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首页> 外文期刊>The Indian Journal of Agronomy >Influence of moisture-management practices on productivity, profitability and energy dynamics of rainfed maize (Zea mays) in semi-arid sub-tropical climate
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Influence of moisture-management practices on productivity, profitability and energy dynamics of rainfed maize (Zea mays) in semi-arid sub-tropical climate

机译:水分管理实践对半干旱亚热带气候雨玉米(Zea Mays)生产力,盈利能力和能量动态的影响

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A field experiment was conducted at the ICAR-lndian Agricultural Research Institute, New Delhi, during the rainy (kharif) seasons of 2014 and 2015, to study the impact of moisture-conservation techniques on growth, productivity and profitability of maize(Zea mays L). The experiment was laid out in a randomized block design with 3 replications in a fixed lay-out. The treatments consisted of 4 moisture-conservation practices, viz. ridge and furrow (RF), RF + crop residue (CR) @ 4 t/ha, RF + CR @ 2 t/ha +VAM and flat sowing (FS). Among different moisture conservation techniques, RF with 4 t/ha CR recorded significant effect on growth parameters, viz. plant height, dry-matter accumulation (DMA) and leaf-area index (LAI) of maize in comparison to non-residue plots and FS. Values of canopy temperature depression (CTD) were significantly influenced by treatments 30 and 60 days after sowing (DAS), but remained unaffected at 90 DAS. SPAD values at 30, 60 and 90 DAS differed significantly at all stages and showed normal curve pattern with maximum values at 60 DAS. The treatment crop residue @ 4 t/ha in RF system produced numerically higher grain and stover yields of 3.43 and 9.51 t/ha respectively. Maize planted under RF with 4 t/ha CR exhibited significantly higher water-use efficiency (WUE) of 12.3 kg/ha-mm, followed by RF + CR 2 t/ha + VAM (10.9 kg/ha-mm) as compared to FS (8.45 kg/ha-mm) maximum net returns were obtained under RF + CR 4 t/ha (35.8 x 10~3/ha) and the least under FS (22.7 x 10~3/ha). Residue-based treatment, RF + CR 4 t/ha resulted in benefit: cost ratio of maximum value (1.39) maximum energy intensiveness (2.32 MJ/f) and specific energy (17.57 MJ/kg) were also obtained for treatment RF + CR 4 t/ha.
机译:在2014年和2015年的伊达尔 - 兰迪亚农业研究所,新德里赛季农业研究所进行了田间实验,研究了水分保护技术对玉米生长,生产力和盈利能力的影响(Zea Mays L )。该实验在随机块设计中布置,固定的布局有3个复制。该治疗包括4种水分保护实践,VIZ。脊和沟(rf),rf +庄稼残留(Cr)@ 4 t / ha,rf + Cr @ 2 t / ha + Vam和扁平播种(Fs)。在不同的水分保护技术中,具有4 T / HA CR的RF对生长参数,VIZ具有显着影响。与非残留地块和FS相比,玉米的植物高度,干物质积累(DMA)和叶面积指数(LAI)。冠层温度抑郁(CTD)的值受到播种(DAS)后30和60天的治疗,但在90 DAS中保持不受影响。在30,60和90 DAS的SPAD值在所有阶段有显着不同,并且显示出正常曲线图案,最大值为60 das。 RF系统中的治疗酵母残留@ 4 T / HA分别产生了数量更高的谷物和秸秆产量为3.43和9.51 T / HA。在RF下种植的玉米含有4吨/哈克CR的水利用效率(WUE)为12.3kg / ha-mm,其次是RF + Cr 2 T / HA + VAM(10.9 kg / HA-mm)相比在RF + Cr 4 T / Ha(35.8×10〜3 / ha)下获得Fs(8.45kg / ha-mm)最大净返回,在Fs(22.7×10〜3 / ha)下。基于残留的处理,RF + Cr 4 T / HA有益:最大值的成本比(1.39)还获得最大能量强焦(2.32MJ /张)和特定能量(17.57MJ / kg)进行治疗RF + Cr 4 T / HA。

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