首页> 外文期刊>Indian Journal of Horticulture >Effect of rain water harvesting and mulch material on soil moisture regimes, fertility status and yield of almond under rainfed conditions ofnorth western Himalayas
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Effect of rain water harvesting and mulch material on soil moisture regimes, fertility status and yield of almond under rainfed conditions ofnorth western Himalayas

机译:喜马拉雅西北部雨养条件下雨水收集和覆盖材料对土壤水分状况,肥力状况和杏仁产量的影响

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摘要

Afield experiment was conducted to study the effect of rain water harvesting and mulching techniques for rainfed almond production during 2008-09 and 2009-10 at Srinagar, Jammu and Kashmir. Five water harvesting systems (half-moon, full-moon, trench, cupand plate and control) and three mulching (plastic, organic and control) were evaluated in factorial randomized block design. The experimental results clearly indicated that maximum plant height (4.4 m), trunk cross sectional area (193 cm2), canopy volume (28.2 m~3), nut wt. (1.68 g), yield (3.35 kg/tree), soil moisture content (14%) and soil fertility (0.66% soil organic carbon 516 kg N, 26.3 kg P and 304 kg K ha~(-1)) were recorded in full-moon water harvesting system. Productivity efficiency (18.18g cm~2 TCSA) was higher in trench water harvesting system. Among mulches, plastic mulch performed better in respect to TCSA (166 cm~2), yield (3.02 kg/tree), productivity efficiency (18.19 g cm~2 TCSA) and soil moisture content (14.8, 14.2, 13.2, 12.7 and 12.3%). Whereas, organic mulch registered the highest soil fertility status. Interaction effect of water harvesting and mulching indicated that growth, yield, productivity efficiency and soil moisture status were recorded in full-moon water harvesting+ plastic mulch in almond 'Non Pareil' under rainfed conditions of Kashmir valley.
机译:在斯利那加,查Jam和克什米尔,进行了野外实验,研究了雨水收集和覆盖技术对雨养杏仁生产的影响。在阶乘随机区组设计中评估了五个集水系统(半月,满月,沟渠,杯子和盘子和对照)和三个覆盖物(塑料,有机和对照)。实验结果清楚地表明:最大株高(4.4 m),树干横截面积(193 cm2),冠层体积(28.2 m〜3),坚果重量。分别记录了1.68 g(1.68 g),产量(3.35 kg /棵),土壤水分(14%)和土壤肥力(0.66%土壤有机碳516 kg N,26.3 kg P和304 kg K ha〜(-1))。全月集水系统。在沟槽式集水系统中,生产率更高(18.18g cm〜2 TCSA)。在地膜中,塑料地膜在TCSA(166 cm〜2),产量(3.02 kg / tree),生产力效率(18.19 g cm〜2 TCSA)和土壤含水量(14.8、14.2、13.2、12.7和12.3)方面表现更好。 %)。而有机覆盖物的土壤肥力最高。集水与覆盖的相互作用效应表明,在克什米尔河谷的雨育条件下,在“ Non Pareil”杏仁全月集水+塑料覆盖中记录了生长,产量,生产力效率和土壤水分状况。

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