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分级燃烧中固体吸附剂对痕量金属排放的影响 被引量:13

Effects of Air Staging with Absorbents on Trace Metal during Coal Combustion
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摘要 在一维煤粉燃烧炉上进行了烟煤添加不同吸附剂的分级燃烧试验 .试验过程中保持总的空气过剩系数α为 1 2 0 ,分级风量占总风量的 2 0 % ,炉内温度为 1 1 0 0℃左右 .试验发现分级燃烧会增加亚微米颗粒排放 ,不利于对痕量重金属元素的控制 ,尤其对挥发性大的元素 (如Cu和Ni)影响越明显 .热力学计算也表明不同气氛下痕量元素的形态变化过程有很大差异 ,还原气氛下痕量元素会生成不稳定的次氧化物和还原性产物 .固体吸附剂对煤中重金属的排放具有吸附作用 ,并且不同的吸附剂对不同的痕量元素的吸附效果各不相同 ,不分级时 ,对Co ,Cr,Ni元素来说 ,高岭土的吸附效果最好 ;对Be元素 ,灰质白云石效果最好 ;CaO则对Cu元素的吸附效果最好 .而在分级情况下 ,对元素Be,Cr,Ni,灰质白云石的效果最好 ;对Co和Cu 。 Staged combustion was carried out on laboratory scale pulverized coal combustion with different absorbents. The experiment indicated staged combustion increased emission of submicron particles, which went against the control of trace elements, especially for those of high volatile elements, such as Cu, Ni. The thermodynamics calculation also indicate the transformation of trace metal was different with different atmosphere, suboxidized and reduced species were more easily formed under reduced condition. In both conditions, absorbents show a certain absorptive ability to trace metal, and different absorbent had different ability. For unstaged combustion, kaolinite was the best for Co, Cr and Ni; dolomite for Be, and CaO for Cu. But for under staged condition, HZ dolomite was the best for Be, Cr and Ni; Kaolinite for Co and Cu.
出处 《环境科学》 EI CAS CSCD 北大核心 2001年第6期34-38,共5页 Environmental Science
基金 国家重点基础研究专项资金资助 (G19990 2 2 2 12 )
关键词 固体 痕量重金属 分级燃烧 吸附剂 燃煤 废气处理 trace element air staged combustion absorbents coal fired
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参考文献11

  • 1张振桴,樊金串,晋菊芳,杨幼村,宋丽君,杨煌.煤中砷,铅,铍,铬等元素的存在状态[J].燃料化学学报,1992,20(2):206-212. 被引量:32
  • 2Biswas P, Wu CY. Control of toxic metal emissions from combustor using sorbents: Areview. Journal of the Air & Waste Management Association, 1998, 48:113~127.
  • 3Gullett BK, Raghunathan K. Reduction of coal-based metal emissions by furnacesorbent injection. Energy & Fuels,1994, 8 (5): 1068~1076.
  • 4Mohit Uberol, Farhang Shadman. High-temperature removal of cadmium compounds usingsolid sorbents. Environ.Sci. Technol., 1991, 25: 1285~1289.
  • 5Uberoi M, Shadman F. Sorbents for removal of lead compounds from hot flue gased.AIChE. Journal, 1990, 36:307~309.
  • 6A Ghosh-Dastidar, S Mahuli et al. Selenium capture using sorbent powders: mechanismof sorption by hydrated lime.Environ Sci. Technol, 1996, 30: 447~452.
  • 7Wend JOL, Linak WP. Environmental control of toxic metal air emissions from thecombustion of coal and wastes. Procedings of symposium on energy engineering in the 21stcentury(SEE 2000), 9~13 January, Hong Kong: 1686~ 1690.
  • 8Hartmut Spliethoff, Ulrich Greul, Helmut Rudiger et al.Basic effects on NOxemissions in air staging and reburning at a bench-scale test facility. Fule, 1996,75: 560~565.
  • 9Linak W P , Peterson T W. Mechanisms governing the composition and sizedistribution of ash aerosol in a laboratory pulverized coal combustion. Twenty-firstsymposium(international) on combustion. the combustion institute, 1986.399~410
  • 10Frandsen F, Dam-Johansen K, Rasmussen P. Trace elments from combustion andgastification of coal an equilibrium approach. Progress in energy of combustion andscience,1994, 20: 115~138.

二级参考文献5

  • 1杨绍晶,环境化学,1983年,2卷,32页
  • 2欧阳中华,硕士学位论文,1995年
  • 3曾汉才,燃烧与污染,1992年
  • 4Ying R T,American Chemistry Society,1978年
  • 5周建平,硕士学位论文,1997年

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