2015
DOI: 10.1109/tps.2015.2416129
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Thermochemical Assessment of Gasification Process Efficiency of Biofuels Industry Waste With Different Plasma Oxidants

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Cited by 18 publications
(3 citation statements)
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“…As it has been found, operating capacity of the process reaches 15.0 kg/h for the bronze powder when using a moderate power of the plasma torchup to 35-40 kW and quite limited flow rate of hydrocarbon gas (LPG of SPBT grade) -0.25-0.35 kg/h. Special assessment of energy efficiency parameters of this technology, in comparison with plasma and combined equipment of similar purpose, shows that it has an advantage in terms of target indicators (energy consumptions, overall energy efficiency [4,26] of the device) by at least 20-30 %.…”
Section: Resultsmentioning
confidence: 99%
“…As it has been found, operating capacity of the process reaches 15.0 kg/h for the bronze powder when using a moderate power of the plasma torchup to 35-40 kW and quite limited flow rate of hydrocarbon gas (LPG of SPBT grade) -0.25-0.35 kg/h. Special assessment of energy efficiency parameters of this technology, in comparison with plasma and combined equipment of similar purpose, shows that it has an advantage in terms of target indicators (energy consumptions, overall energy efficiency [4,26] of the device) by at least 20-30 %.…”
Section: Resultsmentioning
confidence: 99%
“…During the analysis of thermodynamic equilibria in the multicomponent systems (17 of their variants were considered), a set of the following parameters was used to characterize the energy intensity of desired process of heating and melting of metal-containing powders: the equivalence ratio (ER) of the reacting mixture and its adiabatic temperature T ad ; such output parameters as the energy efficiency EnE of the material heating (in various versions -with and without taking into account the contribution of the fuel addition to the efficiency), specific electrical energy consumption for the heating and melting EC, the degree of autothermicity (in a variant on temperature AD T and in a variant on enthalpy AD H ) for total allothermal process of combined heating of refractory powders (electrothermal heating through an arc of plasma torch and heat transfer from the oxidizing mixture "air + SFA"). Part of these parameters was tested и earlier for characterization of processes of thermochemical and plasma assisted pyrolysis, gasification and combustion of a number of industrial fuels and wastes, including solid ash-rich fuels [15][16][17][18][19][20][21].…”
Section: Methodology Of Analysismentioning
confidence: 99%
“…First variant of the energy efficiency was determined on the basis of the first law of thermodynamics, by analogy with the dependence previously used to describe a similar efficiency (which coincides with CGE (cold gas efficiency)) [16] for plasma gasification of fuels [15][16][17][18] with syngas production (based on CO and H 2 ) as the main product…”
Section: Methodology Of Analysismentioning
confidence: 99%