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12篇 您的检索式:作者名="Hidefumi IMURA"
    题名 作者 年代 出处 被引量
1Quantifying the cool island intensity of urban parks using ASTER and IKONOS data显示文摘Xin Cao Akio Onishi Jin Chen Hidefumi Imura 2010Landscape and Urban Planning2010,,4:1
2Structural decomposition analysis of the carbonization process in Beijing:A regional explanation of rapid increasing carbon dioxide emission in China显示文摘Xin Tian Miao Chang Hiroki Tanikawa Feng Shi Hidefumi Imura 0,,53:1
3Potential effects of climate change on runoff in the Yellow River Basin of China显示文摘Zhang Guanghui Fu S H Fang W H Imura Hidefumi Zhang X C 2007Transactions of the American Society of Agricultural and Biological Engineers2007,50,3:1
4Structural decomposition analysis of the carbonization process in Beijing: A regional explanation of rapid increasing carbon dioxide emission in China显示文摘Xin Tian Miao Chang Hiroki Tanikawa Feng Shi Hidefumi Imura 2013Energy Policy2013,,:1
5A SVM-based method to extract urban areas from DMSP-OLS and SPOT VGT data显示文摘Xin Cao Jin Chen Hidefumi Imura Osamu Higashi 2009Remote Sensing of Environment2009,,10:1
6Analysis of driving forces behind diversified carbon dioxide emission patterns in regions of the mainland of China显示文摘China has large regional disparities in carbon dioxide CO_(2) emissions with economic development among its 31 provincial mainland regions.This paper investigates these disparities in CO_(2) emission patterns and identifies the factors underlying the differences.Results show that the 30 study China's mainland provinces(Tibet not included)can be divided into seven groups with three typical CO_(2) emission patterns.Index decomposition results indicate that changes in economic development,the industrial sector,and technology contribute far more to increased CO_(2) emissions than do population,energy structure,and other sectors.Close inspection reveals that different industry structures and technology contribute greatly to the differences observed in CO_(2) emissions between provinces with similar economic output.This study highlights the importance of region-specific industrial structure adjustment policies,especially for regions transitioning to heavy industry and for those still in the primary stages of industrialization.The potential application of a domestic carbon emissions trading system,to encourage regional investment in updated technology,is also discussed.Xin TIAN Hidefumi IMURA Miao CHANG Feng SHI Hiroki TANIKAWA 2011Frontiers of Environmental Science & Engineering2011,5,3:1
7Forecasting of future coal demand and transportation in China显示文摘NAKAYAMA HIROFUMI IMURA HIDEFUMI 1997Environmental Systems Research1997,25,:1
8Towards Sustainable Ur- ban Water Resource Management: A Case Study in TianJin, China 显示文摘Xuemei Bai & Hidefumi Imura 2001Sustainable Development2001,,9:1
9Consistency of accuracy assessment indices for soft classification: Simulation analysis显示文摘Jin Chen Xiaolin Zhu Hidefumi Imura Xuehong Chen 2009ISPRS Journal of Photogrammetry and Remote Sensing2009,,2:1
10Towards Sustainable Urban Water Resource Management: A Case Study in TianJin, China显示文摘Xuemei Bai & Hidefumi Imura 2001Sustainable Development2001,,9:1
11SD3, an Arabidopsis thaliana Homolog of TIM21, Affects Intracellular ATP Levels and Seedling Development显示文摘植物怎么由房间分割,延伸,和区别控制他们的生长,糟糕被理解。我们描绘了幼苗致命的变异的分离失真 3 (sd3 ) 那出现了一当在光成长并且在黑暗中,与减少的 ploidy 层次有短胚轴时,很使显型相形见绌。SD3 的相应基因在内部 mitochondrial 膜上与高类似编码蛋白质到酵母 translocase 21 (TIM21 ) ,它是 TIM23 建筑群的一个部件。确实, SD3 蛋白质熔化了到在线粒体局部性的 GFP。SD3 overexpression 在黑暗中在光和胚轴厚度增加了子叶尺寸。为呼吸链的建筑群 III 和 IV 的几个子单元的基因的表示在 SD3-overexpressing 植物是起来调整的。而且,而 sd3 的那些是低的,这些植物显示出 ATP 的高水平。这些结果建议 SD3 由提起呼吸链的子单元基因的表示在房间尺寸导致了增加并且因此增加了细胞内部的 ATP 层次。我们建议线粒体控制调整的细胞内部的 ATP 层次种机关尺寸。Hidefumi Hamasaki Takeshi Yoshizumi Naoki Takahashi Mieko Higuchi Takashi Kuromori Yuko Imura Hiroaki Shimada Minami Matsui 2012Molecular Plant2012,5,2:0
12Study on Residential Water Use in North China:Analysis of Nationwide Statistical Data and Case Study of Taiyuan City显示文摘Residential water use is gradually becoming the focus in China's municipal water supply planning and management in recent years.Little is known,however,about the residential water use in modern China due to the transition of economy and enhancement of management on water conservation.In order to better understand the characteristics of residential water use in North China,a model for identifying the determinants of residential water use was established and analyzed by using panel data and cross-section data methodologies.Then Taiyuan city,the capital city of Shanxi Province in Northern China was selected as a case study.Both the analyses and field investigation indicate that the relatively slow increase of residential water use in recent years may result from the implementation of strict laws and regulations on water conservation.And through the investigation, first-hand information about water consumption pattern,water reuse/conservation,people's attitude toward water quantity and quality,etc.have been obtained.Imura Hidefumi 2006Chinese Journal of Population,Resources and Environment2006,4,4:0
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