Articles | Volume 14, issue 18
https://doi.org/10.5194/bg-14-4071-2017
https://doi.org/10.5194/bg-14-4071-2017
Research article
 | 
19 Sep 2017
Research article |  | 19 Sep 2017

A zero-power warming chamber for investigating plant responses to rising temperature

Keith F. Lewin, Andrew M. McMahon, Kim S. Ely, Shawn P. Serbin, and Alistair Rogers

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ACIA: Arctic Climatic Impact Assessment – Scientific Report, Cambridge University Press, Cambrige, UK, 2005.
Amthor, J. S., Hanson, P. J., Norby, R. J., and Wullschleger, S. D.: A comment on “Appropriate experimental ecosystem warming methods by ecosystem, objective, and practicality” by Aronson and McNulty, Agr. Forest Meteorol., 150, 497–498, https://doi.org/10.1016/j.agrformet.2009.11.020, 2010.
Aronson, E. L. and McNulty, S. G.: Appropriate experimental ecosystem warming methods by ecosystem, objective, and practicality, Agr. Forest Meteorol., 149, 1791–1799, https://doi.org/10.1016/j.agrformet.2009.06.007, 2009.
Barton, C. V. M., Ellsworth, D. S., Medlyn, B. E., Duursma, R. A., Tissue, D. T., Adams, M. A., Eamus, D., Conroy, J. P., McMurtrie, R. E., Parsby, J., and Linder, S.: Whole-tree chambers for elevated atmospheric CO2 experimentation and tree scale flux measurements in south-eastern Australia: The Hawkesbury Forest Experiment, Agr. Forest Meteorol., 150, 941–951, https://doi.org/10.1016/j.agrformet.2010.03.001, 2010.
Bockheim, J. G., Everett, L. R., Hinkel, K. M., Nelson, F. E., and Brown, J.: Soil organic carbon storage and distribution in Arctic Tundra, Barrow, Alaska, Soil Sci. Soc. Am. J., 63, 934–940, 1999.
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Short summary
Experiments that manipulate the temperature of plants and ecosystems are used to improve understanding of how they will respond to climate change. In logistically challenging locations passive warming using solar energy is the the only viable option for warming experiments. Unfortunately current passive warming approaches can only raise air temperature by about 1.5 °C. We have developed a novel approach that doubles the warming possible using solar energy and requires no power.
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