1 |
Reinhold SPÖRL, WALKER Johannes, BELO Lawrence, et al. SO3 emissions and removal by ash in coal-fired oxy-fuel combustion[J]. Energy & Fuels, 2014, 28(8): 5296-5306.
|
2 |
LU J, ZHOU Z, ZHANG H, et al. Influenced factors study and evaluation for SO2/SO3 conversion rate in SCR process[J]. Fuel, 2019, 245: 528-533.
|
3 |
HE K, TANG Z, SONG Q, et al. Process analysis of SO3 removal by Ca(OH)2 particles from flue gas[J]. Chemical Engineering Science, 2022, 247: 117054.
|
4 |
李欣怡, 潘丹萍, 胡斌, 等. 燃煤烟气中SO3迁移转化特性及其控制的研究现状及展望[J]. 化工进展, 2018, 37(12): 4887-4896.
|
|
LI Xinyi, PAN Danping, HU Bin, et al. Research status and prospects of migration, transformation and control of SO3 from coal-fired flue gas[J]. Chemical Industry and Engineering Progress, 2018, 37(12): 4887-4896.
|
5 |
刘亚明, 束航, 徐齐胜, 等. SCR脱硝过程中SO2催化氧化的原位红外研究[J]. 燃料化学学报, 2015, 43(8): 1018-1024.
|
|
LIU Yaming, SHU Hang, XU Qisheng, et al. FT-IR study of the catalytic oxidation of SO2 during the process of selective catalytic reduction of NO with NH3 over commercial catalysts[J]. Journal of Fuel Chemistry and Technology, 2015, 43(8): 1018-1024.
|
6 |
YANG Zhengda, ZHENG Chenghang, ZHANG Xuefeng, et al. Highly efficient removal of sulfuric acid aerosol by a combined wet electrostatic precipitator[J]. RSC Advances, 2018, 8(1): 59-66.
|
7 |
HU B, ZHANG L, YI Y, et al. PM2.5 and SO3 collaborative removal in electrostatic precipitator[J]. Powder Technology, 2017, 318: 484-490.
|
8 |
XIANG Baixiang, ZHANG Man, WU Yuxin, et al. Experimental and modeling studies on sulfur trioxide of flue gas in a coal-fired boiler[J]. Energy & Fuels, 2017, 31(6): 6284-6297.
|
9 |
ZHENG C, WANG Y, LIU Y, et al. Formation, transformation, measurement, and control of SO3 in coal-fired power plants[J]. Fuel, 2019, 241: 327-346.
|
10 |
MITSUI Y, IMADA N, KIKKAWA H, et al. Study of Hg and SO3 behavior in flue gas of oxy-fuel combustion system[J]. International Journal of Greenhouse Gas Control, 2011, 5: S143-S150.
|
11 |
张道军, 马子然, 孙琦, 等. 硫酸氢铵在钒基选择性催化还原催化剂表面的生成、作用及防治[J]. 化工进展, 2018, 37(7): 2635-2643.
|
|
ZHANG Daojun, MA Ziran, SUN Qi, et al. Formation mechanism, effects and prevention of NH4HSO4 formed on the surface of V2O5 based catalysts[J]. Chemical Industry and Engineering Progress, 2018, 37(7): 2635-2643.
|
12 |
FLEIG Daniel, ANDERSSON Klas, JOHNSSON Filip. Influence of operating conditions on SO3 formation during air and oxy-fuel combustion[J]. Industrial & Engineering Chemistry Research, 2012, 51(28): 9483-9491.
|
13 |
PAN Danping, GU Conghui, ZHANG Dongping, et al. Removal characteristics of sulfuric acid aerosols in the wet electrostatic precipitator system[J]. Energy & Fuels, 2019, 33(8): 7813-7818.
|
14 |
ZHENG Chenghang, HONG Yipan, XU Zhewei, et al. Experimental study on removal characteristics of SO3 by wet flue gas desulfurization absorber[J]. Energy & Fuels, 2018, 32(5): 6031-6038.
|
15 |
何柯佳, 郑娜, 宋蔷, 等. 钙基吸收剂脱除SO x 过程中SO3吸收量的测量方法[J]. 中国电机工程学报, 2019, 39(20): 5973-5978, 6177.
|
|
HE Kejia, ZHENG Na, SONG Qiang, et al. A novel method for the measurement of SO3 absorption amount by calcium based absorbent during SO x removal process[J]. Proceedings of the CSEE, 2019, 39(20): 5973-5978, 6177.
|
16 |
Dean THIBAULT J, STEWARD Frank R, RUTHVEN Douglas M. The kinetics of absorption of SO3 in calcium and magnesium oxides[J]. The Canadian Journal of Chemical Engineering, 1982, 60(6): 796-801.
|
17 |
GALLOWAY B D, SASMAZ E, PADAK B. Binding of SO3 to fly ash components: CaO, MgO, Na2O and K2O[J]. Fuel, 2015, 145: 79-83.
|
18 |
WANG Z, HU Y, CHENG X, et al. Study of adsorption characteristics of calcium-based sorbents with SO3 [J]. Energy Procedia, 2018, 144: 43-49.
|
19 |
何川, 宋玉宝, 马云龙, 等. 钙镁氧化物及氢氧化物脱除SO3协同防治催化剂低温失活[J]. 化工进展, 2020, 39(11): 4619-4624.
|
|
HE Chuan, SONG Yubao, MA Yunlong, et al. Synergetic control catalyst deactivation at low temperature through SO3 removal by calcium magnesium oxide and hydroxide[J]. Chemical Industry and Engineering Progress, 2020, 39(11): 4619-4624.
|
20 |
QI L Q, YUAN Y T. Influence of SO3 in flue gas on electrostatic precipitability of high-alumina coal fly ash from a power plant in China[J]. Powder Technology, 2013, 245: 163-167.
|
21 |
CAO Jun, ZHONG Wenqi, JIN Baosheng, et al. Treatment of hydrochloric acid in flue gas from municipal solid waste incineration with Ca-Mg-Al mixed oxides at medium-high temperatures[J]. Energy & Fuels, 2014, 28(6): 4112-4117.
|
22 |
HE Kejia, SONG Qiang, YAN Zhennan, et al. SO3 removal from flue gas by using Na2SO3 [J]. Energy & Fuels, 2020, 34(6): 7232-7241.
|
23 |
陈朋. 钙基吸收剂脱除燃煤烟气中SO3的研究[D]. 济南: 山东大学, 2011.
|
|
CHEN Peng. Research of SO3 removal from flue-gas by calcium-based absorbents[D]. Jinan: Shandong University, 2011.
|
24 |
ZHENG C, LUO C, LIU Y, et al. Experimental study on the removal of SO3 from coal-fired flue gas by alkaline sorbent[J]. Fuel, 2020, 259: 116306.
|
25 |
HE K, SONG Q, YAN Z, et al. Study on competitive absorption of SO3 and SO2 by calcium hydroxide[J]. Fuel, 2019, 242: 355-361.
|
26 |
RASMUSSEN M H, WEDEL S, PEDERSEN K H, et al. Initial reaction between CaO and SO2 under carbonating and non-carbonating conditions[J]. Chemical Engineering Science, 2015, 134: 169-177.
|
27 |
ZUO W, ZHANG X, LI Y, et al. Evaluation of the controlled condensation method for flue gas SO3/H2SO4 measurement[J]. Fuel Processing Technology, 2020, 206: 106461.
|
28 |
FANG F, LI Z S, CAI N S, et al. AFM investigation of solid product layers of MgSO4 generated on MgO surfaces for the reaction of MgO with SO2 and O2 [J]. Chemical Engineering Science, 2011, 66(6): 1142-1149.
|
29 |
SUN Z, LUO S, QI P, et al. Ionic diffusion through calcite (CaCO3) layer during the reaction of CaO and CO2 [J]. Chemical Engineering Science, 2012, 81: 164-168.
|
30 |
KEENER T C, KHANG S J. Kinetics of the sodium bicarbonate—Sulfur dioxide reaction[J]. Chemical Engineering Science, 1993, 48(16): 2859-2865.
|