Impact of foliar applied nano-urea on growth, productivity and profitability of hybrid rice (Oryza sativa L.)

Sreeja Namasharma, Aditi Pahari, Abhisek Banik, Subhajit Pal, Megha Sana, Sukanta Pal, Hirak Banerjee
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Abstract

In lowland rice cultivation, the application of conventional urea fertilizer provides low N to rice plants and exhibits low N use efficiency (~ 30%) due to greater loss of N. Hence the present study hypothesized that nano-urea spray could fulfil N requirement of rice plants and thereby produce high yields. So, a field experiment was conducted on hybrid rice (cv. Arize-6444 Gold) at Regional Research Sub-Station, BCKV, Chakdaha, Nadia under new alluvial zone (NAZ) of West Bengal during winter (rabi) season of 2021-22 to assess the effect of nano-urea on growth attributes, yield components, yield, nutrient uptake and economics of hybrid rice.The experiment was laid out in randomized complete block design with six treatments [T1:100% RDN i.e. 150 kg ha-1 through urea, T2:100% N(Urea) + 2 foliar spray of nano-urea, T3:75% N (Urea) + 2 foliar spray of nano-urea, T4:50% N(Urea) + 2 foliar spray of nano-urea, T5:125% N (Urea) + 2 foliar spray of nano-urea, T6:Control], each replicated four times. All the treatments were consisted of a uniform recommended dose of 100% P and K (each of 80 kg ha-1) supplied through SSP and MOP, respectively, except for T6 (control). In each treatment, foliar spray was done with IFFCO nano-urea @ 4ml litre-1 of water twice at active tillering stage and panicle initiation stage. Results of the present experiment revealed that growth parameters of tested hybrid rice namely plant height, LAI, dry matter accumulation and crop growth rate registered better result under treatment T2 than other treatments. As expected, the above-mentioned growth attributes were lowest on receiving T6 treatment at almost all dates of observation. Among yield attributes of hybrid rice, number of panicles m-2(392), panicle length (32.46 cm) and panicle weight (5.58 g) were highest with treatment T5, while filled grains panicle-1(194) and 1000-grain weight (24.18 g) were maximum for T2 treatment. Highest grain yield (7.15 t ha-1) and HI (50.71%) of hybrid rice were obtained with T2 treatment, while the highest straw yield (7.20 t ha-1) was obtained with T5 treatment. The treatment T2 resulted in highest grain N (1.48%) and K (0.21%) content. Total cost of cultivation was highest in T5 (Rs. 77712 ha-1), but net return (Rs. 43720 ha-1) as well as B:C ratio (1.57) was highest for T2 treatment. Hence, the application of 100% RDN in conjunction with nano-urea spray twice at 25 and 50 DAT has been effective for higher productivity and profitability of hybrid rice cultivation.
叶面施用纳米尿素对杂交水稻生长、生产力和盈利能力的影响
在低地水稻栽培中,常规氮肥施用给水稻植株的氮含量较低,氮素损失较大,氮素利用效率较低(~ 30%),因此本研究假设纳米尿素喷雾可以满足水稻植株对氮的需求,从而实现高产。为此,对杂交水稻(cv。在西孟加拉邦新冲积带(NAZ)的BCKV, Chakdaha, Nadia区域研究分站,于2021-22冬(rabi)季评估纳米尿素对杂交水稻生长特性、产量组成、产量、养分吸收和经济的影响。试验采用随机完全区组设计,共设6个处理[T1:100% RDN (150 kg hm -1)尿素,T2:100% N(尿素)+ 2次纳米尿素叶面喷施,T3:75% N(尿素)+ 2次纳米尿素叶面喷施,T4:50% N(尿素)+ 2次纳米尿素叶面喷施,T5:125% N(尿素)+ 2次纳米尿素叶面喷施,T6:对照],每个重复4次。除T6(对照)外,所有处理均采用统一推荐剂量,分别通过SSP和MOP提供100%磷和钾(各80 kg ha-1)。每个处理分别在分蘖期和穗发育期叶片喷施IFFCO纳米尿素@ 4ml l -1水。本试验结果表明,T2处理对杂交水稻株高、叶面积指数、干物质积累量和作物生长速率的影响优于其他处理。正如预期的那样,上述生长属性在接受T6处理时几乎在所有观察日期都最低。杂交稻产量性状中,T5处理籽粒数m-2(392)、穗长(32.46 cm)和穗重(5.58 g)最高,T2处理籽粒数m-2(194)和千粒重(24.18 g)最高。T2处理的杂交稻籽粒产量最高(7.15 t ha-1), HI最高(50.71%),T5处理的秸秆产量最高(7.20 t ha-1)。T2处理籽粒N和K含量最高,分别为1.48%和0.21%。T5处理的栽培总成本最高(77712 ha-1),但T2处理的净收益(43720 ha-1)和B:C比(1.57)最高。因此,100% RDN与纳米尿素喷施结合,在25和50 DAT下喷施两次,可有效提高杂交水稻的生产力和盈利能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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