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利用粉煤灰合成A型沸石分子筛的实验研究 被引量:9

Experimental Study on Synthesis of Zeolite A from Coal Fly Ash
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摘要 以烟台某电厂排放的粉煤灰固体废弃物为原料,对原料进行预处理及水热合成实验合成出沸石分子筛,经XRD表征可知产物为A型分子筛。通过试验确定最佳合成条件:焙烧温度为750℃、碱度比为1.3、晶化温度为100℃以及晶化时间为10 h。在此条件下合成的沸石结晶度较高,具有很好的应用前景。 Zeolite were synthesized by using coal fly ash as raw material,which were discharged from a power plant in Yantai.Products were obtained by pre-treating and hydrothermal synthesizing procedures and characterized by XRD.The optimal parameters were determined by orthogonal experiments: the calcinating temperature is 750 ℃,the mass ratio of NaOH and fly ash is 1.3,the crystallizing temperature is 100 ℃,and the crystallizing time is 10 h.The synthesized products under these optimum conditions have a broad application.
出处 《中国资源综合利用》 2011年第1期43-45,共3页 China Resources Comprehensive Utilization
关键词 粉煤灰 A型分子筛 水热合成 废弃物利用 fly ash zeolite A hydrothermal synthesis waste utilization
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参考文献6

  • 1X. Querol,N. Moreno,J.C.Uman a,A.Alastuey,E.Herna ndez,A.Lo pez-So|er, F.Plana.Synthesis of zeolites from coat fly ash: an overview[J].International Journal of Coal Geology, 2002, 50:413-423.
  • 2王德举,王政国,唐颐.利用粉煤灰合成沸石的研究进展[J].粉煤灰综合利用,2002,16(6):32-34. 被引量:34
  • 3Hidekazu Tanaka, Atsushi Fujii, Satoshi Fujimoto, Yoshiki Tanaka.Microwave-AssistedTwo-StepProcessfortheSynthesis of a Single-Phase Na-A Zeolite from Coal Fly Ash [J]. Advanced Powder Technology, 2008,19 : 83-94.
  • 4K.S.Hui,C.Y.H.Chao.Effects of step-change of synthesis temperature on synthesis of zeolite 4A from coal fly ash [ J ]. Microporous and Mesoporous Materials, 2006,88: 145-151.
  • 5李巧玲,王亚昆.用粉煤灰制取分子筛的研究[J].新技术新工艺,1998(3):37-38. 被引量:4
  • 6Norihiro Murayama, Tomoya Takahashi, Kazuki Shuku, Hyoung-ho Lee, Junji Shibata.Effeet of reaction temperature on hydrothermal syntheses of potassium type zeolites from coal fly ash [J ].International Journal of Mineral Processing,2008, 87 : 129-133.

二级参考文献12

  • 1韩怀强.粉煤灰资源的开发、利用和展望[J].化学世界,1996,37(1):6-11. 被引量:11
  • 2[1]X. Querol, F. Plana, A. Alastuey, A. LopezSoler. Fuel, 1997,76,793
  • 3[2]G. G. Hollmana, G. Steenbruggena, M. Janssen-Jurkovicova. Feul, 1999,78,1225
  • 4[3]X. Querol, A. Alastuey, A. LopezSoler, F. Plana, J. M. Andres, R. Juan, P. Ferrer, C. R. Ruiz. Environ. Sci. Technol, 1997,31,2527
  • 5[4]X. S. Zhao, G. Q. Lu, H. Y. Zhu. J. Por. Mater., 1997,4,245
  • 6[5]N. Shigemoto, H. Hayashi, K. Miyaura. J. Mater. Sci., 1993,28,4781
  • 7[6]C. L. Choi, M. Park, D. H. Lee, J. E. Kim, B. Y. Park, J. Choi. Environ. Sci. Technol, 2001,35,2812
  • 8[7]H. L. Chang, W. H. Shih. Ind. Eng. Chem. Res., 2000,39,4185
  • 9[8]P. Kumar, Y. Qumi, T. Sano, K. Yammana. J. Ceram. Soc. Jpn., 2001,109,968
  • 10史高峰.甘肃化工,1992,4.

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