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首页> 外文期刊>Outlook on Agriculture >Paddy in saline water: Analysing variety-specific effects of saline water intrusion on the technical efficiency of rice production in Vietnam
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Paddy in saline water: Analysing variety-specific effects of saline water intrusion on the technical efficiency of rice production in Vietnam

机译:稻田盐水:分析盐水侵入盐水侵入越南水稻生产技术效率的品种特异性效果

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摘要

The purpose of our study is to evaluate the impact of saltwater intrusion on the productivity and technical efficiency (TE) of rice farms in Central Vietnam using the stochastic frontier (SF) production function. In contrast to existing studies, this research quantitatively analyses rice variety and season-differentiated impact of soil salinity (as measured by electrical conductivity (EC)) on the TE of rice production. The empirical results indicate that salinity induces significantly varying negative impacts on yield and technical inefficiency of rice farms depending on the salinity class, variety planted and the season. TE begins to sharply decline after reaching salinity class 3 (EC = 4-8 dS/m) and drops to zero under salinity class 4 (EC = 8-16 dS/m) unless salt-tolerant (ST) varieties are planted. A 1% increase in the EC level decreases rice yields by 0.24% in various SF models, while TE shows a cubic relationship with EC, with negative coefficients for linear and quadratic terms. A combination of farm plots consolidation, irrigation, integrated pest management, input optimisation and shifts in varietal selection can potentially offset the yield decline caused by saline intrusion for salinity classes 1 to 4, while adoption of ST varieties seems to be the best option for higher salinity classes over 4. These adaptation measures could also help farmers to avoid maladaptive options such as increased use of pesticide sprays to offset the yield losses due to soil salinity resulting from saline water intrusion. The insights offered by the study is applicable to coastal delta regions cultivating rice in whole of Asia and in other continents.
机译:我们研究的目的是评估康沃尔侵入越南中部稻田生产率和技术效率(TE)的影响,使用随机边境(SF)生产功能。与现有研究相比,该研究定量分析了水稻盐度的水稻品种和季节分化的影响(通过电导率(EC)测量的水稻生产。经验结果表明盐度根据盐度类,种植品种和本赛季的盐度类,盐度诱导显着不同的对水稻农场产量和技术效率的影响。除非种植耐盐(ST)品种,否则在盐度3(EC = 4-8ds / m)后开始急剧下降(EC = 4-8ds / m),并在盐度等级4(EC = 8-16ds / m)下滴到零。在各种SF型号中,EC水平的1%增加将水稻产量降低0.24%,而TE显示与EC的立方关系,具有线性和二次术语的负系数。农场绘图整合,灌溉,综合害虫管理,输入优化和变形的组合可以抵消盐度侵入盐度1至4的盐水侵入引起的产量下降,而ST品种的采用似乎是最高的选择盐度课程超过4.这些适应措施还可以帮助农民避免使用盐水侵入引起的土壤盐度抵消造成农药喷雾剂的使用损失等不良选择。该研究提供的见解适用于沿海三角洲地区培养整个亚洲和其他大陆的米饭。

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