Chemical absorption-biological reduction based on Fe(II)EDTA is a promising technology to remove nitric oxide (NO) from flue gases. However, limited effort has been made to enable direct energy recovery from NO through production of nitrous oxide (N2O) as a potential renewable energy rather than greenhouse gas. In this work, the enhanced energy recovery in the form of N2O via biological NO reduction was investigated by conducting short-term and long-term experiments at different Fe(II)EDTA-NO and organic carbon levels. The results showed both NO reductase and N2O reductase were inhibited at Fe(II)EDTA-NO concentration up to 20 mM, with the latter being inhibited more significantly, thus facilitating N2O accumulation. Furthermore, N2O accumu...
Anthropogenic nitrous oxide (N2O) emissions represent up to 40% of the global N2O emission and are c...
Nitrous oxide (N2O) is an important greenhouse gas (GHG) with substantial global warming potential a...
Conventional biological removal of nitrogen oxides (NOx) from flue gas has been severely restricted ...
Chemical absorption-biological reduction based on Fe(II)EDTA is a promising technology to remove nit...
Nitrous oxide (N2O) is a highly energetic oxidant. This work documents a novel process that recovers...
The reduction of nitric oxide (NO) in aqueous solutions of Fe(II)EDTA is one of the core processes i...
The biological reduction of nitric oxide (NO) in aqueous solutions of FeEDTA is an important key rea...
BioDeNOx is a novel technique for NOx removal from industrial flue gases. In principle, BioDeNOx is ...
The emission of nitrogen oxides (NOx) to the atmosphere is a major environmental problem. To abate N...
BioDeNO(x), a novel technique to remove NOx from industrial flue gases, is based on absorption of ga...
Biological reduction of nitric oxide (NO) to di-nitrogen (N-2) gas in aqueous Fe(II)EDTA(2-) solutio...
Nitric oxide (NO) and nitrogen dioxide (NO2) are both important Green house gases, which also cause ...
An integrated physicochemical and biological technique for NOx removal from flue gas, the so-called ...
With its rapidly rising concentration in the atmosphere and its high global warming potential, N2O i...
AbstractA highly effective strain, referred to as DL-1 and identified as Klebsiella sp., was applied...
Anthropogenic nitrous oxide (N2O) emissions represent up to 40% of the global N2O emission and are c...
Nitrous oxide (N2O) is an important greenhouse gas (GHG) with substantial global warming potential a...
Conventional biological removal of nitrogen oxides (NOx) from flue gas has been severely restricted ...
Chemical absorption-biological reduction based on Fe(II)EDTA is a promising technology to remove nit...
Nitrous oxide (N2O) is a highly energetic oxidant. This work documents a novel process that recovers...
The reduction of nitric oxide (NO) in aqueous solutions of Fe(II)EDTA is one of the core processes i...
The biological reduction of nitric oxide (NO) in aqueous solutions of FeEDTA is an important key rea...
BioDeNOx is a novel technique for NOx removal from industrial flue gases. In principle, BioDeNOx is ...
The emission of nitrogen oxides (NOx) to the atmosphere is a major environmental problem. To abate N...
BioDeNO(x), a novel technique to remove NOx from industrial flue gases, is based on absorption of ga...
Biological reduction of nitric oxide (NO) to di-nitrogen (N-2) gas in aqueous Fe(II)EDTA(2-) solutio...
Nitric oxide (NO) and nitrogen dioxide (NO2) are both important Green house gases, which also cause ...
An integrated physicochemical and biological technique for NOx removal from flue gas, the so-called ...
With its rapidly rising concentration in the atmosphere and its high global warming potential, N2O i...
AbstractA highly effective strain, referred to as DL-1 and identified as Klebsiella sp., was applied...
Anthropogenic nitrous oxide (N2O) emissions represent up to 40% of the global N2O emission and are c...
Nitrous oxide (N2O) is an important greenhouse gas (GHG) with substantial global warming potential a...
Conventional biological removal of nitrogen oxides (NOx) from flue gas has been severely restricted ...