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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Productivity impacts and nutrient balances of an intensive potato-mungbean-rice crop rotation in multiple environments of Bangladesh
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Productivity impacts and nutrient balances of an intensive potato-mungbean-rice crop rotation in multiple environments of Bangladesh

机译:孟加拉国多种环境中马铃薯-绿豆-水稻密集轮作的生产力影响和养分平衡

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Bangladesh needs to produce more food on less land to assure future food security for an increasing population. The two techniques that need to be adopted more frequently are an increase in cropping intensity by producing two or more crops on the same piece of land, and an increase in the productivity of individual crops, particularly their ability to utilize basic or limiting resources such as water and nutrients. In this context, the present study was carried out to assess the most suitable crop rotation based on the dose of organic and inorganic fertilizers as a source of plant nutrients. The potato-mungbean-T. (transplanted) Aman rice (P-M-R) crop rotation was applied to three agro-ecological zones (AEZs) of Bangladesh (Bogra, AEZ-25; Joydebpur, AEZ-28; Jessore, AEZ-11). The results from a two-year experiment indicate that the yield of P-M-R was influenced by the nutrient management applied. Except for potato, higher yield was obtained in the second year. The yield of potato and T. Aman rice was highest when crop residues were incorporated. In all locations, N (nitrogen) and K (potassium) were depleted in both years, but P (phosphorus), S (sulphur), Zn (zinc) and B (boron) showed a positive balance. Even after completing two cropping cycles and incorporating crop residues with different levels of nutrients, there was little change in soil pH, organic matter (%), total N (%), P, K, S, Zn and B. However, in all three locations, organic matter (%), total N (%), P, K, S, Zn and B increased in plots into which crop residues had been incorporated. The soil test-based nutrient management choice that incorporated crop residues gave a higher net return (3506 US$ ha(-1)) than other nutrient management combinations (3351-3483 US$ ha(-1)). These results indicate that soil test-based nutrient management and an integrated plant nutrient system that incorporates crop residues are suitable for the potato-mungbean-T. Aman rice crop rotation in multiple environments of Bangladesh. (C) 2016 Elsevier B.V. All rights reserved.
机译:孟加拉国需要在更少的土地上生产更多的粮食,以确保未来人口增长的粮食安全。需要更频繁地采用的两种技术是通过在同一块土地上生产两种或多种农作物来提高耕种强度,以及提高单种作物的生产力,特别是它们利用基本资源或限制资源的能力,例如水和营养。在这种情况下,本研究是根据有机和无机肥料作为植物营养源的剂量来评估最合适的作物轮作的。马铃薯-绿豆-T。 (移植的)将安曼稻谷轮作(P-M-R)施用于孟加拉国的三个农业生态区(BoEZ,AEZ-25; Joydebpur,AEZ-28; Jessore,AEZ-11)。一项为期两年的实验结果表明,P-M-R的产量受所应用的养分管理影响。除马铃薯外,第二年获得了更高的产量。当掺入农作物残留物时,马铃薯和阿曼丁香稻的产量最高。在所有地区中,两年中氮(氮)和钾(钾)都被消耗掉了,但是磷(磷),硫(硫),锌(锌)和硼(硼)显示出正平衡。即使在完成两个种植周期并吸收了具有不同养分含量的农作物残留物之后,土壤的pH,有机质(%),总氮(%),磷,钾,硫,锌和硼的变化也很小。在种植了农作物残留物的地块中,有机质(%),总氮(%),磷,钾,硫,锌和硼三个位置增加。与其他养分管理组合(3351-3483 US $ ha(-1))相比,基于土壤试验的养分管理选择(包括农作物残渣)可提供更高的净收益(3506 US $ ha(-1))。这些结果表明,基于土壤测试的养分管理和结合了作物残留物的综合植物养分系统适用于马铃薯-绿豆-T。孟加拉国多种环境中的阿曼稻轮作。 (C)2016 Elsevier B.V.保留所有权利。

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