Maize Output Supply Response to Climatic and other Input Variables in Ethiopia

Abera Gayesa Tirfi, A. Oyekale
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引用次数: 1

Abstract

Climate change is among the major challenges to sustainable agricultural production in Ethiopia. Production of cereal crops, especially maize, is very responsive to changes in rainfall and temperature, as climatic parameters influencing productivity. This paper analyzes how climatic and other variables affect the supply of maize in Ethiopia. The data were obtained from secondary sources and cover the period 1981–2018. Data were analyzed using the Autoregressive Distributed Lag (ARDL) approach. The Akaike Information Criterion (AIC), Schwarz Information Criterion (SIC), and Hannan-Quinn Information Criterion (HQ) were used to select the optimum number of lags. In order to detect whether unit root is present in the series, Augmented Dickey-Fuller (ADF) and Philips-Perron (PP) tests were carried out. The presence of long-run equilibrium was found between maize output and temperature, rainfall, and other included variables. The results show that, in both the long and shortrun, all included climatic variables had a negative relationship with maize output supply, although temperature showed statistical insignificance (P>0.10). The result showed that maize crops are highly sensitive to extremes of rainfall – both shortage in the initial growing period and excessin the vegetative and fruiting stages. It was concluded that farmers face climate-related risk due to variations, particularly in rainfall. Therefore, farmers should adapt by using short-duration and climate-tolerant varieties of maize, along with engagement with eco-friendly production systems.
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埃塞俄比亚玉米产量供应对气候和其他输入变量的响应
气候变化是埃塞俄比亚可持续农业生产面临的主要挑战之一。谷类作物,特别是玉米的生产对降雨和温度的变化非常敏感,因为气候参数会影响生产力。本文分析了气候和其他变量如何影响埃塞俄比亚的玉米供应。数据来自二手来源,涵盖1981-2018年。数据分析采用自回归分布滞后(ARDL)方法。采用Akaike信息准则(AIC)、Schwarz信息准则(SIC)和Hannan-Quinn信息准则(HQ)选择最优滞后数。为了检测该系列中是否存在单位根,进行了增强Dickey-Fuller (ADF)和phillips - perron (PP)检验。发现玉米产量与温度、降雨和其他包括变量之间存在长期平衡。结果表明,在长期和短期内,所有气候变量都与玉米产量供应呈负相关,但温度与玉米产量供应呈显著负相关(P>0.10)。结果表明,玉米作物对极端降水高度敏感——生长初期降水不足,营养和结实期降水过多。结论是,由于气候变化,特别是降雨,农民面临着与气候相关的风险。因此,农民应该通过使用短耕期和耐气候的玉米品种来适应,同时参与生态友好型生产系统。
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来源期刊
Asian Journal of Agriculture and Rural Development
Asian Journal of Agriculture and Rural Development Social Sciences-Geography, Planning and Development
CiteScore
1.30
自引率
0.00%
发文量
28
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