Plasma Sources Science and Technology · 2008 · 77 citations · 22 references
Chemical EngineeringEngineeringEnergy EfficiencyEnvironmental EngineeringPlasma ApplicationPlasma PhysicsPlasma CombustionIntegrated SystemChemistryGas Discharge PlasmaNonthermal PlasmaAcid GasesChemical KineticsPlasma ProcessingPlasma Pollution Control
Gaseous pollution control technologies for acid gases (NOx, SOx, etc), volatile organic compounds, greenhouse gases, ozone layer depleting substances, etc have been commercialized based on catalysis, incineration and adsorption methods. However, non-thermal plasma techniques based on electron beams and corona discharges are becoming significant due to advantages such as lower costs, higher removal efficiency and smaller space volume. In order to commercialize this new technology, the pollution gas removal rate, energy efficiency of removal, pressure drop of reactors and useable by-product production rates must be improved and identification of major fundamental processes and optimizations of reactor and power supply for an integrated system must be investigated. In this work, the chemistry and physics of plasma pollution control are discussed and the limitation of this type of plasma is outlined based on the plasma parameters.
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J.S. Chang, P.A. Lawless, Takao A. Yamamoto · IEEE Transactions on Plasma Science · 1991 · 920 citations
Richard A. Morrow, J. J. Lowke · Journal of Physics D Applied Physics · 1997 · 564 citations