• 学术搜索
  • 科研智能体
    • Research Labs
    • AI 阅读
    • AI 文库
    • 深度研究
    • 学者亮点
  • 学术资源
    • AI2000
    • 期刊/会议
    • 学者库
    • 学术API
    • 溯源树
    • 数据集
  • 知识沉淀
    • 学术空间
订阅小程序
旧版功能
aminer vip
开通会员低至0.73元/天
一次搞定AI科研
立即登录
  • English
  • 联系方式
    I

    Institute of Environmental Biology and Biotechnology

    732论文总数
    1.3万引用总数

    论文量&引用量时间轴

    机构学者

    排序
    Gabriele Berg
    Gabriele Berg
    Institute of Environmental Biotechnology, Graz University of Technology
    论文:338引用:0H-index:0
    Müller Henry
    Müller Henry
    Department of Environmental Biotechnology, Graz University of Technology
    论文:70引用:0H-index:0
    Massimiliano Cardinale
    Massimiliano Cardinale
    National Board of Fisheries;Institute of Marine Research;National Board of Fisheries, Institute of Marine Research
    论文:49引用:0H-index:0
    Christin Zachow
    Christin Zachow
    Austrian Centre of Industrial Biotechnology (ACIB GmbH), Austria
    论文:46引用:0H-index:0
    Kornelia Smalla
    Kornelia Smalla
    Institute for Epidemiology and Pathogen Diagnostic, Julius Kuhn-Institut
    论文:44引用:0H-index:0
    Artur Cavaco-Paulo
    Artur Cavaco-Paulo
    Centre of Biological Engineering, University of Minho;Department of Eng. Biologica, University of Minho
    论文:36引用:0H-index:0
    Jean Armengaud
    Jean Armengaud
    Commissariat a l'Energie Atomique et aux Energies Alternatives
    论文:34引用:0H-index:0
    Martin Grube
    Martin Grube
    Institut für Biologie, Naturwissenschaftliche Fakultät, Karl-Franzens-Universität Graz
    论文:30引用:0H-index:0
    Erlacher Armin
    Erlacher Armin
    Institute of Environmental Biotechnology, Graz University of Technology
    论文:27引用:0H-index:0

    论文(732)

    年份
    起
    –
    止
    排序
    1Is SARS-CoV-2 a Bacteriophage?
    Carlo Brogna,Barbara Brogna,Domenico Rocco Bisaccia,Francesco Lauritano,Giuliano Marino,Luigi Montano,Cristoni Simone,Marina Prisco,Marina Piscopo
    2022Zenodo (CERN European Organization for Nuclear Research)(2022)引用:1
    引用
    AI阅读
    加入学术空间
    2Pollination and the city: a collaborative study to measure pollination function in a range of European cities
    Arthur Fauviau,Cécile H. Albert, Jordan Benrezkallah, Morgane Berthod, A. Comte,Béatriz Decencière, Eric Dufourg,William Fiordaliso,Floriane Flacher, Enora Flamion,Benoît Geslin,Amandine Hansart,
    2021HAL (Le Centre pour la Communication Scientifique Directe)(2021)
    引用
    AI阅读
    加入学术空间
    3How Nutrient Concentration, Soil and Volatiles Influence Plant Health and the Bacillus-Trichoderma Interaction
    Adrian Wolfgang,Christin Zachow,Henry Müller, Lena Lachner,Helmut Junge,Kristin Dietel,Gabriele Berg
    2020
    引用
    AI阅读
    加入学术空间
    4Characterization of the Effects of Bacillus Velezensis FZB42 on Plant Performance in Lab and Field Trials
    Christin Zachow, H. Müller,Adrian Wolfgang,Gabriele Berg,Helmut Junge,Kristin Dietel
    2020
    引用
    AI阅读
    加入学术空间
    5SANIST-CIMS a Tool for Rapid and Accurate Product Quality Check
    Cristoni Simone

    The advent of new high-resolution mass spectrometry has opened new important frontiers especially in the profile analysis of molecular complex mixture. In fact, it is now possible to analyze thousand of molecular species per analysis. One of the most employed technique for this porpoises is Liquid Chromatography – Mass Spectrometry. Recently, the SANIST technological platform based on this technique integrated with Surface Activated Chemical Ionization/Electrospray (SACI/ESI) and a data elaboration system for compounds identification performed on the basis of EU directive (EU directive 2002/657/EC) has been developed. This technique provide benefits in terms of sensitivity increase due to the SACI/ESI ionization source and in the compounds identification precision increase that is performed by means of spectrum match criteria recognized by EU legislation. This technology can be used to check the composition quality in different fields: food, pharmacological and environmental. A SANIST limitation is that the existing methods makes possible to analyze low and medium/high molecular weight compounds only separately. Here we present a SANIST-CIMS approach that makes used of the in source Cloud Ion Mobility effect produced in SACI/ESI device to simultaneously analyze low and medium/high molecular weight compounds in a single run so to increase the throughput in the field of product control. The data obtained analyzing the qualitative composition of some commercial product has been shown and disclosed.

    2020
    引用
    AI阅读
    加入学术空间
    立即登录,查看全部 732 篇论文

    合作机构(100)

    Austrian Centre of Industrial Biotechnology (Austria)合作论文 65
    格拉茨大学合作论文 55
    格拉茨工业大学合作论文 19
    捷克科学院合作论文 15
    Julius Kühn-Institut,Federal Ministry of Food and Agriculture合作论文 15
    俄罗斯科学院合作论文 14
    Canadian Economics Association合作论文 14
    Heliopolis University合作论文 14
    罗马大学合作论文 13
    法国国家科学研究中心合作论文 12

    机构统计