首页> 外文期刊>The Indian Journal of Agricultural Sciences >Response of American cotton (Gossypium hirsutum) to methods of irrigation and levels of phosphorus under shallow ground water-table condition
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Response of American cotton (Gossypium hirsutum) to methods of irrigation and levels of phosphorus under shallow ground water-table condition

机译:浅层地下水条件下美国棉花对陆地棉灌溉方式和磷水平的响应

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A field experiment was conducted during the rainy (kharif) seasons of 2002-04 at Khetawali Distributary, Hanumangarh, Rajasthan to study the yield, benefit: cost ratio and water-use efficiency of 'RS 2013' American cotton (Gossypium hirsutum Linn.) variety under high ground water-table conditions. Among the methods of irrigation, flood irrigation gave significantly highest seed cotton yield (2.44 tonnes/ha), monopodials/plant (8.7) and sympodials/plant (14.6) compared to furrow, alternate furrow and alternate furrow in rotation irrigation treatments. Height (170.3 cm), boll/plant (80.5) and boll weight (3.39 g) recorded with flood irrigation were higher but at par with furrow irrigation and superior to rest of the irrigation treatments. Similarly, flood irrigation gave the highest water use (384.3 mm), benefit : cost ratio (3.70) and sustainability yield index (86.54%) than all other irrigation methods. However, highest water-use efficiency of 6.55 kg/ha-mm was recorded with furrow irrigation in rotation. Between the 2 phosphorus levels 22.5 kg P/ha gave significantly higher seed cotton yield (2.19 tones/ha), sympodial/plant (13.3), boll/plant (75.3), boll weight (3.30) and higher sustainability yield index (79.82%) and benefit : cost ratio (3.25). Water-table depth was the lowest at sowing in most of the years, thereafter water-table went down up to end of October and then it fell suddenly at harvest. Electrical conductivity (EC) of soils at harvest was highest with irrigation in alternate furrow, followed by alternate furrow in rotation, furrow and flood irrigation method. EC of groundwater was slightly higher at furrow irrigation in alternate rows, and furrow irrigation in alternate rows in rotation compared to flood and furrow irrigation treatments. The pH of the soil at harvest and groundwater at active growing stage was not affected by irrigation methods.
机译:在2002-04雨季(kharif)的拉贾斯坦邦哈努曼加尔的Khetawali分销商进行了田间试验,研究了'RS 2013'美国棉花(Gossypium hirsutum Linn)的产量,效益:成本比和水分利用效率。在地下水位较高的条件下采摘品种。在灌溉方法中,与轮作灌溉中的犁沟,交替犁沟和交替犁沟相比,洪水灌溉的籽棉产量最高(2.44吨/公顷),单足类/植物(8.7)和双足类/植物(14.6)。洪水灌溉记录的高度(170.3厘米),棉铃/植物(80.5)和棉铃重量(3.39克)较高,但与沟灌相当,并且优于其余的灌溉处理。同样,与所有其他灌溉方式相比,洪水灌溉的用水量最高(384.3毫米),效益:成本比(3.70)和可持续性产量指数(86.54%)。然而,轮作沟灌时最高用水效率为6.55 kg / ha-mm。在2种磷水平之间,22.5 kg P / ha显着提高了籽棉产量(2.19吨/公顷),sym /植物(13.3),铃/植物(75.3),铃重(3.30)和较高的可持续单产指数(79.82% )和收益:成本比率(3.25)。在播种的大多数年份中,地下水位深度是最低的,此后地下水位下降到10月底,然后在收获时突然下降。交替耕作灌溉时,收获时土壤的电导率(EC)最高,其次是轮作,轮作和洪水灌溉方式。与洪水和沟灌处理相比,在交替行沟灌和交替轮作沟灌时,地下水的EC略高。灌溉方式不影响收获时土壤的pH值和活跃生长期的地下水pH值。

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