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Technology Spillovers and Land Use Change: Empirical Evidence from Global Agriculture

机译:技术溢出率和土地利用变革:全球农业的经验证据

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We estimate the effects of agricultural technological progress on cropland expansion at various geographical resolutions, from the country level to the world as a whole, while formally accounting for the international interdependence of national supply responses. Evidence for these effects has thus far been scant, contributing to polarized perceptions about the potential for improving agricultural technologies as a means to slow down deforestation. We find that, in most countries of the world, growth in total factor productivity (TFP) is either uncorrelated or is positively associated with cropland expansion. Yet worldwide TFP growth have been an important source of global land savings. The divergence between the country-level and the global results is explained by the changes in production patterns as countries interact in international markets. Our preferred point estimate of the elasticity of global cropland to global TFP growth is -0.34. Moreover, we estimate that satisfying food demand from 1991 to 2010 without observed TFP growth would have necessitated an additional 173 million hectares, or close to 10% of the area covered by tropical rain forests.
机译:我们估计农业技术进步对各种地理决议的农田扩张的影响,从国家一级到全世界,同时正式核算了国家供应响应的国际相互依赖性。这些效果的证据迄今为止,有助于对改善农业技术的潜力的极化看法,作为减缓砍伐森林砍伐的手段。我们发现,在世界大多数国家,总要素生产率(TFP)的增长是不相关的,或与农田扩张有关。然而,全球TFP增长一直是全球土地储蓄的重要来源。国家一级和全球结果之间的分歧是通过各国在国际市场互动的情况下的生产模式的变化来解释。我们对全球农田为全球TFP增长的弹性的首选点估计为-0.34。此外,我们估计,在没有观察到的TFP增长的情况下满足1991年至2010年的粮食需求将需要额外的1.73亿公顷,或接近热带雨林所涵盖的地区的10%。

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