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5篇 您的检索式:作者名="Hailiang Geng"
    题名 作者 年代 出处 被引量
1Co-occurrence of nitrite-dependent anaerobic methane oxidizing and anaerobic ammonia oxidizing bacteria in two Qinghai-Tibetan saline lakes显示文摘亚硝酸根依赖者厌氧氧化甲烷(n-damo ) 氧化的细菌和厌氧的氨(anammox ) 细菌是涉及全球碳并且氮骑车的二组微生物。为了测试 n-damo 和 anammox 细菌是否在自然盐的环境, DNA 和 cDNA 共同发生,样品从二个盐的湖的地表的沉积获得了(与 32 和 84 g/L 的咸度,分别地)与 anammox-damo-specific 和 n-damo-specific 教材集合的使用在西藏的高原上是 放大PCR 的,由克隆图书馆建设和种系发生的分析列在后面。DNA 和基于 cDNA 的克隆与 n-damo 结盟了, anammox 细菌成功地从二件样品被检索,显示这些二组细菌能象 84 g/L 一样高在有咸度的自然盐的环境共同发生。我们发现在自然为我们全球碳和氮周期的理解有大含意[出版摘要]Jian YANG Hongchen JIANG Geng WU Weiguo HOU Yongjuan SUN Zhongping LAI Hailiang DONG 2012Frontiers of Earth Science2012,6,4:12
2A critical review of mineral–microbe interaction and co-evolution:mechanisms and applications显示文摘Mineral–microbe interactions play important roles in environmental change,biogeochemical cycling of elements and formation of ore deposits.Minerals provide both beneficial(physical and chemical protection,nutrients,and energy)and detrimental(toxic substances and oxidative pressure)effects to microbes,resulting in mineral-specific microbial colonization.Microbes impact dissolution,transformation and precipitation of minerals through their activity,resulting in either genetically controlled or metabolism-induced biomineralization.Through these interactions,minerals and microbes co-evolve through Earth history.Mineral–microbe interactions typically occur at microscopic scale but the effect is often manifested at global scale.Despite advances achieved through decades of research,major questions remain.Four areas are identified for future research:integrating mineral and microbial ecology,establishing mineral biosignatures,linking laboratory mechanistic investigation to field observation,and manipulating mineral–microbe interactions for the benefit of humankind.Hailiang Dong Liuqin Huang Linduo Zhao Qiang Zeng Xiaolei Liu Yizhi Sheng Liang Shi Geng Wu Hongchen Jiang Fangru Li Li Zhang Dongyi Guo Gaoyuan Li Weiguo Hou Hongyu Chen 2022National Science Review2022,9,10:2
3Diversity of the T4-like Myoviruses Community in Response to Salinity in Saline Lakes of the Qinghai-Tibetan Plateau显示文摘1 Introduction Viruses are the most abundant biological entities on Earth.They can influence the succession of individual microbial populations,biogeochemical cycles of C/N and,ultimately,microbial community structure throughWU Geng GUO Qinggong JIANG Hongchen YANG Jian GUO Feng LIU Wen ZHANG Guojing DONG Hailiang 2014Acta Geologica Sinica(English Edition)2014,88,S1:1
4Response of Photosynthetic Plankton Communities to Late-Holocene Climate Change on the Tibetan Plateau显示文摘Sediment records from Tibetan lakes record dramatic climatic variability of the Tibetan Plateau in NW China during the Holocene.Here we investigated ancient communities of photosynthetic microbial communitiesDONG Hailiang HOU Weiguo LI Gaoyuan YANG Jian JIANG Hongchen WU Geng WANG Shang 2014Acta Geologica Sinica(English Edition)2014,88,S1:0
5Hybrid coating SnO_(2)for enhanced Li ions storage显示文摘Anode SnO_(2)in lithium-ion batteries suffers from volume expansion and agglomeration.Here,the SnO_(2)nanoparticles are hybrided with ZrO_(2)particles by the support of carbon nanotube networks.The obtained SnO_(2)/C/ZrO_(2)composite shows improved electrochemical performances.Investigations reveal that the carbon nanotubes shorten the transmission path of electrons and Li^(+) ions.Ball milling with ZrO_(2)promotes the formation of nanosized SnO_(2)to weaken the internal strain change,being beneficial to buffering volume change during electrochemical cycling afterwards.High-resolution 6.7Li NMR investigations indicate that conversion and alloying reactions are stepwise involved for SnO_(2)/C/ZrO_(2)anode.The strategy of designing SnO_(2)/C/ZrO_(2)composite from the morphology-controlled metal-organic frameworks for energy storage widens the possibility to fabricate promising materials with enhanced performances.Yanan Gao Jie Liu Chenjie Lou Hailiang Geng Jipeng Fu Chengyu Li Yongjin Chen Cong Wang Wenda Zhang Xiaojun Kuang Yifan Liu Xiang Gao Mingxue Tang 2023Chinese Chemical Letters2023,34,12:0
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