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The contributions and mechanisms of iron-microbes-biochar in constructed wetlands for nitrate removal from low carbon/nitrogen ratio wastewater

Jian Xu, Xiawei Liu, Jiaolong Huang, Manqi Huang, Tao Wang, Shaopan Bao, Wei Tang, Tao Fang

2020RSC Advances21 citationsDOIOpen Access PDF

Abstract

was able to utilize hydrogen produced by iron corrosion as an electron donor while nitrate accepted electrons to be reduced. Porous biochar could release dissolved organic matter, which provided a good living circumstance and carbon source for microbes. Therefore, the RDCW system is potential for large-scale application due to its low cost and simple operation.

Topics & Concepts

NitrateBiocharDenitrificationEnvironmental chemistryChemistryWastewaterCarbon fibersNitrogenOrganic matterEnvironmental engineeringEnvironmental scienceMaterials scienceOrganic chemistryComposite materialPyrolysisComposite numberConstructed Wetlands for Wastewater TreatmentEnvironmental remediation with nanomaterialsWastewater Treatment and Nitrogen Removal
The contributions and mechanisms of iron-microbes-biochar in constructed wetlands for nitrate removal from low carbon/nitrogen ratio wastewater | Litcius