期刊文献+

Refinement of a lunar FeO mapping method

Refinement of a lunar FeO mapping method
下载PDF
导出
摘要 Clementine UVVIS and NIR data from the lunar sampling sites (totaling 46 sampling sites) were processed and used to refine the iron determination method of Le Mouéic et al. (2000, 2002). We found that about 21 sampling sites are unsuitable to Le Mouéic et al's spectral parameters ("slope" and "depth l") because their 1500 nm filter could not be used as spectral parameters' right shoulders and to evaluate the depth of the 1-μm absorption feature accurately. We used the rest 25 sampling sites to refine the method developed by Le Mouéic et al. (2000, 2002 ) and obtained our own equation of FeO content determination. We tested our own equation, and the results are satifactory. In our work we also acquired some useful experiences in scientific applications of our own dataset of the Chang'E-1 mission. Clementine UVVIS and NIR data from the lunar sampling sites (totaling 46 sampling sites) were processed and used to refine the iron determination method of Le Mou6ic et al. (2000, 2002). We found that about 21 sampling sites are unsuitable to Le Mou6ic et al's spectral parameters ("slope" and "depth 1") because their 1500 nm filter could not be used as spectral parameters' right shoulders and to evaluate the depth of the 1-1am absorption feature accurately. We used the rest 25 sampling sites to refine the method developed by Le Mou6ic et al. (2000, 2002 ) and obtained our own equation of FeO content determination. We tested our own equation, and the results are satifactory. In our work we also acquired some useful experiences in scientific applications of our own dataset of the Chang 'E- 1 mission.
出处 《Chinese Journal Of Geochemistry》 EI CAS 2007年第1期98-104,共7页 中国地球化学学报
基金 This research is supported by the National Natural Science Foundation of China (Grant No. 40373037).
关键词 月球 光谱 氧化铁 映射法 细分 Moon spectrum mineral
  • 相关文献

参考文献37

  • 1[1]Adams J.B.(1974) Visible and near-infrared diffuse reflectrance spectra of pyroxenes as applies to remote sensing of solid bodies in the solar system[J].J.Geophys.Res.79,4829.
  • 2[2]Blewett D.T.,Lucey P.G.,Hawke B.R.,and Jolliff B.L.(1997) Clementine images of the lunar sample-return stations:Refinement of FeO and TiO2 mapping techniques[J].J.Geophys.Res.102,16319-16325.
  • 3[3]Burns R.G.(1993) Origin of electronic spectra of minerals in the visible to near-infrared region.In Remote Geochemical Analysis[M].pp.3-29.Cambridge University Press,New York.
  • 4[4]Cahill J.T.Et al.(2004) Verification of quality and compatibility for the newly calibrated Clementine NIR Data Set.In Lunar and Planet.Sci.Conf.[C].ⅩⅩⅩⅤ,1469.
  • 5[5]Charette M.P.and Adams J.B.(1977) Spectral reflectance of lunar highland rocks.In Proc.Luar Sci.Conf.8th[C].172.
  • 6[6]Fischer E.M.and Pieters C.M.(1994) Remote determination of exposure degree and iron concentration of lunar soils using VIS-NIR spectral methods[J].Icarus.111,475.
  • 7[7]Fischer E.M.and Pieters C.M.(1996) Composition and exposure age of the Apollo 16 Cayley and Descartes regions from Clementine data:Normalizing the optical effects of space weathering[J].J.Geophys.Res.101,2225.
  • 8[8]Gills J.J.et al.(2003) A revised algorithm for calculation TiO2 concentrations from Clementine UVVIS data:A synthesis of rock,soil,and remotely sensed TiO2 concentrations.[J].J.Geophys.Res.108,5009.
  • 9[9]Hapke B.et al.(1975) Effects of vapor-phase deposition processes on the optical,chemical,and magnetic properties of the lunar regolith[J].Moon.13,339.
  • 10[10]Haskin L.and Warren P.(1991) Lunar chemistry.In Lunar Source Book-A User's Guide to the Moon[M].pp.357-474.Cambridge University Press,New York.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部