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Featured researches published by Lun Ma.


Environmental Science & Technology | 2015

Reducing NOx Emissions for a 600 MWe Down-Fired Pulverized-Coal Utility Boiler by Applying a Novel Combustion System

Lun Ma; Qingyan Fang; Dangzhen Lv; Cheng Zhang; Yiping Chen; Gang Chen; Xuenong Duan; Xihuan Wang

A novel combustion system was applied to a 600 MWe Foster Wheeler (FW) down-fired pulverized-coal utility boiler to solve high NOx emissions, without causing an obvious increase in the carbon content of fly ash. The unit included moving fuel-lean nozzles from the arches to the front/rear walls and rearranging staged air as well as introducing separated overfire air (SOFA). Numerical simulations were carried out under the original and novel combustion systems to evaluate the performance of combustion and NOx emissions in the furnace. The simulated results were found to be in good agreement with the in situ measurements. The novel combustion system enlarged the recirculation zones below the arches, thereby strengthening the combustion stability considerably. The coal/air downward penetration depth was markedly extended, and the pulverized-coal travel path in the lower furnace significantly increased, which contributed to the burnout degree. The introduction of SOFA resulted in a low-oxygen and strong-reducing atmosphere in the lower furnace region to reduce NOx emissions evidently. The industrial measurements showed that NOx emissions at full load decreased significantly by 50%, from 1501 mg/m3 (O2 at 6%) to 751 mg/m3 (O2 at 6%). The carbon content in the fly ash increased only slightly, from 4.13 to 4.30%.


Energy | 2017

Co-firing sludge in a pulverized coal-fired utility boiler: Combustion characteristics and economic impacts

Peng Tan; Lun Ma; Ji Xia; Qingyan Fang; Cheng Zhang; Gang Chen


Applied Energy | 2016

Effect of the separated overfire air location on the combustion optimization and NOx reduction of a 600MWe FW down-fired utility boiler with a novel combustion system

Lun Ma; Qingyan Fang; Peng Tan; Cheng Zhang; Gang Chen; Dangzhen Lv; Xuenong Duan; Yiping Chen


Fuel Processing Technology | 2015

Influence of vertical burner tilt angle on the gas temperature deviation in a 700 MW low NOx tangentially fired pulverised-coal boiler

Dengfeng Tian; Lijin Zhong; Peng Tan; Lun Ma; Qingyan Fang; Cheng Zhang; Dianping Zhang; Gang Chen


Energy & Fuels | 2015

Influence of Separated Overfire Air Ratio and Location on Combustion and NOx Emission Characteristics for a 600 MWe Down-Fired Utility Boiler with a Novel Combustion System

Lun Ma; Qingyan Fang; Dangzhen Lv; Cheng Zhang; Gang Chen; Yiping Chen; Xuenong Duan


Fuel | 2017

Effects of burner tilt angle on the combustion and NOX emission characteristics of a 700 MWe deep-air-staged tangentially pulverized-coal-fired boiler

Peng Tan; Dengfeng Tian; Qingyan Fang; Lun Ma; Cheng Zhang; Gang Chen; Lijin Zhong; Honggang Zhang


Energy & Fuels | 2016

Application of Different Combustion Models for Simulating the Co-combustion of Sludge with Coal in a 100 MW Tangentially Coal-Fired Utility Boiler

Peng Tan; Lun Ma; Qingyan Fang; Cheng Zhang; Gang Chen


Journal of The Energy Institute | 2018

Effect of different conditions on the combustion interactions of blended coals in O 2 /CO 2 mixtures

Lun Ma; Tingxu Wang; Jichang Liu; Qingyan Fang; Anlong Guo; Cheng Zhang; Gang Chen


Chemical Engineering Journal | 2018

Study on improving the SO2 tolerance of low-temperature SCR catalysts using zeolite membranes: NO/SO2 separation performance of aluminogermanate membranes

Xin Li; Cheng Zhang; Xiaopei Zhang; Wei Li; Peng Tan; Lun Ma; Qingyan Fang; Gang Chen


Applied Thermal Engineering | 2018

Combustion interactions of blended coals in an O2/CO2 mixture in a drop-tube furnace: Experimental investigation and numerical simulation

Lun Ma; Anlong Guo; Qingyan Fang; Tingxu Wang; Cheng Zhang; Gang Chen

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Qingyan Fang

Huazhong University of Science and Technology

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Cheng Zhang

Huazhong University of Science and Technology

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Gang Chen

Huazhong University of Science and Technology

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Peng Tan

Huazhong University of Science and Technology

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Xuenong Duan

Electric Power Research Institute

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Yiping Chen

Electric Power Research Institute

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Anlong Guo

Huazhong University of Science and Technology

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Dengfeng Tian

Huazhong University of Science and Technology

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Tingxu Wang

Huazhong University of Science and Technology

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Dangzhen Lv

Electric Power Research Institute

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