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- W4308313395 endingPage "137147" @default.
- W4308313395 startingPage "137147" @default.
- W4308313395 abstract "Nitrogen oxides (NOx), including nitrogen monoxide (NO) and nitrogen dioxide (NO2), are among the most important global atmospheric pollutants because they have a negative impact on human respiratory health, animals, and the environment through the greenhouse effect and ozone layer destruction. NOx compounds are predominantly generated by anthropogenic activities, which involve combustion processes such as energy production, transportation, and industrial activities. The most widely used alternatives for NOx abatement on an industrial scale are selective catalytic and non-catalytic reductions; however, these alternatives have high costs when treating large air flows with low pollutant concentrations, and most of these methods generate residues that require further treatment. Therefore, biotechnologies that are normally used for wastewater treatment (based on nitrification, denitrification, anammox, microalgae, and combinations of these) are being investigated for flue gas treatment. Most of such investigations have focused on chemical absorption and biological reduction (CABR) systems using different equipment configurations, such as biofilters, rotating reactors, or membrane reactors. This review summarizes the current state of these biotechnologies available for NOx treatment, discusses and compares the use of different microorganisms, and analyzes the experimental performance of bioreactors used for NOx emission control, both at the laboratory scale and in industrial settings, to provide an overview of proven technical solutions and biotechnologies for NOx treatment. Additionally, a comparative assessment of the advantages and disadvantages is performed, and special challenges for biological technologies for NO abatement are presented." @default.
- W4308313395 created "2022-11-10" @default.
- W4308313395 creator A5023749084 @default.
- W4308313395 creator A5048008329 @default.
- W4308313395 creator A5065692889 @default.
- W4308313395 creator A5090921740 @default.
- W4308313395 date "2023-01-01" @default.
- W4308313395 modified "2023-10-16" @default.
- W4308313395 title "A review: Biological technologies for nitrogen monoxide abatement" @default.
- W4308313395 cites W128425879 @default.
- W4308313395 cites W1432754757 @default.
- W4308313395 cites W1520734373 @default.
- W4308313395 cites W1553483031 @default.
- W4308313395 cites W1572634414 @default.
- W4308313395 cites W1913460043 @default.
- W4308313395 cites W1965667040 @default.
- W4308313395 cites W1966603347 @default.
- W4308313395 cites W1967654858 @default.
- W4308313395 cites W1969996364 @default.
- W4308313395 cites W1970923361 @default.
- W4308313395 cites W1970929983 @default.
- W4308313395 cites W1972297737 @default.
- W4308313395 cites W1975208468 @default.
- W4308313395 cites W1978652402 @default.
- W4308313395 cites W1982023675 @default.
- W4308313395 cites W1983273492 @default.
- W4308313395 cites W1983426960 @default.
- W4308313395 cites W1985087154 @default.
- W4308313395 cites W1985711708 @default.
- W4308313395 cites W1986570511 @default.
- W4308313395 cites W1986956733 @default.
- W4308313395 cites W1988576730 @default.
- W4308313395 cites W1991147766 @default.
- W4308313395 cites W1992038077 @default.
- W4308313395 cites W1992409756 @default.
- W4308313395 cites W1992703534 @default.
- W4308313395 cites W1993057853 @default.
- W4308313395 cites W1997171930 @default.
- W4308313395 cites W1997246211 @default.
- W4308313395 cites W2000107119 @default.
- W4308313395 cites W2003683139 @default.
- W4308313395 cites W2004735335 @default.
- W4308313395 cites W2007539322 @default.
- W4308313395 cites W2007969383 @default.
- W4308313395 cites W2009353589 @default.
- W4308313395 cites W2010504612 @default.
- W4308313395 cites W2012135481 @default.
- W4308313395 cites W2012620288 @default.
- W4308313395 cites W2013915822 @default.
- W4308313395 cites W2016150133 @default.
- W4308313395 cites W2017591210 @default.
- W4308313395 cites W2017642420 @default.
- W4308313395 cites W2020033305 @default.
- W4308313395 cites W2021594674 @default.
- W4308313395 cites W2021715591 @default.
- W4308313395 cites W2022343545 @default.
- W4308313395 cites W2022537702 @default.
- W4308313395 cites W2023167770 @default.
- W4308313395 cites W2023311758 @default.
- W4308313395 cites W2026807373 @default.
- W4308313395 cites W2029389543 @default.
- W4308313395 cites W2029967944 @default.
- W4308313395 cites W2030262106 @default.
- W4308313395 cites W2030275600 @default.
- W4308313395 cites W2031105480 @default.
- W4308313395 cites W2032363444 @default.
- W4308313395 cites W2034696339 @default.
- W4308313395 cites W2035616341 @default.
- W4308313395 cites W2037849189 @default.
- W4308313395 cites W2039327525 @default.
- W4308313395 cites W2039674656 @default.
- W4308313395 cites W2039953199 @default.
- W4308313395 cites W2040447303 @default.
- W4308313395 cites W2042467154 @default.
- W4308313395 cites W2042709596 @default.
- W4308313395 cites W2043307780 @default.
- W4308313395 cites W2043611916 @default.
- W4308313395 cites W2043667398 @default.
- W4308313395 cites W2044951888 @default.
- W4308313395 cites W2049113024 @default.
- W4308313395 cites W2051327212 @default.
- W4308313395 cites W2053308177 @default.
- W4308313395 cites W2056836289 @default.
- W4308313395 cites W2057929119 @default.
- W4308313395 cites W2058805300 @default.
- W4308313395 cites W2058998443 @default.
- W4308313395 cites W2064538961 @default.
- W4308313395 cites W2064777609 @default.
- W4308313395 cites W2065309278 @default.
- W4308313395 cites W2067884712 @default.
- W4308313395 cites W2069019303 @default.
- W4308313395 cites W2069671669 @default.
- W4308313395 cites W2072940825 @default.
- W4308313395 cites W2074636216 @default.
- W4308313395 cites W2077297454 @default.
- W4308313395 cites W2077534756 @default.
- W4308313395 cites W2079177186 @default.
- W4308313395 cites W2080494418 @default.