Alteration and element mobility at microbe-mineral interfaces
نویسندگان
چکیده
منابع مشابه
Rock alteration in the upper Crust: Element mobility and concentration
S 2016 TIGeR CONFERENCE Make tomorrow better. scieng.curtin.edu.au Rock alteration in the upper Crust: Element mobility and concentration
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Remarkably, many bacteria live and thrive in the earth’s subsurface by respiring extracellular insoluble minerals. Okamato et al. (1) in PNAS report how this process may be accelerated by the presence of flavins that bind as cofactors to electron transport proteins on the cell surface that are key to extracellular mineral respiration. Humans obtain the energy needed for life by respiring oxygen...
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Copyright and Moral Rights for the articles on this site are retained by the individual authors and/or other copyright owners. For more information on Open Research Online's data policy on reuse of materials please consult the policies page. Introduction: Alteration of rocks is a fundamental process that occurs in all environments across the solar system in different forms. Understanding the pa...
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The Sungun porphyry copper deposit is located in northwestern Iran and is associated with diorite/granodiorite to quartz-monzonite of Miocene age, which intruded Eocene volcanosedimentary and Cretaceous carbonate rocks. Copper mineralization was accompanied by both potassic and phyllic alteration. Three main mineralization related alteration episodes (potassic, transition, and phyllic alteratio...
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In recent years, striking discoveries have revealed that two-dimensional electron liquids (2DEL) confined at the interface between oxide band-insulators can be engineered to display a high mobility transport. The recognition that only few interfaces appear to suit hosting 2DEL is intriguing and challenges the understanding of these emerging properties not existing in bulk. Indeed, only the neut...
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ژورنال
عنوان ژورنال: Environmental Science and Pollution Research
سال: 2015
ISSN: 0944-1344,1614-7499
DOI: 10.1007/s11356-015-5761-3