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Adapting dryland agriculture to climate change: Farming implications and research and development needs in Western Australia

机译:使旱地农业适应气候变化:西澳大利亚州的农业影响和研究与开发需求

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摘要

The Western Australian wheat-belt has experienced more rainfall decline than any other wheat-cropping region in Australia. Future climate change scenarios suggest that the Western Australian wheat-belt is likely to see greater future reductions in rainfall than other regions, together with a further increase in temperatures. While these changes appear adverse for water-limited rain-fed agriculture, a close analysis of the changes and their impacts reveals a more complex story. Twentieth century changes in rainfall, temperature and atmospheric CO2 concentration have had little or no overall impact on wheat yields. Changes in agricultural technology and farming systems have had much larger impacts. Contrary to some claims, there is no scientific or economic justification for any immediate actions by farmers to adapt to long-term climate change in the Western Australian wheat-belt, beyond normal responses to short-term variations in weather. Rather than promoting current change, the most important policy response is research and development to enable farmers to facilitate future adaptation to climate change. Research priorities are proposed.
机译:西澳大利亚州小麦带的降雨降幅超过澳大利亚任何其他小麦种植区。未来的气候变化情景表明,与其他地区相比,西澳大利亚州小麦带未来的降雨减少量可能更大,而温度还会进一步升高。尽管这些变化似乎对用水有限的雨养农业不利,但对变化及其影响的仔细分析揭示了一个更为复杂的故事。 20世纪的降雨,温度和大气CO2浓度变化对小麦单产几乎没有或没有总体影响。农业技术和耕作制度的变化产生了更大的影响。与某些主张相反,除了对短期天气变化的正常反应之外,农民采取任何立即行动来适应西澳大利亚州小麦带的长期气候变化没有科学或经济依据。除了促进当前的变化外,最重要的政策对策是研发,使农民能够促进未来对气候变化的适应。提出了研究重点。

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