THE EFFECTIVENESS OF CALCIUM (MAGNESIUM) ACETATE AND CALCIUM BENZOATE AS NOX REDUCTION AGENTS IN COAL COMBUSTION

被引:19
作者
STECIAK, J [1 ]
ZHU, W [1 ]
LEVENDIS, YA [1 ]
WISE, DL [1 ]
机构
[1] NORTHEASTERN UNIV,DEPT CHEM ENGN,BOSTON,MA 02115
关键词
CALCIUM ACETATE; CMA; NOX REDUCTION; COAL COMBUSTION;
D O I
10.1080/00102209408935476
中图分类号
O414.1 [热力学];
学科分类号
摘要
A laboratory study was conducted to assess the effectiveness of the chemicals calcium magnesium acetate (CMA), calcium acetate (CA), and calcium benzoate (CB) in reducing NOx emission from coal-fired furnaces. CMA, which is currently being used as a non-corrosive road deicing salt, has demonstrated exceptional effectiveness in our laboratory as an in-boiler SO2 removal agent (Levendis et al., 1993). This is due to the affinity of the calcium and magnesium components of CMA for sulfur; the reaction results in solid sulfate salts. The current investigation explored the role of the organic component of CMA, as well as that in CA and CB, in removing NOx emissions that are typically found in post-dame regions of furnaces burning pulverized coal or residual oil. Bench-scale experiments were conducted al gas temperatures ranging from 450 to 1450 degrees C and oxygen concentrations between 0 to 5%. The residence time was in the order of 4 s. Injection of the CMA reagent at a mass ratio of CMA/NO of 41 (or an equivalent acetate/NO molar ratio of 18) reduced NOx by more than 90% (at 0% O-2 and temperatures above 850 degrees C) to 50% (at 5% O-2 and 650 to 850 degrees C). At an oxygen concentration of 2%, NOx reduction seemed to be most effective between 1000 and 1350 degrees C with NOx reductions of 70 to 80%. The efficacy of calcium acetate (CA) and calcium benzoate (CB) as NOx reducers was also explored, with CA (CA/NO mass ratio of 41 and acetate/NO molar ratio of 15) being less efficient than CMA at a similar phi with oxygen present but as efficient in 0% oxygen. CB (CB/NO mass ratio of 41 with benzoic acid/NO molar ratio of 9) was as efficient as CMA, regardless of O-2 concentration, but at temperatures higher by 200 degrees C.
引用
收藏
页码:193 / 211
页数:19
相关论文
共 37 条
[1]  
ANDO J, 1985, EPA6005985040 SUMM
[2]  
Arand J.K, 1982, U.S. Patent, Patent No. [4,325,924, 4325924]
[3]   DETAILED MECHANISM FOR OXIDATION OF BENZENE [J].
BITTKER, DA .
COMBUSTION SCIENCE AND TECHNOLOGY, 1991, 79 (1-3) :49-72
[4]  
Bowman CT, 1992, S INT COMBUST, V24, P859, DOI DOI 10.1016/S0082-0784(06)80104-9
[5]  
BOWMAN CT, 1981, CHEM COAL UTILIZATIO, P365
[6]   KINETICS OF THE NO-CARBON REACTION AT FLUIDIZED-BED COMBUSTOR CONDITIONS [J].
CHAN, LK ;
SAROFIM, AF ;
BEER, JM .
COMBUSTION AND FLAME, 1983, 52 (01) :37-45
[7]  
CHEN SL, 1986, 21 S INT COMB COMB I, P1159
[8]  
Flagan Richard C., 1988, FUNDAMENTALS AIR POL
[9]  
FURUSAWA T, 1983, INT CHEM ENG, V20, P239
[10]  
GHOJEL J, 1983, 830245 SOC AUT ENG P