Citation: | LIU Chuanliang. PERFORMANCE OF ATOMIZED SPRAYING SUSPENDED DESULFURIZATION OF FLY ASH IN CFB BOILER[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(7): 81-87. doi: DOI:10.13205/j.hjgc.202207012 |
[1] |
NEWBY R A, KEAIRNS D L. Alternatives to calcium-based SO2 sorbents for fluidized-bed combustion:concetial evaluation[R]. EPA Report EPA-600/7-78-005, 1978.
|
[2] |
ANTHONY E J, GRANATSTEIN D L. Sulfation phenomena in fluidized bed combustion system[J]. Progress in Energy and Combustion Science, 2001, 27:215-236.
|
[3] |
ITALO W L, SAMUEL J M, MOISES B N, et al. Effect of additives to improve calcium-based sorbents in semi-dry flue gas desulphurization[J]. Emission Control Science and Technology, 2020, 6:105-112.
|
[4] |
JIA L, HAN F, LI Z P, et al. Influence mechanism of additives on the crystal structure and desulfurization performance of magnesium slag[J].Journal of Material Cycles and Waste Management, 2021, 23:1114-1125.
|
[5] |
WANG J S, WU Y H. Reactivation of FBC ash sulphur sorbent:hydration and sulphation studies[C]//18th International Conference on Fluidized Bed Combustion, Toronto, Canada, 2005.
|
[6] |
LAURSEN K, DUO W, GRACE J R, et al. Sulfation and reactivation characteristics of nine limestones[J]. Fuel, 2000, 79:153-163.
|
[7] |
ZHANG J, ZHAO S W, YOU C F, et al. Rapid hydration preparation of calcium-based sorbent made from lime and fly ash[J]. Industrial&Engineering Chemistry Research, 2007, 46(16):5340-5345.
|
[8] |
MARQUIS D L. Reactivation of spent CFB Limestone by hydration, masters thesis submitted to the department of chemical engineering[D]. New Brunewick:University of New Brunswick,1992.
|
[9] |
GUENTER S, NEVIN S. Design of a 2×160 MWe CFB boiler utilizing high sulfur turkish lignite[C]//17th International Fluidized Bed Combustion Conference, Jacksonville, Florida USA, 2003.
|
[10] |
石林,陈定盛,汪碧容,等.提高LIFAC法脱硫效率的工程实例[J].环境污染治理技术与设备, 2005, 6(11):92-94.
|
[11] |
CURRAN R A, TANG J T, CAPAN S F, et al. Cold-side desulfurization by humidification of fly ash in CFB boilers[J]. Fluidized Bed Combustion, 1995, 2:851-857.
|
[12] |
ZHAI M, GUO L, SUN L, et al. Desulfurization performance of fly ash and CaCO3 compound absorbent[J]. Powder Technology, 2017, 305:553-561.
|
[13] |
QIN L B, HAN J, CHEN W S, et al. Enhancing SO2 removal efficiency by lime modified with sewage sludge in a novel integrated desulfurization progress[J]. Environment Protection Engineering, 2017, 43(4):17-27.
|
[14] |
XIAO Y J, XIA Y D, JIANG A P, et al. Research on optimization of coal slime fluidized bed boiler desulfurization cooperative operation[J]. Process, 2021, 10.3390:9010075.
|
[15] |
高翔,刘海蛟,滕斌,等.循环悬浮式烟气半干法脱硫技术的实验研究[J].动力工程,2006,26(5):720-725.
|
[16] |
KOECH L, RUTTO H, LEROTHOLI L, et al. Spray drying absorption for desulphurization:a review of recent developments[J]. Clean Technologies and Environmental Policy, 2021, 23:1665-1686.
|
[17] |
刘传亮,王勤辉.循环流化床锅炉脱硫飞灰的水活化实验研究[J].能源工程,2014(2):41-46.
|
[18] |
陈美玲,夏雯,卢平.操作参数对改性钙基吸收剂同时脱硫脱硝特性的影响[J].环境工程,2015,33(11):88-91.
|
[19] |
王晓晨,赵兵涛,叶琦.静态旋流强化湿法烟气脱硫研究进展[J].环境工程,2020,38(3):128-134.
|
[20] |
YOON H, STOUFFER M R, ROSENBOOVER W A, et al. Pilot process variable study of cool-side desulfurization[J]. Environmental Progress, 1988, 7(2):104-111.
|
[21] |
RUHLAND F, KIND R, WEISS S. The kinetics of the absorption of sulfur dioxide in calcium hydroxide suspension[J]. Chemical, Engineering, Science, 1991, 46(4):934-946.
|
[22] |
滕斌,高翔,骆仲泱,等.分级喷水增湿对半干法烟气脱硫效率的影响[J].电力环境保护, 2006, 22(3):22-25.
|
[23] |
王勤辉,蔡毅,程乐鸣,等.循环流化床锅炉飞灰增湿低温悬浮脱硫特性[J].化工学报,2014,65(2):684-691.
|