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Phosphorus availability and exchangeable aluminum response to phosphate rock and organic inputs in the Central Highlands of Kenya

机译:肯尼亚中央高地磷酸盐岩石和有机投入的磷可用性和可交换的铝制反应

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摘要

Soil acidity and phosphorus deficiency are some of the constraints hampering agricultural production in tropical regions. The prevalence of soil acidity is associated with phosphorus (P) insufficiency and aluminum saturation. We conducted a two-seasons experiment to evaluate soil phosphorus availability and exchangeable aluminum in response to phosphate rock and organic inputs in acidic humic nitisols. The field experiment was installed in Tharaka Nithi County in the Central Highlands of Kenya. The experimental design was a randomized complete block design with treatments replicated thrice. The treatments were: Green manure (Tithonia diversifolia Hemsl.) (60 kg P ha−1), phosphate rock (60 kg P ha−1), goat manure (60 kg P ha−1), Tithonia diversifolia (20 kg P ha−1) combined with phosphate rock (40 kg P ha−1), manure (20 kg P ha−1) combined with phosphate rock (40 kg P ha−1), Triple Super Phosphate combined with Calcium Ammonium Nitrate (TSP + CAN) (60 kg P ha−1) and a control (no input). During the long rains of the 2018 season (LR2018), Tithonia diversifolia + phosphate rock had a significantly higher reduction (67%) of exchangeable aluminum than the sole use of Tithonia diversifolia. Grain yield under TSP + CAN was the highest, followed by the sole organics during the LR2018. Tithonia diversifolia + phosphate rock resulted in a 99% and a 90% increase in NaHCO3-Pi compared to sole phosphate rock and sole Tithonia diversifolia, respectively. Tithonia diversifolia led to 14% and 62% higher resin-Pi and NaOH-Pi, respectively, compared to manure in the short rains of 2017 (SR2017). The increase in NaOH-Po after the two seasons was statistically significant in sole TSP + CAN. Based on the observed reduced exchangeable aluminum and additional nutrients like Ca, Mg, and K in the soil, sole organic inputs or in combination with phosphate rock treatments are feasible alternatives for sustaining soil phosphorus. Our findings underscore an integrated approach utilizing organic amendments combined with phosphate rock in acidic humic nitisols' phosphorus nutrient management.
机译:土壤酸度和磷缺乏是热带地区妨碍农业生产的一些限制。土壤酸度的患病率与磷(P)不足和铝饱和有关。我们进行了两种季节实验,以评估土壤磷的可用性和可交换铝,响应于酸性腐殖质赤酚的磷酸盐岩石和有机投入。田野实验安装在肯尼亚中央高地的塔拉卡省。实验设计是一种随机完整的块设计,治疗分配三次。该治疗方法是:绿色粪便(Tithonia Diversifolia Hemsl。)(60 kg p ha-1),磷酸盐岩(60 kg p ha-1),山羊粪便(60 kg p ha-1),tithonia diversifolia(20 kg p ha -1)与磷酸盐(40kg p ha-1)结合,粪肥(20kg p ha-1)与磷酸盐岩(40kg p ha-1)联合,三重超磷酸盐与硝酸钙合并(tsp + can )(60 kg p ha-1)和控制(无输入)。在2018季度的长雨中(LR2018),Tithonia Diversifolia +磷酸盐的可更换铝的含量显着较高(67%),而不是唯一的使用Tithonia Diversifolia。 TSP +下的谷物产量最高,其次是在LR2018期间的唯一有机物。与唯一的磷酸盐岩石和唯一的唾液酸多元溶剂相比,Tithonia Diversifolia +磷酸盐岩导致Nahco3-PI增加了99%和90%。与2017年短雨降雨的粪便相比,季节性多元化促使较高的树脂 - PI和NaOh-PI较高(SR2017)。在唯一的TSP +罐中,两种季节后Naoh-Po的增加在统计学上显着。基于所观察到的可易换的铝和额外的营养物,如Ca,Mg和土壤中的k,唯一的有机输入或与磷酸盐岩化处理组合是可行的磷磷的可行替代方案。我们的调查结果强调了利用有机修正的综合方法,所述有机修正与酸性腐殖质鼻磷营养管理中的磷酸盐岩。

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