期刊文献+

Variety distribution pattern and climatic potential productivity of spring maize in Northeast China under climate change 被引量:18

Variety distribution pattern and climatic potential productivity of spring maize in Northeast China under climate change
在线阅读 下载PDF
导出
摘要 This study was based on the daily meteorological data of 101 meteorological stations from 1971 to 2000 and the 0.25°×0.25° grid data from 1951 to 2100 simulated by RegCM3 under the future A1B climatic scenario published by National Climate Center,in combination with the demand of climatic condition for maize growth in Northeast China.The trajectory of agricultural climatic resources and the effects of climate change on variety distribution and climatic potential productivity of spring maize in Northeast China under future climate change were analyzed.The main agro-climatic resource factors include:the initial date daily average temperature stably passing 10℃(≥10℃),the first frost date,the days of growing period,the ≥10℃ accumulated temperature,and the total radiation and precipitation in the growing period.The results showed that:(1) in the coming 100 years,the first date of ≥10℃ would be significantly advanced,and the first frost date would be delayed.The days of growing period would be extended,the ≥10℃ accumulated temperature and the total radiation would be significantly increased.However,no significant change was found in precipitation.(2) Due to the climate change,the early-maturing varieties will be gradually replaced by late-maturing varieties in Northeast China,and the planting boundaries of several maize varieties would be extended northward and eastward.(3) There would be a significant change in the climatic potential productivity of maize in Northeast China with the high-value gradually moving towards northeast.(4) It was an effective way to increase the climatic potential productivity of maize by appropriate adjustment of sowing date. This study was based on the daily meteorological data of 101 meteorological stations from 1971 to 2000 and the 0.25x0.25 grid data from 1951 to 2100 simulated by RegCM3 under the future A1B climatic scenario published by National Climate Center, in combination with the demand of climatic condition for maize growth in Northeast China. The trajectory of agricultural climatic resources and the effects of climate change on variety distribution and climatic potential productivity of spring maize in Northeast China under future climate change were analyzed. The main agro-climatic resource factors include: the initial date daily average temperature stably passing 10~C (~〉10~C), the first frost date, the days of growing period, the ~〉10~C accumulated temperature, and the total radiation and precipitation in the growing period. The results showed that: (1) in the coming 100 years, the first date of 〉10C would be significantly advanced, and the first frost date would be delayed. The days of growing period would be extended, the 〉10C accumulated temperature and the total radiation would be significantly increased. However, no significant change was found in precipitation. (2) Due to the climate change, the early-maturing varieties will be gradually replaced by late-maturing varieties in Northeast China, and the planting boundaries of several maize varieties would be extended northward and eastward. (3) There would be a significant change in the climatic potential productivity of maize in Northeast China with the high-value gradu- ally moving towards northeast. (4) It was an effective way to increase the climatic potential productivity of maize by appropriate adjustment of sowing date.
出处 《Chinese Science Bulletin》 SCIE CAS 2012年第26期3497-3508,共12页
基金 supported by the Research and Development Special Fundfor Public Welfare Industry (Meteorology) (GYHY201106020)
关键词 中国东北地区 气候生产潜力 未来气候变化 品种分布 春玉米 分布格局 农业气候资源 气象观测站 climate change, agricultural climate resource, variety distribution, climatic potential productivity, adjustment of sowing date
  • 相关文献

参考文献21

二级参考文献235

共引文献856

同被引文献357

引证文献18

二级引证文献572

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部