199
Views
3
CrossRef citations to date
0
Altmetric
Original Articles

Satellite Visible–Near Infrared Reflectance Correlates to Soil Nitrogen and Carbon Content in Three Fields of the Thessaly Plain (Greece)

, , , , , , , , , & show all
Pages 28-37 | Published online: 19 Feb 2013

References

  • Agbu , P. A. , Fehrenbacher , D. J. and Jansen , I. J. 1990 . Soil property relationships with SPOT satellite digital data in east central Illinois . Soil Science Society of America Journal , 54 : 807 – 812 .
  • Barnes , E. M. , Sudduth , K. A. , Hummel , J. W. , Lesch , S. M. , Corwin , D. L. , Yang , C. , Daughtry , C. S. T. and Bausch , W. C. 2003 . Remote- and ground-based sensor techniques to map soil properties . Photogrammetric Engineering and Remote Sensing , 69 ( 6 ) : 619 – 630 .
  • Bouyoukos , G. H. 1951 . A recalibration of the hydrometer method for making mechanical analysis of soils . Agronomy Journal , 43 : 434 – 438 .
  • Chang , C. W. and Laird , D. A. 2002 . Near-infrared reflectance spectroscopic analysis of soil C and N . Soil Science , 167 ( 2 ) : 110 – 116 .
  • Chen , F. , Kissel , D. E. , West , L. T. and Adkins , W. 2000 . Field-scale mapping of surface soil organic carbon using remotely sensed imagery . Soil Science Society of America Journal , 64 : 746 – 753 .
  • Chen , F. , Kissel , D. E. , West , L. T. , Rickman , D. , Luvall , J. C. and Adkins , W. 2005 . Mapping surface soil organic carbon for crop fields with remote sensing . Journal of Soil and Water Conservation , 60 ( 1 ) : 51 – 57 .
  • Fox , G. A. and Sabbagh , G. J. 2002 . Estimates of soil organic matter from red and near-infrared remotely sensed data using a soil line Euclidean distance technique . Soil Science Society of America Journal , 66 ( 6 ) : 1922 – 1928 .
  • Fystro , G. 2002 . The prediction of C and N content and their potential mineralization in heterogeneous soil samples using vis-NIR spectroscopy and comparative methods . Plant and Soil , 246 ( 2 ) : 139 – 149 .
  • Gomez , C. , Rossel , R. A. V. and McBratney , A. B. 2008 . Soil organic carbon prediction by hyperspectral remote sensing and field vis-NIR spectroscopy: An Australian case study . Geoderma , 146 : 403 – 411 .
  • Henderson , T. L. , Baumgardner , M. F. , Franzmeier , D. P. , Stott , D. E. and Coster , D. C. 1992 . High-dimensional reflectance analysis of soil organic matter . Soil Science Society of America Journal , 56 ( 3 ) : 865 – 872 .
  • Hummel , J. W. , Sudduth , K. A. and Hollinger , S. E. 2001 . Soil moisture and organic matter prediction of B-horizon soils using an NIR soil sensors . Computers and Electronics in Agriculture , 32 ( 2 ) : 149 – 165 .
  • Khalil , K. I. , Fahim , M. and Hawela , F. 1997 . Soil reflectance as affected by some soil parameters . Egyptian Journal of Soil Science , 37 ( 3 ) : 297 – 310 .
  • Ladoni , M. , Bahrami , H. A. , Alavipanah , S. K. and Noroyzi , A. A. 2010 . Estimating soil organic carbon from soil reflectance: A review . Precision Agriculture , 11 : 82 – 99 .
  • Nanni , M. R. and Demattê , J. A. M. 2006 . Spectral reflectance methodology in comparison to traditional soil analysis . Soil Science Society of America Journal , 70 : 393 – 407 .
  • Nelson , R. E. 1982 . “ Carbonate and gypsum ” . In Methods of soil analysis, part 2 , 2nd , Edited by: Page , A. L. 181 – 197 . Madison , Wisc : ASA and SSSA .
  • Nordt , L. C. , Wilding , L. P. , Hallmark , C. T. and Jacob , J. S. 1996 . “ Stable carbon isotope composition of pedogenic carbonates and their use in studying pedogenesis ” . In Mass spectrometry of soils , Edited by: Boutton , T. W. and Yamasaki , S. 133 – 154 . New York : Marcel Dekker .
  • Palacios-Orueta , A. , Pinzón , J. , Ustin , S. L. and Roberts , D. A. 1999 . Remote sensing of soils in the Santa Monica Mountains, part II: Hierarchical foreground and background analysis . Remote Sensing of Environment , 68 : 138 – 151 .
  • Pätzold , S. , Mertens , F. M. , Bornemann , L. , Koleczek , B. , Franke , J. , Feilhauer , H. and Welp , G. 2008 . Soil heterogeneity at the field scale: A challenge for precision crop protection . Precision Agriculture , 9 : 367 – 390 .
  • Ping , J. L. and Dobermann , A. 2006 . Variation in the precision of soil organic carbon maps due to different laboratory and spatial prediction methods . Soil Science , 171 : 374 – 387 .
  • Smith , J. and Doran , J. W. 1996 . “ Measurement and use of pH and electrical conductivity for soil quality analysis ” . In Methods for assessing soil quality , Edited by: Doran , J. W. and Jones , A. J. 169 – 185 . Madison , Wisc : SSSA .
  • Stamatiadis , S. , Christofides , C. , Tsadilas , C. , Samaras , V. , Schepers , J. and Francis , D. 2005 . Ground-sensor soil reflectance as related to soil properties and crop response in a cotton field . Precision Agriculture , 6 ( 4 ) : 399 – 411 .
  • Sudduth , K. A. and Hummel , J. W. 1993 . Portable near-infrared spectrophotometer for rapid soil analysis . Transactions of the American Society of Agricultural Engineers , 36 ( 1 ) : 185 – 193 .
  • Varvel , C. E. , Schlemmer , M. R. and Schepers , J. S. 1999 . Relationship between spectral data from an aerial image and soil organic matter and phosphorus levels . Precision Agriculture , 1 : 291 – 300 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.