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* David Shonnard, Emily Tipaldo, Vicki Thompson, Joshua Pearce, Gerard Caneba, Robert Handler. Systems Analysis for PET and Olefin Polymers in a Circular Economy. 26th CIRP Life Cycle Engineering Conference. ''Procedia CIRP'' 80, (2019), 602-606. https://doi.org/10.1016/j.procir.2019.01.072 [https://www.academia.edu/39017985/Systems_Analysis_for_PET_and_Olefin_Polymers_in_a_Circular_Economy open access]
* Joshua M. Pearce [https://doi.org/10.1016/j.mattod.2018.02.002 Expanding the Consumer Bill of Rights for material ingredients]. ''Materials Today'' 21(3), pp. 197-198 (2018). DOI: https://doi.org/10.1016/j.mattod.2018.02.002 [https://www.academia.edu/36484688/Expanding_the_Consumer_Bill_of_Rights_for_Material_Ingredients Open access preprint]
* Shan Zhong, Pratiksha Rakhe and Joshua M. Pearce. [http://www.mdpi.com/2313-4321/2/2/10/htm Energy Payback Time of a Solar Photovoltaic Powered Waste Plastic Recyclebot System]. ''Recycling'' 2017, 2(2), 10; doi: 10.3390/recycling2020010 [https://www.academia.edu/33479368/Energy_Payback_Time_of_a_Solar_Photovoltaic_Powered_Waste_Plastic_Recyclebot_System open access]
* M.A. Kreiger, M.L. Mulder, A.G. Glover, J. M. Pearce, [http://dx.doi.org/10.1016/j.jclepro.2014.02.009 Life Cycle Analysis of Distributed Recycling of Post-consumer High Density Polyethylene for 3-D Printing Filament], ''Journal of Cleaner Production'', 70, pp. 90–96 (2014). [https://www.academia.edu/6188555/Life_cycle_analysis_of_distributed_recycling_of_post-consumer_high_density_polyethylene_for_3-D_printing_filament open access]
* M.A. Kreiger, M.L. Mulder, A.G. Glover, J. M. Pearce, [http://dx.doi.org/10.1016/j.jclepro.2014.02.009 Life Cycle Analysis of Distributed Recycling of Post-consumer High Density Polyethylene for 3-D Printing Filament], ''Journal of Cleaner Production'', 70, pp. 90–96 (2014). [https://www.academia.edu/6188555/Life_cycle_analysis_of_distributed_recycling_of_post-consumer_high_density_polyethylene_for_3-D_printing_filament open access]
* Megan Kreiger and Joshua M. Pearce (2013). [http://pubs.acs.org/doi/abs/10.1021/sc400093k Environmental Life Cycle Analysis of Distributed 3-D Printing and Conventional Manufacturing of Polymer Products], ''ACS Sustainable Chemistry & Engineering'', ''Engineering'', '''1''' (12), (2013) pp. 1511–1519DOI: 10.1021/sc400093k [http://www.academia.edu/4685670/Environmental_Life_Cycle_Analysis_of_Distributed_3-D_Printing_and_Conventional_Manufacturing_of_Polymer_Products Open access]
* Megan Kreiger and Joshua M. Pearce (2013). [http://pubs.acs.org/doi/abs/10.1021/sc400093k Environmental Life Cycle Analysis of Distributed 3-D Printing and Conventional Manufacturing of Polymer Products], ''ACS Sustainable Chemistry & Engineering'', ''Engineering'', '''1''' (12), (2013) pp. 1511–1519DOI: 10.1021/sc400093k [http://www.academia.edu/4685670/Environmental_Life_Cycle_Analysis_of_Distributed_3-D_Printing_and_Conventional_Manufacturing_of_Polymer_Products Open access]
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* J.M. Pearce, “[https://cctc.mcmaster.ca/index.php/cctc/2009/paper/view/48 Optimizing Greenhouse Gas Mitigation Strategies to Suppress Energy Cannibalism]” ''2nd Climate Change Technology Conference Proceedings'', p. 48, 2009. [http://www.mse.mtu.edu/%7Epearce/papers/2009%20Canada%20Climate%20Conf.pdf pdf]
* J.M. Pearce, “[https://cctc.mcmaster.ca/index.php/cctc/2009/paper/view/48 Optimizing Greenhouse Gas Mitigation Strategies to Suppress Energy Cannibalism]” ''2nd Climate Change Technology Conference Proceedings'', p. 48, 2009. [http://www.mse.mtu.edu/%7Epearce/papers/2009%20Canada%20Climate%20Conf.pdf pdf]
* J.M. Pearce, “[http://www.climate2008.net/?a1=pap&cat=1&e=61 Limitations of Greenhouse Gas Mitigation Technologies Set by Rapid Growth and Energy Cannibalism]” ''Climate 2008/Klima 2008''.
* J.M. Pearce, “[https://dx.doi.org/10.17605/OSF.IO/WJST5 Limitations of Greenhouse Gas Mitigation Technologies Set by Rapid Growth and Energy Cannibalism]” ''Climate 2008/Klima 2008''.
* Joshua M. Pearce, "[http://inderscience.metapress.com/link.asp?id=82677146816231u1 Thermodynamic Limitations to Nuclear Energy Deployment as a Greenhouse Gas Mitigation Technology]", ''International Journal of Nuclear Governance, Economy and Ecology'' 2(1), pp. 113-130, 2008. [https://www.academia.edu/1490890/Thermodynamic_limitations_to_nuclear_energy_deployment_as_a_greenhouse_gas_mitigation_technology open access]
* Joshua M. Pearce, "[http://inderscience.metapress.com/link.asp?id=82677146816231u1 Thermodynamic Limitations to Nuclear Energy Deployment as a Greenhouse Gas Mitigation Technology]", ''International Journal of Nuclear Governance, Economy and Ecology'' 2(1), pp. 113-130, 2008. [https://www.academia.edu/1490890/Thermodynamic_limitations_to_nuclear_energy_deployment_as_a_greenhouse_gas_mitigation_technology open access]
* Joshua M. Pearce, "Life Cycle Analysis" in S. G. Philander (Editor), [http://www.sagepub.com/booksProdDesc.nav?prodId=Book232005&currTree=Subjects&level1=U00 Encyclopedia of Global Warming and Climate Change], Vol. 2, pp. 601-602, SAGE Publications, Inc, 2008.
* Joshua M. Pearce, "Life Cycle Analysis" in S. G. Philander (Editor), [http://www.sagepub.com/booksProdDesc.nav?prodId=Book232005&currTree=Subjects&level1=U00 Encyclopedia of Global Warming and Climate Change], Vol. 2, pp. 601-602, SAGE Publications, Inc, 2008.

Revision as of 06:13, 5 May 2019


Green Energy.jpg Joshua M. Pearce, “On-site Renewable Energy Generation”, in Robbins, Paul, Mulvaney, Dustin, and, Golson, J. Geoffrey (Editors), Green Energy: An A-to-Z Guide. 2010. SAGE Publications. ISBN: 9781412971850

Joshua M. Pearce, “Energy Payback”, in Robbins, Paul, Mulvaney, Dustin, and Golson, J. Geoffrey (Editors), Green Energy: An A-to-Z Guide. 2010. SAGE Publications. ISBN: 9781412971850

 

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