract

Controlled-release fertilizers (CRFs) have drawn significant attention because of their ability to improve plant nutrient uptake efficiency and mitigate environmental pollution. Current commercial CRFs need improvement to reduce synthesizing costs and to apply biodegradable materials and/or biorefinery wastes. In this study, CRFs were synthesized by treating nano-apatite with urea at different apatite:urea ratios (1:1 and 1:4). The biodegradable polymers, alginate, and lignin extracted from agricultural residue and paper manufacturing waste were used as single (alginate) and double (alginate and lignin) coating layers to form CRFs. In lab experiments, the N release behavior was studied in both water and soil. A cultivation experiment was carried out to study the efficiency of CRFs in the yield of green bean plants. The CRFs were applied with 3 N levels (75, 50, and 25% of the recommended dose). Both types of CRFs significantly increased the N release period to 24 days compared to 5 days for commercial urea. The total yield increased by 88 and 98% by applying double- and single-coated CRFs, respectively, at 75% N of the recommended dose compared with the full dose of conventional urea. In conclusion, applying CRFs at an N level of 25% of the recommended amount obtained the same yield as the full dose of conventional urea. KEYWORDS biodegradable coating, hydroxyapatite, lignin, nano-fertilizer, nitrogen efficiency, snap beans
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优化青豆产量:利用纳米尿素改性磷灰石控制氮释放
控释肥料(CRF)因其能够提高植物养分吸收效率和减轻环境污染而备受关注。目前的商业控释肥料需要改进,以降低合成成本,并应用可生物降解的材料和/或生物炼制废料。本研究采用不同的磷灰石:尿素比例(1:1 和 1:4),通过尿素处理纳米磷灰石合成了 CRFs。从农作物秸秆和造纸废料中提取的生物可降解聚合物、海藻酸盐和木质素分别用作单层(海藻酸盐)和双层(海藻酸盐和木质素)涂层来形成 CRF。在实验室实验中,研究了氮在水和土壤中的释放行为。为了研究 CRFs 对绿豆植物产量的影响,还进行了一项栽培实验。在施用 3 种氮水平(建议剂量的 75%、50% 和 25%)的 CRFs 时。与商品尿素的 5 天释放期相比,两种 CRF 都将氮释放期大幅延长至 24 天。与全量施用传统尿素相比,在施用建议剂量的 75% N 时施用双涂层和单涂层 CRF,总产量分别提高了 88% 和 98%。总之,施用氮含量为推荐量 25% 的 CRF 与施用全量常规尿素的产量相同。关键词:生物降解涂层、羟基磷灰石、木质素、纳米肥料、氮效率、豆角
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