Increasing Cropping Intensity and Crop Productivity of Four Crops Based Mustard-Boro-T. Aus-T. Aman Cropping Pattern

A. Barman, S. Shome, Khatun, M. Masud, S. Akther
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引用次数: 1

Abstract

A field trial on soil test based (STB) fertilizer doses was conducted during the year of 2017-2018 and 2018-2019 in Jashore region (AEZ-11) to find out the most suitable fertilizer doses for four crop based cropping pattern considering the agronomic feasibility and economic return of the system. The experiment consisted of eight different treatments viz. T1: 100% NPKSZnB (STB), T2: T1 + 25% N, T3: T1 + 25% NP, T4: T1 + 25% NK, T5:T1 + 25% PK, T6:T1 + 25% NPK, T7: 75% of T1, T8: Native fertility. Randomized complete block design (RCBD) with three replications was followed. Data revealed that seed yield of mustard was remarkably influenced by fertilizer treatments while grain yield of other components of the cropping system was not affected significantly by the treatments except control or native fertility. It was observed that 25% more NPK over 100% STB dose provided the highest yield of all the component crops. The highest rice equivalent yield (3.34 t ha-1) was recorded from T6 and the lowest (1.88 t ha-1) from T8 treatment. Maximum gross return (Tk. 420000/ha) and marginal benefit cost ratio (4.08) were also obtained from T6 treatment. So, 25% NPK+ 100% STB dose of fertilizer could be followed for productive and remunerative rice based cropping system Mustard-Boro-T. Aus-T.Aman in AEZ-11. Bangladesh Agron. J. 2021, 24(1): 109-117
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提高四种芥菜基作物的种植强度和产量。Aus-T。阿曼种植模式
在2017-2018年和2018-2019年,在Jashore地区(AEZ-11)进行了土壤试肥(STB)施肥剂量的田间试验,以综合考虑4种作物为基础的种植模式的农艺可行性和经济效益,找出最适合的施肥剂量。试验包括8个不同处理,T1: 100% NPKSZnB (STB), T2: T1 + 25% N, T3: T1 + 25% NP, T4: T1 + 25% NK, T5:T1 + 25% PK, T6:T1 + 25% NPK, T7: T1 75%, T8:本地肥力。采用随机完全区组设计(RCBD), 3个重复。结果表明,氮肥处理对芥菜籽粒产量有显著影响,而除对照和本地肥力处理外,其他栽培系统的籽粒产量无显著影响。结果表明,在100%施施STB的基础上,施用25%的氮磷钾可获得最高的产量。T6处理水稻当量产量最高(3.34 t ha-1), T8处理最低(1.88 t ha-1)。T6处理获得最大总收益(42万塔卡/公顷)和边际效益成本比(4.08)。因此,25%氮磷钾+ 100% STB施量可适用于高产高产的“芥菜-硼- t”水稻种植体系。Aus-T。阿曼在AEZ-11。孟加拉国阿格龙。[j] .生物医学工程学报,2016,24(1):109-117
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审稿时长
10 weeks
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