Autotrophic denitrification supported by biotite dissolution in crystalline aquifers (1): New insights from short-term batch experiments
Author:
Publisher
Elsevier BV
Subject
Pollution,Waste Management and Disposal,Environmental Chemistry,Environmental Engineering
Reference59 articles.
1. Experiments and numerical modelling of microbially-catalysed denitrification reactions;André;Chem. Geol.,2011
2. Physical, biogeochemical and isotopic processes related to rock heterogeneity of a shallow aquifer in crystalline rocks;Ayraud;Biogeochemistry,2006
3. Compartmentalization of physical and chemical properties in hard-rock aquifers deduced from chemical and groundwater age analyses;Ayraud;Appl. Geochem.,2008
4. Groundwater isolation governs chemistry and microbial community structure along hydrologic flowpaths;Ben Maamar;Front. Microbiol.,2015
5. Fe-phyllosilicate redox cycling organisms from a redox transition zone in Hanford 300 area sediments;Benzine;Front. Microbiol.,2013
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