A novel combined method for nitrate removal by chemical Pd–Cu/alumina bimetallic catalyst and biohydrogen produced by Rhodobacter johrii VT1 in an anaerobic, photo-fermentation process

Author:

Karamian MohammadrezaORCID,Tafakori Vida,Sheydaei MohsenORCID,Shaabani Ahmad,Nasiriani Tahereh,Nasiri Nasim

Publisher

Elsevier BV

Reference59 articles.

1. Removal of the harmful nitrate anions from potable water using different methods and materials, including zero-valent iron;El-Lateef;Molecules [Internet],2022

2. Selective and efficient reduction of nitrate to gaseous nitrogen from drinking water source by UV/oxalic acid/ferric iron systems: effectiveness and mechanisms;Shi;Catalysts [Internet],2022

3. Electrocatalytic reduction of nitrate: fundamentals to full-scale water treatment applications;Garcia-Segura;Appl Catal B Environ [Internet],2018

4. Nitrate reduction with bimetallic catalysts. A stability-addressed overview;Sanchis;Sep Purif Technol [Internet],2022

5. Recent research progress of electrocatalytic reduction technology for nitrate wastewater: a review;Meng;J Environ Chem Eng [Internet],2023

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