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首页> 外文期刊>Journal of the Indian Society of Soil Science >Mapping of DTPA-Extractable Cationic Micronutrients in Soils under Rice and Maize Ecosystems of Kupwara District in Kashmir - A GIS Approach
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Mapping of DTPA-Extractable Cationic Micronutrients in Soils under Rice and Maize Ecosystems of Kupwara District in Kashmir - A GIS Approach

机译:克什米尔库普瓦拉地区水稻和玉米生态系统下土壤中DTPA可提取的阳离子微量营养素的定位-GIS方法

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Mapping of DTPA-extractable cationic micronutrients were carried out by random grid sampling. Geo-referenced surface (0.2 m) soil samples representing different soils (as per soil map prepared on 1:50,000 scale) were collected from 625 sites in Kupwara district (Northwest Kashmir) using global positioning system (GPS) before the crops sown. The plant samples were also collected simultaneously from every 5lh soil sampling site. These soil and plant samples were analyzed for micronutrients (Fe, Mn, Znand Cu). The DTPA-Zn in soils varied from 0.12 to 5.10 mg kg1, DTPA-Cu from 0.26 to 3.90 mg kg1, DTPA-Fe from 0.89 to 51.18 mg kg"1 and DTPA-Mn from 0.51 to 33.30 mg kg1. The contents of Zn in plants varied from 16.3 to 73.7 mg kg1, Fe from 22.4 to 585.0mg kg1, Cu from 7.6 to 20.1 mg kg'1 and Mn from 7.3 to 649.3 mg kg1. None of the samples were found to be deficient in Fe. The relationship between micronutrient contents in soil and plant was significant. There is a need to refine the critical level ofdeficiency for DTPA-Fe with reference to growing environment, certain soil characteristics and pre-defined plant parts of specific crops. Soil micronutrient maps prepared in Arc Info GIS clearly delineated the specific locales where micronutrient problem constrained crop production. Multi-micronutrient map suggested that deficiency of individual element is more prevalent as compared to that of two or three micronutrients. The DTPA extractable micronutrients showed positive correlation with organic carbon and clay. The positive influence of organic carbon on micronutrient availability was maximum for DTPA-Cu. These results indicated that Zn is likely to constraint crop production, followed by Mn in the soils of Kupwara district.
机译:DTPA可提取的阳离子微量营养素的图谱通过随机网格采样进行。在作物播种之前,使用全球定位系统(GPS)从全球克什瓦拉地区(西北克什米尔)的625个地点收集了代表不同土壤的地理参考表面(0.2 m)土壤样品(按照1:50,000比例绘制的土壤图)。还从每5lh土壤采样地点同时收集了植物样品。分析了这些土壤和植物样品中的微量营养元素(铁,锰,锌和铜)。土壤中的DTPA-Zn为0.12至5.10 mg kg1,DTPA-Cu为0.26至3.90 mg kg1,DTPA-Fe为0.89至51.18 mg kg“ 1,DTPA-Mn为0.51至33.30 mg kg1。植物中的铁含量从16.3到73.7 mg kg1,Fe从22.4到585.0mg kg1,Cu从7.6到20.1 mg kg'1,Mn从7.3到649.3 mg kg1,均未发现铁缺乏。土壤和植物中的微量营养素含量之间存在显着差异,需要根据生长环境,某些土壤特性和特定作物的预先定义的植物部位来完善DTPA-Fe的临界缺乏水平。地理信息系统(GIS)清楚地描述了微量营养素限制作物生长的具体区域,多微量营养素图表明,与两种或三种微量营养素相比,单个元素的缺乏更为普遍,DTPA可提取微量营养素与有机物呈正相关。碳和粘土。对于DTPA-Cu,有机碳对微量营养素有效性的积极影响最大。这些结果表明,锌很可能会限制作物生产,其次是库普瓦拉地区土壤中的锰。

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