Simulation of future global warming scenarios in rice paddies with an open-field warming facility

文献类型: 外文期刊

第一作者: Rehmani, Muhammad Ishaq Asif

作者: Rehmani, Muhammad Ishaq Asif;Zhang, Jingqi;Li, Ganghua;Ata-Ul-Karim, Syed Tahir;Wang, Shaohua;Yan, Chuan;Liu, Zhenghui;Ding, Yanfeng;Rehmani, Muhammad Ishaq Asif;Zhang, Jingqi;Li, Ganghua;Wang, Shaohua;Yan, Chuan;Liu, Zhenghui;Ding, Yanfeng;Kimball, Bruce A.;Yan, Chuan

作者机构:

关键词: Ecosystem warming;climate change;canopy temperature;global change;infrared heating;plant-climate interactions;rice;Yangtze River valley

期刊名称:PLANT METHODS ( 影响因子:4.993; 五年影响因子:5.312 )

ISSN: 1746-4811

年卷期: 2011 年 7 卷

页码:

收录情况: SCI

摘要: To simulate expected future global warming, hexagonal arrays of infrared heaters have previously been used to warm open-field canopies of upland crops such as wheat. Through the use of concrete-anchored posts, improved software, overhead wires, extensive grounding, and monitoring with a thermal camera, the technology was safely and reliably extended to paddy rice fields. The system maintained canopy temperature increases within 0.5 degrees C of daytime and nighttime set-point differences of 1.3 and 2.7 degrees C 67% of the time.

分类号:

  • 相关文献

[1]USING INFRARED SENSOR FOR LARGE AREA CANOPY TOTAL TEMPERATURE MEASUREMENTS OF RICE PLANTS. Wang, M.,Dong, D.,Zheng, W.,Jiao, L.,Zhao, X.,Zhao, C.. 2013

[2]A comparison about the paddy fields applicability of two water stress index model by infrared automatic monitoring the canopy temperature of rice. Gao, Shijie,Li, Xiaohui,Li, Jihong,Dong, Yingshan,Gao, Jiping,Zhang, Wenzhong. 2015

[3]Potential impacts of climate change and climate variability on China's rice yield and production. Xiong, Wei,Lin, Erda,Xiong, Wei,Lin, Erda,Conway, Declan,Holman, Ian.

[4]A possible mechanism of mineral responses to elevated atmospheric CO2 in rice grains. Guo Jia,Wang Xiao-wen,Guo Jia,Zhang Ming-qian,Zhang Wei-jian,Zhang Ming-qian,Wang Xiao-wen,Zhang Wei-jian. 2015

[5]The Impact of Climate Change on Rice Spatial Distribution in the Northeast China Plain. Tang, Pengqin. 2012

[6]Interactive Effects of Elevated CO2 and Temperature on Rice Planthopper, Nilaparvata lugens. Huang Jian-li,Hu Chao-Xing,Hou Mao-lin. 2014

[7]Geographic Variation of Rice Yield Response to Past Climate Change in China. Yang Jie,Yang Xiao-guang,Xiong Wei,Cao Yang,Feng Ling-zhi,Xiong Wei,Xiong Wei. 2014

[8]Characterization of Grain Quality and Starch Fine Structure of Two Japonica Rice (Oryza Sativa) Cultivars with Good Sensory Properties at Different Temperatures during the Filling Stage. Zhang, Changquan,Zhou, Lihui,Lu, Huwen,Zhou, Xingzhong,Qan, Yiting,Li, Qianfeng,Lu, Yan,Gu, Minghong,Liu, Qiaoquan,Zhou, Lihui,Zhu, Zhengbin.

[9]Short-term water management at early filling stage improves early-season rice performance under high temperature stress in South China. Kong, Leilei,Ashraf, Umair,Cheng, Siren,Rao, Gangshun,Mo, Zhaowen,Tian, Hua,Pan, Shenggang,Tang, Xiangru,Kong, Leilei,Ashraf, Umair,Cheng, Siren,Rao, Gangshun,Mo, Zhaowen,Tian, Hua,Pan, Shenggang,Tang, Xiangru.

[10]Effect of manipulating animal stocking rate on the carbon storage capacity in a degraded desert steppe. Wang, Zhongwu,Han, Guodong,Zhao, Mengli,Ding, Haijun,Li, Zhiguo,Wang, Jing,Hao, Xiying,Hamilton, Alistair,Liu, Yongzhi,A, Lata,Hexige, Baoyin. 2017

[11]Effects of warming and nitrogen deposition on the coupling mechanism between soil nitrogen and phosphorus in Songnen Meadow Steppe, northeastern China. Zhang, Nanyi,Song, Piao,Guo, Jixun,Gao, Yingzhi,Guo, Rui,Song, Piao.

[12]Using river microalgae as indicators for freshwater biomonitoring: Review of published research and future directions. Wu, Naicheng,Dong, Xuhui,Wu, Naicheng,Riis, Tenna,Dong, Xuhui,Liu, Yang,Liu, Yang,Wang, Chao,Baattrup-Pedersen, Annette.

[13]Grassland productivity and carbon sequestration in Mongolian grasslands: The underlying mechanisms and nomadic implications. Shao, Changliang,Chen, Jiquan,Lafortezza, Raffaele,Abraha, Michael,John, Ranjeet,Ouyang, Zutao,Qi, Jiaguo,Chu, Housen,Lafortezza, Raffaele,Dong, Gang,Batkhishig, Ochirbat,Zhang, Yaoqi. 2017

[14]Evaluation of the livelihood vulnerability of pastoral households in Northern China to natural disasters and climate change. Ding, Wenqiang,Ren, Weibo,Li, Ping,Hou, Xiangyang,Li, Xiliang,Xie, Jihong,Ding, Yong,Sun, Xiaolong.

[15]How Could Agricultural Land Systems Contribute to Raise Food Production Under Global Change?. Wu Wen-bin,Yu Qiang-yi,Yang Peng,Tang Hua-jun,Peter, Verburg H.,You Liang-zhi. 2014

[16]Proposing an interdisciplinary and cross-scale framework for global change and food security researches. Yu, Qiangyi,Wu, Wenbin,Yang, Peng,Li, Zhengguo,Tang, Huajun,Yu, Qiangyi,Wu, Wenbin,Yang, Peng,Li, Zhengguo,Tang, Huajun,Xiong, Wei. 2012

[17]Can litter addition mediate plant productivity responses to increased precipitation and nitrogen deposition in a typical steppe?. Shen, Yue,Yang, Xin,Liu, Nan,Chen, Jishan,Zhang, Yingjun,Chen, Wenqing,Yang, Gaowen,Sun, Xiao,Chen, Jishan.

[18]When variability outperforms the mean: trait plasticity predicts plant cover and biomass in an alpine wetland. Li, Honglin,Xu, Danghui,Du, Guozhen,Yu, Kailiang,Ratajczak, Zak,Nippert, Jesse B.,Tondrob, Dorjeeh,Li, Wei.

[19]Comparison of greenhouse gas emissions of chemical fertilizer types in China. Zhan-biao Wang,Jing Chen,Shu-chun Mao,Ying-chun Han,Fu Chen,Li-feng Zhang,Ya-bing Li,Cun-dong Li.

[20]Food Security, Food Prices and Climate Change in China: a Dynamic Panel Data Analysis. Wang, Jintian. 2010

作者其他论文 更多>>