Investigation of NOx Emissions for Superfine Pulverized Coal in Air-Staging Combustion
Jun Jie Shen, Xiumin Jiang, Jiaxun Liu, Xiangyong Huang, Hai Feng Zhang
Abstract
Jun Jie Shen, Xiumin Jiang, Jiaxun Liu, Xiangyong Huang, Hai Feng Zhang
Abstract
Superfine pulverized coal combustion is a new pulverized coal combustion technology that has better combustion stability, higher combustion efficiency, and comprehensive cost-effective operation. The novelty of this present paper is that fundamental experiments on an electrically heated drop-tube furnace were carried out to understand the NO x emissions of air-staging combustion for two superfine pulverized bituminous coals used in China for the first time. The results indicate that high-volatile-containing Neimenggu (NMG) coal possesses better effectiveness of NO x abatement than low-volatile-containing Shenhua (SH) coal. Interesting saddle-point effects of the highest NO x emissions have been found for both coals around the average particle size of 17.44 μm for SH coal and ∼30 μm for NMG coal. For different stoichiometric ratios and positions of over fire air (OFA) ports, NMG coal provides a higher ability of deNO x efficiency than SH coal. The superfine pulverized coal combustion of the NMG_25.86 μm particle can even reach the highest deNO x efficiency up to 70%. The findings of this paper will provide guidance for further studies on the NO x emission characteristics of superfine pulverized coal combustion.
OpenAlex reports 12 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Superfine pulverized coal combustion is a new pulverized coal combustion technology that has better combustion stability, higher combustion efficiency, and comprehensive cost-effective operation. The novelty of this present paper is that fundamental experiments on an electrically heated drop-tube furnace were carried out to understand the NO x emissions of air-staging combustion for two superfine pulverized bituminous coals used in China for the first time. The results indicate that high-volatile-containing Neimenggu (NMG) coal possesses better effectiveness of NO x abatement than low-volatile-containing Shenhua (SH) coal. Interesting saddle-point effects of the highest NO x emissions have been found for both coals around the average particle size of 17.44 μm for SH coal and ∼30 μm for NMG coal. For different stoichiometric ratios and positions of over fire air (OFA) ports, NMG coal provides a higher ability of deNO x efficiency than SH coal. The superfine pulverized coal combustion of the NMG_25.86 μm particle can even reach the highest deNO x efficiency up to 70%. The findings of this paper will provide guidance for further studies on the NO x emission characteristics of superfine pulverized coal combustion.
Key concepts: Pulverized coal-fired boiler, Combustion, NOx, Coal, Bituminous coal, Coal combustion products, Waste management, Staged combustion