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      <item>
        <name>
          <family>Cooper</family>
          <given>Sam</given>
        </name>
        <id>S.Cooper2@bath.ac.uk</id>
        <orcid>0000-0002-3229-3026</orcid>
        <affiliation>University of Bath</affiliation>
        <contact>TRUE</contact>
      </item>
    </creators>
    <contributors>
      <item>
        <type>ProjectLeader</type>
        <name>
          <family>McManus</family>
          <given>Marcelle</given>
        </name>
        <id>M.McManus@bath.ac.uk</id>
        <orcid>0000-0002-0685-8695</orcid>
        <affiliation>University of Bath</affiliation>
      </item>
      <item>
        <type>Researcher</type>
        <name>
          <family>Hattam</family>
          <given>Laura</given>
        </name>
        <id>L.Hattam@bath.ac.uk</id>
        <orcid>0000-0002-1272-2970</orcid>
        <affiliation>University of Bath</affiliation>
      </item>
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        <name>
          <family>Hawkins</family>
          <given>Will</given>
        </name>
        <id>wh604@bath.ac.uk</id>
        <orcid>0000-0003-4918-7665</orcid>
        <affiliation>University of Bath</affiliation>
      </item>
    </contributors>
    <title>Temporal Climate Impacts</title>
    <subjects>
      <item>CW0010</item>
    </subjects>
    <divisions>
      <item>dept_civ_eng</item>
      <item>dept_mech_eng</item>
    </divisions>
    <keywords>Climate change, greenhouse gas, LCA, dynamic LCA</keywords>
    <abstract>Spreadsheet to facilitate the calculation of time-dependent Absolute Global Warming Potential and Absolute Global Temperature Potential due to a temporally resolved (year by year) emissions inventory (CO2, CH4, other well-mixed forcers, and examples of short-life forcers). Examples and instructions are included within the spreadsheet. The spreadsheet is intended to be a tool for LCA practitioners to quickly assess whether temporal aspects of GHG results are relevant and should be reported upon.</abstract>
    <date>2020-10-02</date>
    <publisher>University of Bath</publisher>
    <full_text_status>public</full_text_status>
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      <item>
        <funder_name>Engineering and Physical Sciences Research Council</funder_name>
        <funder_id>https://doi.org/10.13039/501100000266</funder_id>
        <grant_id>EP/S000771/1</grant_id>
        <project_name>Supergen Bioenergy Hub</project_name>
      </item>
    </funding>
    <research_centres>
      <item>cent_sus_tech</item>
    </research_centres>
    <collection_method>Further explanation provided in Cooper, S.J.G., R. Green, L. Hattam, M. Roeder, A. Welfle, M. McManus, &quot;Exploring temporal aspects of climate-change effects due to bioenergy&quot; Biomass and Bioenergy (in press).

Equations, data and parameters referenced in spreadsheet. In particular, these are consistent with IPCC AR5 (Physical science basis):
Myhre, G., D. Shindell, F.-M. Bréon, W. Collins, J. Fuglestvedt, J. Huang, D. Koch, J.-F. Lamarque, D. Lee, B. Mendoza, T. Nakajima, A. Robock, G. Stephens, T. Takemura and H. Zhang, 2013: Anthropogenic and Natural Radiative Forcing. In: Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Stocker, T.F., D. Qin, G.-K. Plattner, M. Tignor, S.K. Allen, J. Boschung, A. Nauels, Y. Xia, V. Bex and P.M. Midgley (eds.)]. Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA.</collection_method>
    <techinfo>The spreadsheet is best viewed in MS Excel.</techinfo>
    <language>en</language>
    <version>2</version>
    <doi>10.15125/BATH-00923</doi>
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        <link>https://doi.org/10.1016/j.biombioe.2020.105778</link>
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