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10篇 您的检索式:作者名="Jun MURASE"
    题名 作者 年代 出处 被引量
1中国云南高原抚仙湖和星云湖水系氮和磷的分布状况和动态变化(英文)显示文摘20 0 0年 1 1月和 2 0 0 1年 6月 ,通过深入细致的实地调查和分析所收集的样本 ,对抚仙湖和星云湖水系氮和磷的分布状况与动态变化进行了研究。星云湖的氮磷总量处在一个高浓度状态 ,并伴随着蓝藻水华的大爆发 ,而抚仙湖的氮磷总量浓度是星云湖的二十分之一到四十分之一。在雨季 ,抚仙湖的溶解磷和磷总量随着深度而增加 ,这暗示着下层滞水带对有机磷微粒活跃的降解作用以及由雨季地表径流增加而带来的大量的土壤矿石的沉积。在已测量和已发表资料的基础上 ,检查对星云湖和抚仙湖氮磷总量的预测。星云湖大部分外来的磷和氮从一个出口流出 ,但是估计进入抚仙湖 97%的磷和 2 5%的氮被埋藏在沉积物里。反硝化作用可能是抚仙湖中余留总氮耗损的原因。坂本充 杉山雅人 丸尾雅启 Jun MURASE 宋学良 张子雄 2002云南地理环境研究2002,14,2:8
2抚仙湖有机碳的分布状况与动态变化(英文)显示文摘通过对位于中国西部的云南高原上的抚仙湖、星云湖及其上游的有机碳的分布状况和动态变化的调查 ,评估出这些湖泊的有机物对水质的影响。上游漂移来的有机碳对湖泊有机物动态变化的贡献比本湖泊生成的有机物的贡献小得多。抚仙湖主要有机物的增长是由于过去的 2 0年间湖水水质退化。早川秀和 坂本充 Jun MURASE 宋学良 张子雄 2002云南地理环境研究2002,14,2:2
3Plant origin of Okinawan propolis: honeybee behavior observation and phytochemical analysis 显示文摘Shigenori Kumazawa Jun Nakamura Masayo Murase 2008Naturwissenschaften2008,,95:1
4Plant origin of Okinawan propolis: honeybee behavior observation and phytochemical analysis显示文摘Shigenori Kumazawa Jun Nakamura Masayo Murase Mariko Miyagawa Mok-Ryeon Ahn Shuichi Fukumoto 2008Naturwissenschaften2008,,8:1
5Linking microbial community dynamics to rhizosphere carbon flow in a wetland rice soil显示文摘Yahai Lu Jun Murase Akira Watanabe Atsuko Sugimoto Makoto Kimura 2004FEMS Microbiology Ecology2004,,2:1
6Identification of microbial communities that assimilate substrate from root cap cells in an aerobic soil using a DNA-SIP approach显示文摘Yong Li Chol Gyu Lee Takeshi Watanabe Jun Murase Susumu Asakawa Makoto Kimura 2011Soil Biology and Biochemistry2011,,9:1
7Methano-genic archaeal communities developed in paddy fields in the KojimaBay polder, estimated by denaturing gradient gel electrophoresis, real-time PCR and sequencing analyses显示文摘Watanabe Takeshi Canyani Vita Ratri Murase Jun 2009Soil Science and Plant Nutrition2009,55,:1
8The Giant Radio Array for Neutrino Detection(GRAND):Science and design显示文摘The Giant Radio Array for Neutrino Detection(GRAND)is a planned large-scale observatory of ultra-high-energy(UHE)cosmic particles,with energies exceeding 10~8 Ge V.Its goal is to solve the long-standing mystery of the origin of UHE cosmic rays.To do this,GRAND will detect an unprecedented number of UHE cosmic rays and search for the undiscovered UHE neutrinos and gamma rays associated to them with unmatched sensitivity.GRAND will use large arrays of antennas to detect the radio emission coming from extensive air showers initiated by UHE particles in the atmosphere.Its design is modular:20 separate,independent sub-arrays,each of 10000 radio antennas deployed over 10000 km^2.A staged construction plan will validate key detection techniques while achieving important science goals early.Here we present the science goals,detection strategy,preliminary design,performance goals,and construction plans for GRAND.Jaime Alvarez-Muniz Rafael Alves Batista Aswathi Balagopal V. Julien Bolmont Mauricio Bustamante Washington Carvalho Jr. Didier Charrier Ismael Cognard Valentin Decoene Peter B.Denton Sijbrand De Jong Krijn D.De Vries Ralph Engel Ke Fang Chad Finley Stefano Gabici Quan Bu Gou Jun Hua Gu Claire Guépin Hong Bo Hu Yan Huang Kumiko Kotera Sandra Le Coz Jean-Philippe Lenain Guo Liang Léü Olivier Martineau-Huynh Miguel Mostafá Fabrice Mottez Kohta Murase Valentin Niess Foteini Oikonomou Tanguy Pierog Xiang Li Qian Bo Qin Duan Ran Nicolas Renault-Tinacci Markus Roth Frank G.Schroder Fabian Schüssler Cyril Tasse Charles Timmerman Matías Tueros Xiang Ping Wu Philippe Zarka Andreas Zech B.Theodore Zhang Jian Li Zhang Yi Zhang Qian Zheng Anne Zilles 2020Science China(Physics,Mechanics & Astronomy)2020,63,1:1
9Strain- specific incorporation of methanotrophic biomass into eukaryotic grazers in a rice field soil revealed by PLFA- SIP显示文摘Jun Murase Kees Hordijk Ichiro Tayasu 2011FEMS Microbiology Ecology2011,2,75:1
10Linking microbial community dynamics to rhizosphere carbon flow in a wetland rice soil显示文摘Yahai Lu Jun Murase Akira Watanabe Atsuko Sugimoto Makoto Kimura 2004FEMS Microbiology Ecology2004,,2:1
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