Site Specific Nutrient Management Options for Achieving Higher Yields in Cotton and Chickpea under Rainfed Condition

S. Nayak, D. Balaguravaiah, K. Ramana, T. Giridharakrishna, P. Munirathnam, B. Reddy
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Abstract

A study was undertaken to delineation of spatial variability of soil fertility status in order to prepare soil available nutrient maps for improved productivity in different crops grown in the study area of Kurnool revenue division in Kurnool district of Andhra Pradesh state using remote sensing and GIS techniques. The Knowledge of spatial-variability is critical for site specific nutrient management in soil fertility to obtain higher yields. Soil sample (350) were collected from surface from 350 selected sites for preparing precise digital maps using point, line and polygon tools of the Geographic Information System (GIS) with ArcGIS software 10.3 was used for database creation and for creating the union of various thematic maps. The spatial variability maps were generated and delineated into different zones for N, P and K. Soil available Nitrogen, Phosphorus and Potassium spatial variability values generated from the thematic maps of Kurnool division were used to establish fertilizer recommendations for cotton in kharif and Chickpea in rabi during  2018-19 seasons. The recommended doses of Nitrogen (RDN) that worked for cotton were 401 to 450, 351 to 400, > 450 and < 350 kg ha-1 for the areas with Nitrogen availability of 140 to 210, 210 to 280, <140 and > 280 kg/ha, respectively. The Phosphorous fertilizer recommendation for soils with available P of < 30 kg/ha and > 30 kg/ha was figured out as > 250 kg ha-1 and < 250 kg ha-1, respectively. For soil available Potassium recorded 230 to 560, < 230 and > 560 kg/ha, the K recommendation was figured out as 301 to 400, > 401 and < 300 kg/ha, respectively. Recommended doses of Nitrogen (RDN) was worked out for chickpea were 51 to 75, > 76 and < 50 kg/ha for the areas with available N ranges of 184 to 280, < 184 and > 280 kg/ha, respectively. The Phosphatic fertilizer recommendation for soils of available P of < 23.5 and 23.5 to 40 kg/ha was figured out as > 200 kg/ha and 171 to 200 kg/ha, respectively. For the soil available potassium recorded 253 to 412, 413 to 570, < 253 and > 570 kg/ha, the K recommendation was figured out as 66 to 100, 31 to 65, > 100 and < 30 kg/ha, respectively.
在旱作条件下实现棉花和鹰嘴豆高产的定点营养管理选择
利用遥感和地理信息系统技术,对安得拉邦库尔努尔地区库尔努尔收入区划研究区土壤肥力状况的空间变异性进行了研究,以编制土壤有效养分图,提高不同作物的生产力。空间变异性的知识对土壤肥力的特定地点养分管理至关重要,以获得更高的产量。利用地理信息系统(GIS)的点、线、多边形工具,利用ArcGIS软件(10.3)建立数据库和创建各专题地图的联合,从350个选定地点的地表采集土壤样品(350份),制作精确的数字地图。利用Kurnool分区专题图生成的土壤速效氮、磷、钾空间变异值,建立了2018-19季棉花和鹰嘴豆的施肥建议。氮素效价为140 ~ 210、210 ~ 280、280 kg/ha时,棉花推荐施氮量分别为401 ~ 450、351 ~ 400、> 450和< 350 kg/ha。计算出有效磷< 30 kg/ha和> 30 kg/ha土壤的磷肥推荐量分别为> 250 kg ha-1和< 250 kg ha-1。土壤速效钾为230 ~ 560、< 230和> 560 kg/ha时,推荐钾量分别为301 ~ 400、> 401和< 300 kg/ha。在有效氮含量为184 ~ 280、< 184和> 280 kg/ha的地区,鹰嘴豆的推荐施氮量分别为51 ~ 75、> 76和< 50 kg/ha。计算出有效磷< 23.5、23.5 ~ 40 kg/ha土壤磷肥推荐量分别为> 200 kg/ha和171 ~ 200 kg/ha。土壤速效钾为253 ~ 412、413 ~ 570、< 253和> 570 kg/ha时,K推荐值分别为66 ~ 100、31 ~ 65、> 100和< 30 kg/ha。
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