Bioenergy and emission characterizations of catalytic combustion and pyrolysis of litchi peels via TG-FTIR-MS and Py-GC/MS

C Liu, J Liu, F Evrendilek, W Xie, J Kuo, M Buyukada - Renewable Energy, 2020 - Elsevier
This study characterized the catalytic combustions and emissions of litchi peels as a function
of five catalysts as well as the effect of the best catalyst on the pyrolysis by-products. Na 2 …

Experimental study on the combustion and NOx emission characteristics of a bituminous coal blended with semi-coke

L Hu, Y Zhang, D Chen, J Fang, M Zhang, Y Wu… - Applied Thermal …, 2019 - Elsevier
Combustion and NOx emission characteristics of a bituminous coal (BC) blended with semi-
coke (SC) are investigated using a Thermogravimetric Analyzer (TGA) and Drop Tube …

Mechanistic studies on the slagging propensity in low-rank coal combustion

Y Yang, Q Huang, P Ma, S Li - Combustion and Flame, 2022 - Elsevier
Utilizing low-rank coals in power plants takes a risk of slagging, especially when burning
coals rich in alkali and alkaline earth metallic (AAEM) elements. To predict the slagging …

Experimental and modeling study of H2S formation and evolution in air staged combustion of pulverized coal

Z Li, H Chen, Z Zhang - Proceedings of the Combustion Institute, 2021 - Elsevier
High-concentration H 2 S formed in the reduction zone of pulverized coal air-staged
combustion can result into the high temperature corrosion of water wall tube of boiler, so it is …

NOx and H2S formation in the reductive zone of air-staged combustion of pulverized blended coals

J Cai, D Li, D Chen, Z Li - Frontiers in Energy, 2021 - Springer
Low NO x combustion of blended coals is widely used in coal-fired boilers in China to
control NO x emission; thus, it is necessary to understand the formation mechanism of NO x …

[引用][C] 还原区焦炭黏附在线测量及黏附模型

李丹, 陈登高, 王邑维, 李振山 - 工程热物理学报, 2024 - jeth.magtechjournal.com
采用焦炭黏附重量在线测量实验平台, 对分级燃烧还原区中含有不同比例未燃尽碳的焦炭黏附
进行了研究. 实验结果表明, 黏附速率取决于未燃尽碳含量, 可分为三个区域. I …