nitrogen oxide emission
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2021 ◽  
pp. 125975
Author(s):  
Xiaochao Zhu ◽  
Shengquan Zhou ◽  
Ziqiang Zhang ◽  
Yonggang Zhang ◽  
Jian Li ◽  
...  

Energies ◽  
2021 ◽  
Vol 14 (15) ◽  
pp. 4523
Author(s):  
Quach-Nhu Yhcmute ◽  
Nguyen-Xuan Khoa ◽  
Ocktaeck Lim

The ignition timing of an SI engine is a critical parameter. The influence on residual gas, effective release energy, and emissions characteristics of ignition timing for the V-twin engine is investigated in this research. For this purpose, an experiment system was built with a dynamometer, and a model of the simulation was created. In this research, the ignition timing was varied from 10 to 45 degrees BTDC under full load operating conditions, with engine speeds ranging from 3000 to 10,000 rpm. Based on the output data, ignition timing has a major impact on the proportion of residual gas, efficient release energy, performance of the engine, and the emission characteristics. The smallest proportion of residual gas was 0.07% at 8000 rpm and ignition timing of 10 °CA. At 15 °CA of ignition timing, the highest efficient release energy was 0.817 kJ at 4000 rpm, while at 8000 rpm and 25 °CA of ignition timing, it was 0.8305 kJ. At 6000 rpm, the greatest braking torque of the engine was 21.57 Nm, while the minimal BSFC was 343.821 g/kWh. The nitrogen oxide emission and HC emission increase with the advanced ignition timing, but CO emission decreases.


2021 ◽  
pp. 130971
Author(s):  
Minsu Kim ◽  
Sunghyun Cho ◽  
Kyojin Jang ◽  
Seokyoung Hong ◽  
Jonggeol Na ◽  
...  

Author(s):  
Guoxing Li ◽  
Ahmed Elmi Sahal ◽  
Fengshou Gu ◽  
Tie Wang ◽  
Wenlong Zhang ◽  
...  

2020 ◽  
Vol 5 (3) ◽  
pp. 18-33
Author(s):  
Sylwia Janta-Lipińska ◽  

The nitrogen oxides in a flame of burning fuel can be created by many mechanisms. The amount of NOx concentration emitted to the ground atmosphere mainly depends on the type of fuel burned in the industrial and heating boilers. Changes in the country's thermal policy and requirements that are set for us by the European Union States are forcing us to reduce greenhouse gas emissions. Directed metered ballast method is one of the most attractive techniques for reducing NOx emissions. In recent years, moisture injection technology is still investigated on low and medium power thermal power boilers operating on gaseous fuel. The goal of this work was to perform the investigations of the process of a moisture injection into the zones of decisive influence (SDW-I and SDW-II) on steam and water boilers: DKVR 10-13, DKVR 20-13, DE 25-14 and PTVM-50. The obtained results clearly show how the proposed method affects NOx reduction and boiler efficiency.


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