Improving Resource Use Efficiency of Cereal Based Cropping Systems with Integration of Best Management with Conservation Agriculture Under Changing Agricultural Scenarios in Cauvery Delta of Tamil Nadu

Sheetal Sharma, R. Rajendran, Ravi, P. Panneerselvan, P. Janarthanan, Y. Saharawat, J. Ladha
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引用次数: 3

Abstract

Cropping systems in Cauvery Delta Zone of Tamil Nadu is intensive rice based with double or triple rice crops in a year. The rice system in the region is threatened by yield stagnation, scarcity of water and labour, increased costs of cultivation, and resource degradation. During 2009-2012, we evaluated four scenarios involving a range of best management practices (BMPs) with and without conservation agriculture (CA) components for improving the system productivity and economic returns of rice-based system. Four scenarios were (i) current farmers’ practice (S1), (ii) BMPs with conventional tillage (S2), (iii) BMPs with conservation agricultural technologies (S3), and (iv) BMPs with conservation agricultural technologies along with crop diversification (S4). The key parameters tested were crop yields, system productivity, labour and energy use efficiency, and economics. Results indicated that compared to S1, the BMPs in S2 improved system crop productivity (22–57%), and net economic returns (67–166%) with reduced cultivation cost (10-16%), and total system energy use (4.4-8%), and higher labour productivity (18-59%). Compared to farmers practices (S1), BMPs with CA practices such as zero/reduced tillage, direct seeding of rice in dry season and mechanical transplanting of rice in wet season (S3) had lower labor (14-25%) and energy (20-37%) usages with higher economic returns (25-73%). Crop diversification with maize in place of dry season rice in S4 though saved in labor input, crop productivity and economic returns were also lower. This study concluded that there is potential of improving productivity and economic returns of rice based cropping systems with BMPs and CA in Cauvery Delta Zone of Tamil Nadu. However, more medium to long-term adaptive system research is needed to identify compatible alternative crops/management practices in rice based systems to diversify the food production and increase the system productivity while conserving the natural resources.
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泰米尔纳德邦Cauvery三角洲农业情景变化下最佳管理与保护性农业相结合提高谷物种植系统资源利用效率
泰米尔纳德邦的Cauvery三角洲地区的种植系统是集约化水稻,每年种植两倍或三倍水稻。该地区的水稻系统受到产量停滞、水和劳动力短缺、种植成本增加和资源退化的威胁。在2009-2012年期间,我们评估了四种情景,涉及一系列最佳管理实践(BMPs),包括和不包括保护性农业(CA)组成部分,以提高水稻系统的生产力和经济回报。四种情景分别是:(i)当前农民的做法(S1), (ii)常规耕作的bmp (S2), (iii)保护性农业技术的bmp (S3),以及(iv)保护性农业技术与作物多样化的bmp (S4)。测试的关键参数是作物产量、系统生产力、劳动力和能源利用效率以及经济性。结果表明,与S1相比,S2的BMPs提高了系统作物生产力(22-57%),净经济效益(67-166%),降低了栽培成本(10-16%),降低了系统总能耗(4.4-8%),提高了劳动生产率(18-59%)。与农民做法(S1)相比,采用免耕/免耕、旱季水稻直接播种和旱季水稻机械移栽(S3)等CA做法的bmp具有较低的劳动力(14-25%)和能源(20-37%)消耗,经济效益较高(25-73%)。S4以玉米代替旱季稻的作物多样化虽然节省了劳动力投入,但作物生产力和经济效益也较低。该研究的结论是,在泰米尔纳德邦的Cauvery三角洲地区,采用bmp和CA的水稻种植系统具有提高生产力和经济回报的潜力。然而,需要更多的中长期适应性系统研究,以确定水稻系统中兼容的替代作物/管理实践,以使粮食生产多样化,提高系统生产力,同时保护自然资源。
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