近期论文
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[1] Shenghui Yu , Cheng Zhang*, Lun Ma , Peng Tan, Qingyan Fang , Gang Chen,Deep insight into the effect of NaCl/HCl/SO2/CO2 in simulated flue gas on gas-phase arsenic adsorption over mineral oxide sorbents,Journal of Hazardous Materials 403 (2021) 123617
[2] Shenghui Yu, Cheng Zhang,*, Lun Ma, Peng Tan, Qingyan Fang, Gang Chen, Geochemical mechanism of lead vapors over fly ash cenospheres in simulated flue gas, Fuel 285(2021),119274
[3] Shenghui Yu, Cheng Zhang*, Lun Ma, Qingyan Fang, Gang Chen, Experimental and DFT studies on the characteristics of PbO/PbCl2 adsorption by Si/Al- based sorbents in the simulated flue gas, Journal of Hazardous Materials 407 (2021) 124742
[4] Shenghui Yu, Cheng Zhang*, Lun Ma, Qingyan Fang, Gang Chen, Insight into As2O3 adsorption characteristics by mineral oxide sorbents: Experimental and DFT study, Chemical Engineering Journal, Available online 3 November 2020, 127593
2020:
[5] Shenghui Yu, Cheng Zhang*, Changle Yuan, Hao Xu, Lun Ma, Qingyan Fang, Gang Chen*, Investigation on the influence of sulfur and chlorine on the initial deposition/fouling characteristics of a high-alkali coal, Fuel Processing Technology 198 (2020) 106234
[6] Changle Yuan, Cheng Zhang,* Shenghui Yu, Hao Xu, Xin Li, Qingyan Fang, and Gang Chen*,Experimental and Density Functional Theory Study of the Adsorption Characteristics of CaO for SeO2 in Simulated Flue Gas and the Effect of CO2,Energy Fuels, 2020, 34, 9, 10872-10881
[7] Lun Ma, Shenghui Yu, Qingyan Fang∗, Cheng Zhang∗, Gang Chen, Effect of separated over-fire air angle on combustion and NOx emissions in a down-fired utility boiler with a novel combustion system. Process Safety and Environmental Protection 138 (2020) 57–66
[8] Sheng-Hui Yu , Cheng Zhang *, Xiao-Pei Zhang, Xin Li, Bo Wei, Peng Tan, Qing-Yan Fang, Gang Chen*, Ji Xia*, Release and transformation characteristics of Na/Ca/S compounds of Zhundong coal during combustion/CO2 gasification, Journal of the Energy Institute 93 (2020) 752-765
[9] Lun Ma, Xinke Chen, Shenghui Yu, Zhongjian Zhang, Qingyan Fang*, Cheng Zhang**,Gang Chen, Effect of CO2 atmosphere on Ca-containing mineral transformation behaviors during a Ca dominated coal co-firing with a Si/Al dominated coal in oxy-fuel condition Journal of the Energy Institute 93 (2020) 2536-2543
2019:
[10] Xiaopei Zhang, Cheng Zhang*, Xiaofei Feng, Shenghui Yu, Xin Li, Qingyan Fang, Gang Chen, Study on the moisture adsorption isotherms and different forms of water for lignite after hydrothermal and thermal upgrading, Fuel, 2019, 246,15 :340-348
[11] Peng Tan, Biao He, Cheng Zhang*, Debei Rao, Shengnan Li, Qingyan Fang, Gang Chen*. Dynamic modeling of NOX emission in a 660 MW coal-fired boiler with long short-term memory[J]. Energy, 2019,176:429-436
[12] Peng Tan, Qingyan Fang, Sinan Zhao, Chungen Yin, Cheng Zhang, Haibo Zhao, Gang Chen. Causes and mitigation of gas temperature deviation in tangentially fired tower-type boilers[J]. Applied Thermal Engineering, 2018,139:135-143.
[13] Quan Li, Xin Li, Wei Li, Liu Zhong, Cheng Zhang*, Qingyan Fang, Gang Chen. Effect of preferential exposure of anatase TiO2 {001} facets on the performance of Mn-Ce/TiO2 catalysts for low-temperature selective catalytic reduction of NOx with NH3,Chemical Engineering Journal,2019,369,26-34
[14] Xin Li Quan Li Wei Li Xiaopei Zhang Liu Zhong Cheng Zhang* Qingyan Fang Gang Chen*, Enhancement of SCR performance of monolithic Mn–Ce/Al2O3/cordierite catalysts by using modified deposition precipitation method, Asia-Pacific Journal of Chemical and Engineering 2019;14:e2318
[15] Xin Li, Quan Li, Liu Zhong, Lun Ma, Shenghui Yu, Cheng Zhang*, Qingyan Fang, Gang Chen, Natures of (001) and (101) surfaces of original and MnO2-loaded anatase: Acomparative study, Applied Surface Science 489 (2019) 123-134
[16] Xin Li, Quan Li, Liu Zhong, Zijian Song, Shenghui Yu, Cheng Zhang,* Qingyan Fang, and Gang Chen, DFT Analysis of the Reaction Mechanism for NH3‑SCR of NOx over Mn/γ-Al2O3 Catalyst, J. Phys. Chem. C 2019, 123, 25185−25196.
2018:
[17] Xin Li, Cheng Zhang*, Xiaopei Zhang, Wei Li, Peng Tan, Lun Ma, QingyanFang, Gang Chen, Study on improving the SO2 tolerance of low-temperature SCR catalysts using zeolite membranes: NO/SO2 separation performance of aluminogermanate membranes, Chemical Engineering Journal,2018,335:483-490
[18] Xiao-Pei Zhang, Cheng Zhang*, Peng Tan, Xin Li, Qing-Yan Fang, Gang Chen. Effects of hydrothermal upgrading on the physicochemical structure and gasification characteristics of Zhundong coal[J]. Fuel Processing Technology. 2018, 172: 200-208
[19] Xiao-Pei Zhang, Cheng Zhang*, Xin Li, Sheng-Hui Yu, Peng Tan, Qing-Yan Fang, Gang Chen, A two-step process for sewage sludge treatment: Hydrothermal treatment of sludge and catalytic hydrothermal gasification of its derived liquid,Fuel Processing Technology 180 (2018) 67–74
[20] Wei Li, Cheng Zhang*, Xin Li, Peng Tan, Anli Zhou, Qingyan Fang, Gang Chen*,Ho-modified Mn-Ce/TiO2 for low-temperature SCR of NOx with NH3:Evaluation and characterization,Chinese Journal of Catalysis 39 (2018) 1653-1663
2017:
[21] Chun-Gang Yuan, Can Huo, Bing Gui, Pengle Liu, Cheng Zhang. Green synthesis of silver nanoparticles using Chenopodium aristatum L. stem extract and their catalytic/antibacterial activities, JOURNAL OF CLUSTER SCIENCE, 2017, 28:1319-1333
[22] Peng Tan, Lun Ma, Ji Xia, Qingyan Fang*, Cheng Zhang, Gang Chen*. Co-firing sludge in a pulverized coal-fired utility boiler: Combustion characteristics and economic impacts. Energy, 2017, 119: 392-399
[23] Peng Tan, Dengfeng Tian, Qingyan Fang*, Lun Ma, Cheng Zhang, Gang Chen*, Lijin Zhong, Honggang Zhang. Effects of burner tilt angle on the combustion and NOX emission characteristics of a 700MWe deep-air-staged tangentially pulverized-coal-fired boiler. Fuel, 2017, 196: 314-324.
[24] Sinan Zhao, Qingyan Fang,*, Chungen Yin,* Tongsheng Wei, Huajian Wang, Cheng Zhang, and Gang Chen,New Fuel Air Control Strategy for Reducing NOx Emissions from Corner-Fired Utility Boilers at Medium−Low Loads,Energy & Fuels,2017, 31(7) :6689-6699
2016:
[25] Xiaofei Feng, Cheng Zhang*, Peng Tan, Xiaopei Zhang, Qingyan Fang, Gang Chen*. Experimental study of the physicochemical structure and moisture readsorption characteristics of Zhaotong lignite after hydrothermal and thermal upgrading Fuel 185 (2016) 112–121
[26] Tan Peng, Zhang Cheng*, Xia Ji, Fang Qingyan, Chen Gang*. Modeling and reduction of NOX emissions for a 700 MW coal-fired boiler with the advanced machine learning method. Energy, 2016, 94:672-679
[27] Tan Peng, Zhang Cheng*, Xia Ji, Fang Qingyan, Chen Gang*. NOx Emission Model for Coal-Fired Boilers Using Principle Component Analysis and Support Vector Regression. Journal of Chemical Engineering of Japan, 2016, 49(2):211-216.
[28] Lun Ma, Qingyan Fang *, Peng Tan, Cheng Zhang, Gang Chen, Dangzhen Lv, Xuenong Duan, Yiping Chen, Effect of the separated overfire air location on the combustion optimization and NOx reduction of a 600 MWe FW down-fired utility boiler with a novel combustion system, Applied Energy, 2016,180: 104–115.
[29] Peng Tan, Lun Ma, Qingyan Fang*, Cheng Zhang*, Gang Chen. Application of different combustion models for simulating the co-combustion of sludge with coal in a 100 MW tangentially coal-fired utility boiler. Energy & Fuels, 2016, 30(3): 1685-1692.
2015年以前:
[30] Peng Tan, Cheng Zhang*, Ji Xia, Qing-Yan Fang, Gang Chen,Estimation of higher heating value of coal based on proximate analysis using support vector regression,Fuel Processing Technology 138 (2015) 298–304
[31] Changya Deng, Cheng Zhang*, Peng Tan, Qingyan Fang, and Gang Chen* ,The melting and transformation characteristics of minerals during co-combustion of coal with different sludge, Energy Fuels, 2015, 29 (10), 6758–6767
[32] Cheng Zhang*, Tingting Li, Dong Li, Ji Xia & Gang Chen*,Releasing behavior of mercury in coal during mild thermal treatment, Indian Journal of Chemical Technology,Vol. 22, November 2015, 328-332
[33] Lun Ma, Qingyan Fang,* Dangzhen Lv,* Cheng Zhang, Yiping Chen, Gang Chen, Xuenong Duan and Xihuan Wang,Reducing NOx Emissions for a 600 MWe Down-Fired Pulverized-Coal Utility Boiler by Applying a Novel Combustion System,Environ. Sci. Technol., 2015, 49 (21), pp 13040–13049
[34] Dengfeng Tian, Lijin Zhong, Peng Tan, Lun Ma, Qingyan Fang*, Cheng Zhang, Dianping Zhang, Gang Chen*,Influence of vertical burner tilt angle on the gas temperature deviation in a 700 MW low NOx tangentially fired pulverised-coal boiler,Fuel Processing Technology 138 (2015) 616–628
[35] Lun Ma, Qingyan Fang*, Dangzhen Lv‡, Cheng Zhang†, Gang Chen*†, Yiping Chen‡, and Xuenong Duan. Influence of Separated overfire air ratio and location on combustion and NOx emissions characteristics for a 600 MWe down-fired utility boiler with a novel combustion system. Energy & Fuels, 2015,29(11):7630-7640
[36] Ji Xia, Gang Chen*, Peng Tan, Cheng Zhang*,An online case-based reasoning system for coal blends combustion optimization of thermal power plant,Electrical Power and Energy Systems,2014,62:299-311
[37] Jinping Zhang, Cheng Zhang,* Yongqi Qiu, Lei Chen, Peng Tan, and Gang Chen*,Evaluation of Moisture Readsorption and Combustion Characteristicsof a Lignite Thermally Upgraded with the Addition of Asphalt,Energy Fuels 2014, 28, 7680−7688
[38] Xianjun Yang, Cheng Zhang,* Peng Tan, Tao Yang, Qingyan Fang, and Gang Chen*,Properties of Upgraded Shengli Lignite and Its Behavior for Gasification,Energy Fuels,2014, 28, 264−274
[39] Dong Li, Cheng Zhang,* Ji Xia, Peng Tan, Li Yang, and Gang Chen*, Evolution of Organic Sulfur in the Thermal Upgrading Process of Shengli Lignite, Energy Fuels 2013, 27, 3446−3453
[40] Guangqian Luo, Jingjing Ma , Jun Han , Hong Yao , Minghou Xu , Cheng Zhang , Gang Chen ,Rajenda Gupta , Zhenghe Xu. Hg occurrence in coal and its removal before coal utilization. Fuel, 104 ,70–76,2013
[41] Junjun Yin, Cheng Zhang, Changlei Qin , Wenqiang Liu, Hui An, Gang Chen, Bo Feng,Reactivation of calcium-based sorbent by water hydration for CO2 capture,Chemical Engineering Journal 198–199 (2012) 38-44(SCI EI)
[42] Yuangang Xu, Cheng Zhang, Ji Xia, Yonghua Duan, Junjun Yin and Gang Chen,Experimental study on the comprehensive behavior of combustion for blended coals,Asia-Pacific Journal of Chemical Engineering,2010,5(3):435-440.
[43] Cheng Zhang, Gang Chen, Rajender Gupta, et al. Emission Control of Mercury and Sulfur by Mild Thermal Upgrading of Coal. Energy & Fuels 2009, 23(2): 766-773 (SCI EI)
[44] Cheng Zhang, Gang Chen, Ting Yang, et al. An Investigation on Mercury Association in an Alberta Sub-bituminous Coal. Energy & Fuels 2007, 21(2): 485-490
[1] 何梓谦,余圣辉,张成,许豪,方庆艳,陈刚.气氛对氧化物吸附气相砷的影响及机理分析[J].洁净煤技术,2020,26(04):190-195.
[2] 饶德备,谭鹏,李胜男,曹楠,张成,方庆艳,陈刚.基于选择性集成模型库的选择性催化还原脱硝系统自适应建模[J].中国电机工程学报,2019,39(19):5817-5823+5909.
[3] 饶德备,谭鹏,李壮扬,胡昌镁,曹楠,张成,方庆艳,陈刚.燃煤电站SCR脱硝系统机理建模[J].热力发电,2019,48(08):36-41.
[4] 许豪,张成,袁昌乐,余圣辉,李权,方庆艳,陈刚.模拟烟气气氛下矿物元素组分对砷的吸附特性研究[J].燃料化学学报,2019,47(07):876-883.
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[6] 颜祝明,马仑,叶骥,张成,谭鹏,方庆艳,陈刚.深度空气分级下混煤未燃尽碳与NO_x协同优化数值模拟[J].洁净煤技术,2019,25(03):82-87.
[7] 刘基昌,方庆艳,马仑,于鹏峰,张成,陈刚.SOFA风速度偏置对660 MW塔式锅炉烟温偏差影响的数值模拟[J].动力工程学报,2019,39(04):257-266.
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[10] 余圣辉,张成*,张小培,周安鹂,许豪,方庆艳,陈刚,燃烧放热对准东煤成灰过程中钠盐释放的影响,燃料化学学报,2018,46(04):391-398.
[11] 马仑,方庆艳,汪涂维,王廷旭,郭岸龙,谭鹏,张成,陈刚.混煤燃烧过程中的交互作用:煤种对混煤燃烧与NO_x排放特性的影响[J].煤炭学报,2017,42(09):2440-2446.
[12] 马仑,汪涂维,方庆艳,郭岸龙,王廷旭,谭鹏,张成,陈刚.混煤燃烧过程中的交互作用:过量空气系数对混煤燃尽特性的影响[J].洁净煤技术,2017,23(04):42-46.
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[14] 郭岸龙,方庆艳,赵斯楠,吴英,夏永俊,张成,陈刚.660MW超临界墙式切圆煤粉锅炉烟温偏差优化控制[J].动力工程学报,2017,37(05):341-348.
[15] 葛江,郭义杰,吴浪,苏杭,杨剑,张成,陈刚.烟煤与污泥混烧过程中重金属As、Zn和Cr的迁移规律和灰渣的浸出特性[J].广东电力,2017,30(04):37-42+54.
[16] 王廷旭,匡思维,方庆艳,马仑,张成,陈刚.O2/CO2气氛下煤/生物质混燃特性实验研究[J].热力发电,2017,46(04):16-21.
[17] 王廷旭,匡思维,方庆艳,马仑,张成,陈刚.O2/CO2气氛下煤与生物质混燃NO_x的排放特性[J].煤炭转化,2017,40(02):36-41.
[18] 刘扬,张成,王澜,张小培,冯小飞,陈刚.高碱煤中钠基化合物对灰熔融特性的影响[J].燃烧科学与技术,2017,23(03):268-273.
[19] 张小培,张成,余圣辉,李鑫,冯小飞,马亚飞,陈刚.准东煤水热提质过程中煤质特性变化对CO2气化影响.燃料化学学报,2017,(10):1-6(2017-10-18).
[20] 李伟,张成*,李鑫,谭鹏,方庆艳,陈刚,Ho 掺杂对Mn - Ce /TiO2低温SCR 催化剂的脱硝性能影响,燃料化学学报,2017,45(12):1508-1513
[21] 冯小飞, 张成*, 张小培, 黎盛鸣, 葛江, 陈刚,水热提质对褐煤理化结构及复吸水特性的影响,燃料化学学报,2016,44(1)23-29(EI)
[22] 谭鹏, 李鑫, 张小培, 方庆艳, 张成, 陈刚. 基于工业分析的煤质发热量预测[J]. 煤炭学报, 2015, 40(11): 2641-2646. (EI)
[23] 夏季, 张成, 袁向宇, 张尚志, 谭鹏, 陈刚. 基于物理规划的混煤掺烧方案优化模型[J]. 煤炭学报, 2015, 40(11): 2654-2660. (EI)
[24] 马仑, 汪涂维, 方庆艳, 谭鹏, 张成, 陈刚. 混煤燃烧过程中的交互作用:机理实验研究与数值模拟[J]. 煤炭学报, 2015, 40(11): 2647-2653. (EI)
[25] 田登峰, 方庆艳, 谭鹏, 张成.燃烧器上摆角度对四角切圆锅炉再热蒸汽温度偏差影响的数值模拟[J].化工学报 2015,66(7), 2702-2708. (EI)
[26] 张锦萍; 李冬; 张成; 丘永琪; 殷立宝; 徐齐胜; 陈刚. 低温热提质褐煤的理化结构演化及燃烧特性[J]. 煤炭学报. 2015,40(03):671-677 (EI)
[27] 张锦萍,张成,丘永琪,陈磊,刘扬,陈刚,低温热提质褐煤的复吸水特性研究,工程热物理学报,2015,36(12):2760-2765
[28] 张成; 朱天宇; 殷立宝; 方庆艳; 湛志钢; 徐齐胜; 陈刚. 100MW燃煤锅炉污泥掺烧试验与数值模拟[J]. 燃烧科学与技术. 2015, 21(02):114-123
[29] 马仑,方庆艳,田登峰,张成,陈刚. 亚临界W火焰锅炉磨煤机组合运行方式优化数值模拟[J]. 动力工程学报,2015,06:444.
[30] 陈金楷,夏季,谭鹏,张成,陈刚. 结合相空间重构和ELM的磨煤机振动软测量[J]. 热力发电. 2015,03:
[31] 朱天宇,殷立宝,张成,方庆艳,徐齐胜,陈刚. 掺烧不同种类污泥锅炉的燃烧特性[J].热力发电. 2015,06:
[32] 殷立宝,朱天宇,张成,方庆艳,徐齐胜,陈刚. 掺烧污泥煤粉锅炉燃烧特性的数值模拟[J]. 热力发电. 2015,03:
[33] 殷立宝,马仑,张成,方庆艳,徐齐胜,陈刚. 超临界对冲燃烧锅炉水冷壁向火侧起皮成因分析[J]. 动力工程学报,2015,04:257-262.