Optimizing Soybean Crop Performance through the Integrated Application of Organic and Chemical Fertilizers: A Study on Alkaline Soil in Afghanistan

Crops Pub Date : 2024-03-07 DOI:10.3390/crops4010007
Abdul Basir Turabi, Safiullah Habibi, Kifayatullah Kakar, Shafiqullah Aryan, Mohammad Daud Haidari, Sabqatullah Alipour
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Abstract

The excess application of chemical fertilizer contributes to environmental pollution. Therefore, this study aims to explore the integrated use of animal manure and chemical fertilizer to identify a more sustainable and environmentally friendly alternative to nitrogen fertilizer. Two experiments were conducted in 2018 and 2019 at Kabul University, Afghanistan, using an LD04-13265 soybean variety. The integration of animal manure and chemical fertilizer was categorized into six treatments: (1) control (no fertilizer), (2) animal manure low dose (AMLD), (3) animal manure high dose (AMHD), (4) chemical fertilizer (CF), (5) CF 50% + AMLD, and (6) CF 75% + AMLD. The results revealed that AMHD and its integration with 75% chemical fertilizer greatly influenced the vegetative growth of soybean plants in experiments I and II. The number of pods per plant and pod length significantly (p < 0.05) increased under the CF 75% + AMLD treatment. In experiment I, soybean yield increased the most with the CF treatment, followed by CF 75% + AMLD. In contrast, in experiment II, the highest yield per hectare was observed in the CF 75% + AMLD treatment, followed by CF. The CF 75% + AMLD treatment significantly increased the SPAD value in both experiments. Consequently, a strong relationship was observed between the SPAD value and yield (r = 0.74) in experiment I and between SPAD and pod length (r = 0.82) in experiment II. Incorporating animal manure with chemical fertilizer significantly impacted soybean growth and yield, offering a potential possibility for reducing reliance on nitrogen fertilizer application to mitigate environmental pollution.
通过综合施用有机肥和化肥优化大豆作物表现:阿富汗碱性土壤研究
过量施用化肥会造成环境污染。因此,本研究旨在探索动物粪便与化肥的综合利用,以确定一种更可持续、更环保的氮肥替代品。2018 年和 2019 年在阿富汗喀布尔大学进行了两次实验,使用的大豆品种为 LD04-13265。畜禽粪便与化肥的结合被分为六个处理:(1)对照(不施肥);(2)动物粪便低剂量(AMLD);(3)动物粪便高剂量(AMHD);(4)化肥(CF);(5)CF 50%+AMLD;(6)CF 75%+AMLD。结果表明,在试验 I 和 II 中,AMHD 及其与 75% 化肥的结合对大豆植株的无性生长影响很大。在 CF 75% + AMLD 处理下,每株豆荚数量和豆荚长度显著增加(p < 0.05)。在实验 I 中,CF 处理的大豆产量增幅最大,其次是 CF 75% + AMLD。相反,在试验 II 中,CF 75% + AMLD 处理的每公顷产量最高,其次是 CF 处理。在两个试验中,CF 75% + AMLD 处理都显著提高了 SPAD 值。因此,在试验 I 中,SPAD 值与产量(r = 0.74)之间关系密切,在试验 II 中,SPAD 值与豆荚长度(r = 0.82)之间关系密切。在施用化肥的同时施用动物粪便对大豆的生长和产量有显著影响,这为减少氮肥施用量以减轻环境污染提供了潜在的可能性。
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