Validation of a reduced NO formation mechanism on a flameless furnace fed with H2-enriched low calorific value fuels

2018 ◽  
Vol 144 ◽  
pp. 877-889 ◽  
Author(s):  
Valentina Fortunato ◽  
Gabriele Mosca ◽  
Delphine Lupant ◽  
Alessandro Parente
2019 ◽  
Author(s):  
Aditya Lele ◽  
Karan Soni ◽  
Krithika Narayanaswamy ◽  
Anand Krishnasamy

2012 ◽  
Vol 13 (6) ◽  
pp. 531-539 ◽  
Author(s):  
José María Desantes ◽  
José Javier López ◽  
Pau Redón ◽  
Jean Arrégle

Catalysts ◽  
2020 ◽  
Vol 10 (6) ◽  
pp. 646
Author(s):  
Congru Gao ◽  
Jianwei Li ◽  
Jie Zhang ◽  
Xiuliang Sun

Nitrous oxide (N2O) is an industrial emission that causes the greenhouse effect and damages the ozone layer. Density functional theory study on the N2O direct catalytic decomposition over Cu–ZSM-5 has been performed in this paper. Two possible reaction mechanisms for N2O direct catalytic decomposition over Cu-ZSM-5 were proposed (O2 formation mechanism and Nitric oxide (NO) formation mechanism). The geometrical parameters, vibration frequency and thermodynamic data of the intermediate states in each step have been examined. The results indicate that N2O can be adsorbed on active site Cu in two ways (O-terminal or N-terminal), and N2O decomposition reactions can occur in both cases. The NO formation mechanism exhibits higher N2O dissociation reaction due to lower energy barrier.


Author(s):  
Ben Wang ◽  
Lushi Sun ◽  
Sheng Su ◽  
Jun Xiang ◽  
Song Hu ◽  
...  

Fuel ◽  
2022 ◽  
Vol 313 ◽  
pp. 123030
Author(s):  
Zhenghong Zhao ◽  
Tai Zhang ◽  
Xiaoshan Li ◽  
Liqi Zhang ◽  
Zewu Zhang ◽  
...  

2019 ◽  
Vol 5 (12) ◽  
pp. 37-46
Author(s):  
K. Chalov ◽  
Yu. Lugovoy ◽  
Yu. Kosivtsov ◽  
E. Sulman

This paper presents a study of the process of thermal degradation of crosslinked polyethylene. The kinetics of polymer decomposition was studied by thermogravimetry. Crosslinked polyethylene showed high heat resistance to temperatures of 400 °C. The temperature range of 430–500 °C was determined for the loss of the bulk of the sample. According to thermogravimetric data, the decomposition process proceeds in a single stage and includes a large number of fracture, cyclization, dehydrogenation, and other reactions. The process of pyrolysis of a crosslinked polymer in a stationary-bed metal reactor was investigated. The influence of the process temperature on the yield of solid, liquid, and gaseous pyrolysis products was investigated. The optimum process temperature was 500 °C. At this temperature, the yield of liquid and gaseous products was 85.0 and 12.5% (mass.), Respectively. Samples of crosslinked polyester decomposed almost completely. The amount of carbon–containing residue was 3.5% by weight of the feedstock. With increasing temperature, the yield of liquid products decreased slightly and the yield of gaseous products increased, but their total yield did not increase. For gaseous products, a qualitative and quantitative composition was determined. The main components of the pyrolysis gas were hydrocarbons C1–C4. The calorific value of pyrolysis gas obtained at a temperature of 500 °C was 17 MJ/m3. Thus, the pyrolysis process can be used to process crosslinked polyethylene wastes to produce liquid hydrocarbons and combustible gases.


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