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Efficient utilization of sewage water for improving the forage yield and quality of bajra-napier hybrid grass

机译:有效利用污水提高巴杰-纳皮尔杂草的牧草产量和质量

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Field experiments were conducted at Agricultural College and Research Institute, Madurai to compare the effect of sewage effluent on yield and quality of Bajra Napier hybrid grass with two irrigation sources viz., ordinary water (I_1) and sewage effluent (I_2) as main plots and four N levels viz., O, 50, 75 and 100 kg N ha~(-1) as sub plot treatment in a split plot design with three replications. BN 2 grass was grown as a test crop. Among the different levels of N, application of 100 kg N ha~(-1) recorded the highest green fodder (303 t ha~(-1)), dry matter (61 t ha~(-1)) and crude protein (5.26 t ha~(-1)) yield. Sewage effluent irrigation increased the green fodder, dry fodder and crude protein yield. The interaction effect between sewage effluent irrigation and N showed that 100 kg N ha~(-1) with sewage effluent irrigation recorded the highest green fodder yield of 357 t ha~(-1), dry matter yield of 72 t ha~(-1) and crude protein yield of 6.37 t ha~(-1). Sewage water irrigation showed increased total K, Ca, Fe, Mn and Zn content in BN 2 grass. The oxalic acid content was within the safe limit at all the levels of N tried (2.04-2.08 percent) and with sewage effluent irrigation (2.14-2.61 percent). A decrease in crude fibre content was observeddue to the increased addition of N at both the source of irrigation because of involvement of N in protein synthesis and consequent reduction in carbohydrate, ultimately leading to better digestibility of the grass.
机译:在马杜赖的农业学院和研究所进行了田间试验,比较了两种主要灌溉源(普通水(I_1)和污水(I_2))对污水对Bajra Napier杂草产量和质量的影响。在三个重复的分割地块设计中,将四个氮水平分别为O,50、75和100 kg N ha〜(-1)作为子地块处理。生长了BN 2草作为试验作物。在不同水平的氮中,施用100 kg N ha〜(-1)记录了最高的绿色饲料(303 t ha〜(-1)),干物质(61 t ha〜(-1))和粗蛋白(收率5.26 t ha〜(-1))。污水灌溉增加了绿色饲料,干饲料和粗蛋白产量。污水灌溉与氮素的交互作用表明,污水灌溉下100 kg N ha〜(-1)的绿饲料产量最高,为357 t ha〜(-1),干物质产量为72 t ha〜(- 1)的粗蛋白产量为6.37 t ha〜(-1)。污水灌溉显示BN 2草中总K,Ca,Fe,Mn和Zn含量增加。在所有尝试的氮水平(2.04-2.08%)和污水灌溉条件下(2.14-2.61%),草酸含量均在安全范围内。由于氮在蛋白质合成中的参与以及随之而来的碳水化合物的减少,最终在灌溉源增加了氮的添加,从而导致粗纤维含量的减少,最终导致草的消化率更高。

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