Review on inactivation of airborne viruses using non-thermal plasma technologies: From MS2 to coronavirus
Although several non-thermal plasmas (NTPs) technologies have been widely investigated
in air treatment, very few studies have focused on the inactivation mechanism of viruses by …
in air treatment, very few studies have focused on the inactivation mechanism of viruses by …
Volatile organic compounds degradation by nonthermal plasma: a review
Y He, J Shen, NS Alharbi, C Chen - Environmental Science and Pollution …, 2023 - Springer
Volatile organic compounds (VOCs) have posed a severe threat on both ecosystem and
human health which thus have gained much attention in recent years. Nonthermal plasma …
human health which thus have gained much attention in recent years. Nonthermal plasma …
A comparative study of dilute VOCs treatment in a non-thermal plasma reactor
Non-thermal plasma (NTP) is an emerging technology for the treatment of volatile organic
compounds (VOCs) in polluted point source air streams. Here, a dielectric barrier discharge …
compounds (VOCs) in polluted point source air streams. Here, a dielectric barrier discharge …
The effect of ionization energy and hydrogen weight fraction on the non-thermal plasma volatile organic compounds removal efficiency
X Zhao, X Liu, J Liu, J Chen, S Fu… - Journal of Physics D …, 2019 - iopscience.iop.org
The degree of difficulty of volatile organic compounds (VOCs) degradation in non-thermal
plasma (NTP) related to their chemical structures, ionization potentials and hydrogen weight …
plasma (NTP) related to their chemical structures, ionization potentials and hydrogen weight …
Degradation of phenolic compounds by dielectric barrier plasma: Process optimization and influence of phenol substituents
The degradation of a series of phenolic compounds in a novel dielectric barrier discharge
(DBD) plasma reactor was studied in this paper. The effect of various parameters, such as …
(DBD) plasma reactor was studied in this paper. The effect of various parameters, such as …
Electrical discharge in water treatment technology for micropollutant decomposition
Hazardous micropollutants are increasingly detected worldwide in wastewater treatment
plant effluent. As this indicates, their removal is insufficient by means of conventional …
plant effluent. As this indicates, their removal is insufficient by means of conventional …
Structural regulation of single-atom catalysts for enhanced catalytic oxidation performance of volatile organic compounds
F Jiang, Z Zhou, C Zhang, C Feng, G **ong, Y Wang… - Nano Research, 2023 - Springer
The catalytic oxidation of volatile organic compounds (VOCs) is considered a feasible
method for VOCs treatment by virtue of its low technical cost, high economic efficiency, and …
method for VOCs treatment by virtue of its low technical cost, high economic efficiency, and …
Removal of cyclohexane as a toxic pollutant from air using a non-thermal plasma: influence of different parameters
Non-thermal plasmas (NTPs) are a promising technique for abatement of volatile organic
compound (VOC) emissions. In this study, the removal of cyclohexane as a toxic pollutant …
compound (VOC) emissions. In this study, the removal of cyclohexane as a toxic pollutant …
Nonthermal plasma in practical-scale honeycomb catalysts for the removal of toluene
Nonthermal plasma combined with a practical-scale honeycomb catalyst of 5.0 cm in height
and 9.3 cm in diameter was investigated for the removal of toluene. The creation of plasma …
and 9.3 cm in diameter was investigated for the removal of toluene. The creation of plasma …
Degradation of microcystin-LR in water by glow discharge plasma oxidation at the gas–solution interface and its safety evaluation
H Zhang, Q Huang, Z Ke, L Yang, X Wang, Z Yu - Water research, 2012 - Elsevier
Microcystin-LR (MC-LR) is one of the most commonly found microcystins (MCs) in fresh
water and it poses danger to human health due to its potential hepatotoxicity. In the present …
water and it poses danger to human health due to its potential hepatotoxicity. In the present …