Agroecology Department, National Autonomous University of Nicaragua, Leon, Leon, 21000, Nicaragua.
Colegio de Posgraduados, Puebla, 72760, Mexico.
F1000Res. 2024 Jun 18;11:1382. doi: 10.12688/f1000research.128071.3. eCollection 2022.
This work was focused on measuring environmental inefficiency in Mexican dairy farms, considering climate change variables related to the emission of greenhouse gases (GHG) and planetary geomagnetic activity.
The applied methodology measures the eco-efficiency of Mexican dairy farms using the empirical application of a stochastic frontier model of the bioeconomy. The productive sector of the bioeconomy studied was the eco-intensification of the livestock production system (dairies). The environmental inefficiency effect was assumed to be a distribution-independent truncation of a normal distribution with constant variance, while the mean was a linear environmental function of the observable variable.
The results showed that the coefficients of the frontier model were highly significant, highlighting the investment in livestock (50%). The inefficiency model had an impact on climate variation with greenhouse gas emissions CH4 (1.96%). The results of the environmental technical efficiency in geometric average were 81.28%. The producers that reached the border with a technical efficiency equal to 1 are the references for the rest, marking the relative technical efficiency.
It was concluded that the coefficients in the model were very significant, showing the level of investment in livestock (50%). The low-performance model estimates the impact of climate change on GHG emissions CH4 (1.96%) explaining the trend of increasing GHG emissions, keeping in view that the management of food and cattle during the study period were affected by summer feeding, which allowed considering the activity of GHG emissions. According to the results, the geometric mean environmental performance of engineering is 81.28%.
本研究旨在衡量墨西哥奶牛场的环境效率,考虑与温室气体(GHG)排放和行星地磁活动相关的气候变化变量。
应用的方法使用生物经济的随机前沿模型的经验应用来衡量墨西哥奶牛场的生态效率。所研究的生物经济生产部门是畜牧业生产系统(奶牛场)的生态强化。环境效率的影响被假定为正态分布的分布独立截断,其方差恒定,而平均值是可观察变量的线性环境函数。
结果表明,前沿模型的系数高度显著,突出了对畜牧业的投资(50%)。无效模型对温室气体排放 CH4 的气候变化有影响(1.96%)。几何平均的环境技术效率的结果为 81.28%。达到技术效率等于 1 的边界的生产者是其余生产者的参考,标志着相对技术效率。
得出的结论是,模型中的系数非常显著,显示了对畜牧业的投资水平(50%)。低绩效模型估计气候变化对温室气体排放 CH4 的影响(1.96%),解释了温室气体排放增加的趋势,同时考虑到在研究期间,食品和牛的管理受到夏季饲养的影响,这允许考虑温室气体排放的活动。根据结果,工程的几何平均环境绩效为 81.28%。