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貓大人QxQ新蟲(chóng) (小有名氣)
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[交流]
法國(guó)巴黎地球物理研究所課題組老師招生啦,通過(guò)直接法國(guó)博士工資
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組里教授招博士生啦,法國(guó)工資,巴黎地球物理研究所,具體感興趣請(qǐng)直接聯(lián)系老師: Prof. Eric D. van Hullebusch Responsable du Master GEI (Génie de l'Environnement et Industrie) Institut de Physique du Globe de Paris [1] / Université de Paris [2] équipe Biogéochimie à l'Anthropocène des éléments et Contaminants émergents (ACE) 1, rue Jussieu 75238 Paris cedex 05 France e-mail vanhullebusch@ipgp.fr Phone : +33 1 83 95 78 36 / +33 6 70 27 63 69 Master GEI (Génie de l'Environnement et Industrie) https://www.ipgp.fr/fr/master/ge ... ement-industrie-gei https://www.certificationprofessionnelle.fr/recherche/rncp/34070 https://www.certificationprofessionnelle.fr/recherche/rncp/31500 Links: ------ [1] https://www.ipgp.fr/en [2] https://www.univ-paris-diderot.fr/ / https://u-paris.fr/ 項(xiàng)目信息如下: "Elucidation of the factors controlling the oxidation kinetic of manganese during passive treatment of coal mine water" Manganese is one of the elements commonly found in coal mine water. However,manganese removal by implementing passive treatment processes is possible but difficult to control. Knowledge of the chemical and biological mechanisms conditioning the kinetics of manganese elimination in planted constructed wetlands is seen as an efficient process for the management of coal mine water. The objective of this thesis is to determine the factors limiting the kinetics of Mn (II) oxidation in existing treatment facilities, in order to propose strategies for improving their efficiency. This objective will be achieved through the analysis of previous data and the acquisition of additional data (mineralogical, biological, geochemical) on real operating passive treatment systems, and the performance of laboratory experiments aimed at elucidating the microbiological mechanisms (biological direct and / or indirect catalysis) and chemical (potentially antagonistic reactions of oxidation and reduction in presence of iron) controlling the oxidation kinetics of manganese in the form of precipitated oxides. This thesis project, part of a collaborative program between BRGM and IPGP, will benefit from the expertise and complementary experimental and analytical equipment of the laboratories involved. The PhD duration is three years and the research activities will be mostly developed at Institut de Physique du Globe de Paris (Paris, France) (https://www.ipgp.fr/en) in collaboration with BRGM (https://www.brgm.eu/). |
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