Comparison of quantification methods to measure fire-derived (black/elemental) carbon in soils and sediments using reference materials from soil, water, sediment and the atmosphere
Author
Hammes, Karen; Schmidt, Michael W.I.; Smernik, Ronald J.; Currie, Lloyd A.; Ball, William P.; Nguyen, Thanh H.; Louchouarn, Patrick; Houel, Stephane; Gustafsson, Orjan; Elmquist, Marie; Cornelissen, Gerard; Skjemstad, Jan O.; Masiello, Caroline A.; Song, Jianzhong; Peng, Ping'an; Mitra, Siddhartha; Dunn, Joshua C.; Hatcher, Patrick G.; Hockaday, William C.; Smith, Dwight M.; Hartkopf-Froder, Cristoph; Bohmer, Axel; Luer, Burkhard; Huebert, Barry J.; Amelung, Wulf; Brodowski, Sonja; Huang, Lin; Zhang, Wendy; Gschwend, Philip M.; Flores-Cervantes, D. Xanat; Largeau, Claude; Rouzaud, Jean-Noel; Rumpel, Cornelia; Guggenberger, Georg; Kaiser, Klaus; Rodionov, Andrei; Gonzalez-Vila, Francisco J.; Gonzalez-Perez, Jose A.; de la Rosa, Jose M.; Manning, David A. C.; Lopez-Capel, Elisa; Ding, Luyi
Abstract
Black carbon (BC), the product of incomplete combustion of fossil fuels and biomass (called elemental carbon (EC) in atmospheric sciences), was quantified in 12 different materials by 17 laboratories from different disciplines, using seven different methods. The materials were divided into three classes: (1) potentially interfering materials, (2) laboratory-produced BC-rich materials, and (3) BC-containing environmental matrices (from soil, water, sediment, and atmosphere). This is the first comprehensive intercomparison of this type (multimethod, multilab, and multisample), focusing mainly on methods used for soil and sediment BC studies. Results for the potentially interfering materials (which by definition contained no fire-derived organic carbon) highlighted situations where individual methods may overestimate BC concentrations. Results for the BC-rich materials (one soot and two chars) showed that some of the methods identified most of the carbon in all three materials as BC, whereas other methods identified only soot carbon as BC. The different methods also gave widely different BC contents for the environmental matrices. However, these variations could be understood in the light of the findings for the other two groups of materials, i.e., that some methods incorrectly identify non-BC carbon as BC, and that the detection efficiency of each technique varies across the BC continuum. We found that atmospheric BC quantification methods are not ideal for soil and sediment studies as in their methodology these incorporate the definition of BC as light-absorbing material irrespective of its origin, leading to biases when applied to terrestrial and sedimentary materials. This study shows that any attempt to merge data generated via different methods must consider the different, operationally defined analytical windows of the BC continuum detected by each technique, as well as the limitations and potential biases of each technique. A major goal of this ring trial was to provide a basis on which to choose between the different BC quantification methods in soil and sediment studies. In this paper we summarize the advantages and disadvantages of each method. In future studies, we strongly recommend the evaluation of all methods analyzing for BC in soils and sediments against the set of BC reference materials analyzed here.
Description
Copyright 2007 by the American Geophysical Union.
Date
2007
Citation:
APA:
Hammes, Karen, & Schmidt, Michael W.I., & Smernik, Ronald J., & Currie, Lloyd A., & Ball, William P., & Nguyen, Thanh H., & Louchouarn, Patrick, & Houel, Stephane, & Gustafsson, Orjan, & Elmquist, Marie, & Cornelissen, Gerard, & Skjemstad, Jan O., & Masiello, Caroline A., & Song, Jianzhong, & Peng, Ping'an, & Mitra, Siddhartha, & Dunn, Joshua C., & Hatcher, Patrick G., & Hockaday, William C., & Smith, Dwight M., & Hartkopf-Froder, Cristoph, & Bohmer, Axel, & Luer, Burkhard, & Huebert, Barry J., & Amelung, Wulf, & Brodowski, Sonja, & Huang, Lin, & Zhang, Wendy, & Gschwend, Philip M., & Flores-Cervantes, D. Xanat, & Largeau, Claude, & Rouzaud, Jean-Noel, & Rumpel, Cornelia, & Guggenberger, Georg, & Kaiser, Klaus, & Rodionov, Andrei, & Gonzalez-Vila, Francisco J., & Gonzalez-Perez, Jose A., & de la Rosa, Jose M., & Manning, David A. C., & Lopez-Capel, Elisa, & Ding, Luyi. (January 2007).
Comparison of quantification methods to measure fire-derived (black/elemental) carbon in soils and sediments using reference materials from soil, water, sediment and the atmosphere.
Global Biogeochemical Cycles,
21(3),
-
. Retrieved from
http://hdl.handle.net/10342/4357
MLA:
Hammes, Karen, and Schmidt, Michael W.I., and Smernik, Ronald J., and Currie, Lloyd A., and Ball, William P., and Nguyen, Thanh H., and Louchouarn, Patrick, and Houel, Stephane, and Gustafsson, Orjan, and Elmquist, Marie, and Cornelissen, Gerard, and Skjemstad, Jan O., and Masiello, Caroline A., and Song, Jianzhong, and Peng, Ping'an, and Mitra, Siddhartha, and Dunn, Joshua C., and Hatcher, Patrick G., and Hockaday, William C., and Smith, Dwight M., and Hartkopf-Froder, Cristoph, and Bohmer, Axel, and Luer, Burkhard, and Huebert, Barry J., and Amelung, Wulf, and Brodowski, Sonja, and Huang, Lin, and Zhang, Wendy, and Gschwend, Philip M., and Flores-Cervantes, D. Xanat, and Largeau, Claude, and Rouzaud, Jean-Noel, and Rumpel, Cornelia, and Guggenberger, Georg, and Kaiser, Klaus, and Rodionov, Andrei, and Gonzalez-Vila, Francisco J., and Gonzalez-Perez, Jose A., and de la Rosa, Jose M., and Manning, David A. C., and Lopez-Capel, Elisa, and Ding, Luyi.
"Comparison of quantification methods to measure fire-derived (black/elemental) carbon in soils and sediments using reference materials from soil, water, sediment and the atmosphere". Global Biogeochemical Cycles.
21:3. (GB3016),
January 2007.
September 21, 2023.
http://hdl.handle.net/10342/4357.
Chicago:
Hammes, Karen and Schmidt, Michael W.I. and Smernik, Ronald J. and Currie, Lloyd A. and Ball, William P. and Nguyen, Thanh H. and Louchouarn, Patrick and Houel, Stephane and Gustafsson, Orjan and Elmquist, Marie and Cornelissen, Gerard and Skjemstad, Jan O. and Masiello, Caroline A. and Song, Jianzhong and Peng, Ping'an and Mitra, Siddhartha and Dunn, Joshua C. and Hatcher, Patrick G. and Hockaday, William C. and Smith, Dwight M. and Hartkopf-Froder, Cristoph and Bohmer, Axel and Luer, Burkhard and Huebert, Barry J. and Amelung, Wulf and Brodowski, Sonja and Huang, Lin and Zhang, Wendy and Gschwend, Philip M. and Flores-Cervantes, D. Xanat and Largeau, Claude and Rouzaud, Jean-Noel and Rumpel, Cornelia and Guggenberger, Georg and Kaiser, Klaus and Rodionov, Andrei and Gonzalez-Vila, Francisco J. and Gonzalez-Perez, Jose A. and de la Rosa, Jose M. and Manning, David A. C. and Lopez-Capel, Elisa and Ding, Luyi,
"Comparison of quantification methods to measure fire-derived (black/elemental) carbon in soils and sediments using reference materials from soil, water, sediment and the atmosphere," Global Biogeochemical Cycles 21, no.
3 (January 2007),
http://hdl.handle.net/10342/4357 (accessed
September 21, 2023).
AMA:
Hammes, Karen, Schmidt, Michael W.I., Smernik, Ronald J., Currie, Lloyd A., Ball, William P., Nguyen, Thanh H., Louchouarn, Patrick, Houel, Stephane, Gustafsson, Orjan, Elmquist, Marie, Cornelissen, Gerard, Skjemstad, Jan O., Masiello, Caroline A., Song, Jianzhong, Peng, Ping'an, Mitra, Siddhartha, Dunn, Joshua C., Hatcher, Patrick G., Hockaday, William C., Smith, Dwight M., Hartkopf-Froder, Cristoph, Bohmer, Axel, Luer, Burkhard, Huebert, Barry J., Amelung, Wulf, Brodowski, Sonja, Huang, Lin, Zhang, Wendy, Gschwend, Philip M., Flores-Cervantes, D. Xanat, Largeau, Claude, Rouzaud, Jean-Noel, Rumpel, Cornelia, Guggenberger, Georg, Kaiser, Klaus, Rodionov, Andrei, Gonzalez-Vila, Francisco J., Gonzalez-Perez, Jose A., de la Rosa, Jose M., Manning, David A. C., Lopez-Capel, Elisa, Ding, Luyi.
Comparison of quantification methods to measure fire-derived (black/elemental) carbon in soils and sediments using reference materials from soil, water, sediment and the atmosphere. Global Biogeochemical Cycles.
January 2007;
21(3):
GB3016.
http://hdl.handle.net/10342/4357. Accessed
September 21, 2023.
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