Detecting long-term changes in point-source fossil CO2 emissions with tree ring archives
Item
Title (Dublin Core)
Detecting long-term changes in point-source fossil CO2 emissions with tree ring archives
Description (Dublin Core)
We examine the utility of tree ring <sup>14</sup>C archives for detecting long-term changes in fossil CO<sub>2</sub> emissions from a point source. Trees assimilate carbon from the atmosphere during photosynthesis, in the process faithfully recording the average atmospheric <sup>14</sup>C content in each new annual tree ring. Using <sup>14</sup>C as a proxy for fossil CO<sub>2</sub>, we examine interannual variability over six years of fossil CO<sub>2</sub> observations between 2004–2005 and 2011–2012 from two trees growing near the Kapuni Gas Treatment Plant in rural Taranaki, New Zealand. We quantify the amount of variability that can be attributed to transport and meteorology by simulating constant point-source fossil CO<sub>2</sub> emissions over the observation period with the atmospheric transport model WindTrax. We compare model simulation results to observations and calculate the amount of change in emissions that we can detect with new observations over annual or multi-year time periods, given both the measurement uncertainty of 1ppm and the modelled variation in transport. In particular, we ask, what is the minimum amount of change in emissions that we can detect using this method, given a reference period of six years? We find that changes of 42 % or more could be detected in a new sample from one year at the same observation location or 22 % in the case of four years of new samples. This threshold is reduced and the method becomes more practical the more the size of the signal increases. For point sources 10 times larger than the Kapuni plant (a more typical size for power plants worldwide), it would be possible to detect sustained emissions changes on the order of 10 %, given suitable meteorology and observations.
Creator (Dublin Core)
Keller, Elizabeth D.
Turnbull, Jocelyn C.
Norris, Margaret W.
Date (Dublin Core)
2018-09-19
Type (Dublin Core)
Text
Format (Dublin Core)
application/pdf
Identifier (Dublin Core)
10.5194/acp-16-5481-2016
https://acp.copernicus.org/articles/16/5481/2016/
Source (Dublin Core)
eISSN: 1680-7324
Language (Dublin Core)
eng



