{"id":56899,"key":"Pearce_publications_in_industrial_symbiosis","title":"Pearce publications in industrial symbiosis","latest":{"id":1248229,"timestamp":"2026-05-20T09:28:48Z"},"content_model":"wikitext","license":{"url":"https://www.appropedia.org/Appropedia:Copyrights","title":"CC-BY-SA-4.0"},"source":"[[Image:Graphabsblessing.png|thumb]]\n\n{{FAST notice}}\n\n{{Pearce publications notice}}\n\n* Maryam Mottaghi, Apoorv Kulkarni, Joshua M. Pearce, Effect of pyrolysis temperature on the performance of 3D-printed silicon–carbon anodes derived from recycled photovoltaic silicon, ''Next Materials'', Volume 12, 2026, 102281, ISSN 2949-8228, https://doi.org/10.1016/j.nxmate.2026.102281. (https://www.sciencedirect.com/science/article/pii/S2949822826006982) [https://www.academia.edu/167421220/Effect_of_pyrolysis_temperature_on_the_performance_of_3D_printed_silicon_carbon_anodes_derived_from_recycled_photovoltaic_silicon OA Academia.edu], [https://papers.ssrn.com/sol3/papers.cfm?abstract_id=5812933 preprint]\n* Williams, B.L.M., Croft, H., Hunt, J., Viloria, J., Sherman, N., Oliver, J., Green, B., Turchin, A., Martínez, J.B.G., Pearce, J.M., Denkenberger, D., 2025. Wood gasification in catastrophes: Electricity production from light duty vehicles. Energy Engineering 2025, 122(4), 1265-1285. https://doi.org/10.32604/ee.2025.063276 [https://www.academia.edu/128392894/Wood_Gasification_in_Catastrophes_Electricity_Production_from_Light_Duty_Vehicles OA Academia], [https://eartharxiv.org/repository/view/8449/ Earth Aexiv preprint]\n* Md Motakabbir Rahman, Wei Zhang, Ying Zheng, Joshua M. Pearce, Open-source portable solar power supply for plasma generators, ''HardwareX'', 2025, e00641, https://doi.org/10.1016/j.ohx.2025.e00641. [https://www.academia.edu/128440564/Open_source_portable_solar_power_supply_for_plasma_generators Academia.edu] [https://papers.ssrn.com/sol3/papers.cfm?abstract_id=4855907 preprint]\n* Mottaghi, M., Kulkarni, A. and Pearce, J. Recycling Silicon Photovoltaic Cells into Silicon Anodes for Li-ion Batteries Using 3D Printing. ''RSC Sustainability'' 2025,3, 1859-1869 .https://doi.org/10.1039/D4SU00808A [https://www.academia.edu/127996044/Recycling_silicon_photovoltaic_cells_into_silicon_anodes_for_Li_ion_batteries_using_3D_printing OA Academia.edu]\n* Alessia Romani, Daniel Kulas, Joseph Curro, David Shonnard, Joshua M. Pearce, Recycled Filtered Contaminants from Liquid-Fed Pyrolysis as Novel Building Composite Material, ''Journal of Building Engineering'', 102, 2025, 112025, https://doi.org/10.1016/j.jobe.2025.112025. [https://www.academia.edu/127602821/Recycled_filtered_contaminants_from_liquid_fed_pyrolysis_as_novel_building_composite_material Academia OA]\n* Petsiuk, A., Bloch, B., Debora, M. and Pearce, J.M. (2024), \"Tool change reduction for multicolor fused filament fabrication through interlayer tool clustering implemented in PrusaSlicer\", ''Rapid Prototyping Journal'', 30(8), pp. 1592-1609. https://doi.org/10.1108/RPJ-01-2024-0050 [https://www.academia.edu/122437077/Tool_change_reduction_for_multi_color_fused_filament_fabrication_through_interlayer_tool_clustering_implemented_in_PrusaSlicer Academia open access] [https://papers.ssrn.com/sol3/papers.cfm?abstract_id=4655383 preprint]\n* Morgan C. Woods, Cameron K. Brooks, Joshua M. Pearce, Open source cold and hot scientific sheet press for investigating polymer-based material properties,''HardwareX'', 2024, e00566, https://doi.org/10.1016/j.ohx.2024.e00566. (https://www.sciencedirect.com/science/article/pii/S2468067224000609)[https://www.academia.edu/123175603/Open_Source_Cold_and_Hot_Scientific_Sheet_Press_for_Investigating_Polymer_Based_Material_Properties Academia.edu], [https://papers.ssrn.com/sol3/papers.cfm?abstract_id=4789786 SSRN preprint]\n* Laura G. Schaerer, Ruochen Wu, Lindsay I. Putman, Joshua M. Pearce, Ting Lu, David R. Shonnard, Rebecca G. Ong, Stephen M. Techtmann, Killing two birds with one stone: chemical and biological upcycling of polyethylene terephthalate plastics into food,''Trends in Biotechnology'' 41(2), P184-196, 2023, https://doi.org/10.1016/j.tibtech.2022.06.012. [https://www.academia.edu/86083332/Killing_Two_Birds_with_One_Stone_Chemical_and_Biological_Upcycling_of_Polyethylene_Terephthalate_Plastics_into_Food Academia OA]\n* Alessia Romani, Marinella Levi, Joshua M. Pearce, Recycled polycarbonate and polycarbonate/acrylonitrile butadiene styrene feedstocks for circular economy product applications with fused granular fabrication-based additive manufacturing, ''Sustainable Materials and Technologies'', 2023, Volume 38, December 2023, e0073038, e00730, ISSN 2214-9937, https://doi.org/10.1016/j.susmat.2023.e00730. [https://www.academia.edu/107387183/Recycled_polycarbonate_and_polycarbonaRecycled_polycarbonate_and_polycarbonate_acrylonitrile_butadiene_styrene_feedstocks_for_circular_economy_product_applications_with_fused_granular_fabrication_based_additive_manufacturing Academia OA] [https://papers.ssrn.com/sol3/papers.cfm?abstract_id=4508039 preprint]\n* Ugwoke, B.; Tieman, R.; Mill, A.; Denkenberger, D.; Pearce, J.M. Quantifying Alternative Food Potential of Agricultural Residue in Rural Communities of Sub-Saharan Africa. ''Biomass'' 2023, 3, 138-162. https://doi.org/10.3390/biomass3020010 , [https://www.academia.edu/101558061/Quantifying_Alternative_Food_Potential_of_Agricultural_Residue_in_Rural_Communities_of_Sub_Saharan_AfricaAcademia OA]\n* Asgari, N.; McDonald, M.T.; Pearce, J.M. Energy Modeling and Techno-Economic Feasibility Analysis of Greenhouses for Tomato Cultivation Utilizing the Waste Heat of Cryptocurrency Miners. ''Energies'' 2023, 16, 1331. https://doi.org/10.3390/en16031331 [https://www.academia.edu/95786689/Energy_Modeling_and_Techno_Economic_Feasibility_Analysis_of_Greenhouses_for_Tomato_Cultivation_Utilizing_the_Waste_Heat_of_Cryptocurrency_Miners academia OA]\n* Dongzhao Jin, Theresa K. Meyer, Siyu Chen, Kwadwo Ampadu Boateng, Joshua M. Pearce, Zhanping You, Evaluation of lab performance of stamp sand and acrylonitrile styrene acrylate waste composites without asphalt as road surface materials, ''Construction and Building Materials'', 338, 2022,127569, https://doi.org/10.1016/j.conbuildmat.2022.127569.[https://www.academia.edu/78120132/Evaluation_of_Lab_Performance_of_Stamp_Sand_and_Acrylonitrile_Styrene_Acrylate_Waste_Composites_without_Asphalt_as_Road_Surface_Materials Academia OA]\n* Throup, J., Martínez, J.B.G., Bals, B., Cates, J., Pearce, J.M. and Denkenberger, D.C., Rapid repurposing of pulp and paper mills, biorefineries, and breweries for lignocellulosic sugar production in global food catastrophes. ''Food and Bioproducts Processing'' 131, 2022, 22-39. https://doi.org/10.1016/j.fbp.2021.10.012 [https://www.academia.edu/61887935/Rapid_repurposing_of_pulp_and_paper_mills_biorefineries_and_breweries_for_lignocellulosic_sugar_production_in_global_food_catastrophes Academia OA]\n* Utkarsh S. Chaudhari, Yingqian Lin, Vicki S. Thompson, Robert M. Handler, Joshua M. Pearce, Gerard Caneba, Prapti Muhuri, David Watkins, and David R. Shonnard. Systems Analysis Approach to Polyethylene Terephthalate and Olefin Plastics Supply Chains in the Circular Economy: A Review of Data Sets and Models. ''ACS Sustainable Chemistry & Engineering'' 2021. in press. https://doi.org/10.1021/acssuschemeng.0c08622\n* William Lytle, Theresa K. Meyer, Nagendra G. Tanikella, Laurie Burnham, Julie Engel, Chelsea Schelly, Joshua M. Pearce.Conceptual Design and Rationale for a New Agrivoltaics Concept: Pasture-Raised Rabbits and Solar Farming. ''Journal of Cleaner Production'', 282 (2021) 124476 https://doi.org/10.1016/j.jclepro.2020.124476 [https://www.academia.edu/44262098/Conceptual_Design_and_Rationale_for_a_New_Agrivoltaics_Concept_Pastured_Raised_Rabbits_and_Solar_Farming open access]\n* Adam M. Pringle, Mark Rudnicki, and Joshua Pearce (2017) Wood Furniture Waste-Based Recycled 3-D Printing Filament. ''Forest Products Journal'' 2018, Vol. 68, No. 1, pp. 86-95. https://doi.org/10.13073/FPJ-D-17-00042 [https://www.academia.edu/37662455/Wood_Furniture_Waste-Based_Recycled_3-D_Printing_Filament open access]\n* M. A. Kreiger, D. R. Shonnard, J.M. Pearce, \"[https://dx.doi.org/10.1016/j.resconrec.2012.10.002 Life Cycle Analysis of Silane Recycling in Amorphous Silicon-Based Solar Photovoltaic Manufacturing]\" ''Resources, Conservation & Recycling'', 70, pp.44-49 (2013).&nbsp; [https://www.academia.edu/2310926/Life_Cycle_Analysis_of_Silane_Recycling_in_Amorphous_Silicon-Based_Solar_Photovoltaic_Manufacturing Open access]\n* Joshua M. Pearce, \"[https://web.archive.org/web/20120708084153/http://www.photovoltaicsinternational.com/technical_papers/industrial_symbiosis_in_photovoltaic_manufacturing Industrial Symbiosis in Photovoltaic Manufacturing]\", ''Photovoltaics International'' 13, pp. 26-31&nbsp; (2011).\n* R. Andrews and J.M. Pearce, \"[https://dx.doi.org/10.1016/j.jclepro.2011.04.016 Environmental and Economic Assessment of a Greenhouse Waste Heat Exchange]\", ''Journal of Cleaner Production'' 19, pp. 1446-1454 (2011). [https://www.academia.edu/1484967/Environmental_and_Economic_Assessment_of_a_Greenhouse_Waste_Heat_Exchange open access]\n* W. Doyle and J. M. Pearce, \"Utilization of Virtual Globes for Open Source Industrial Symbiosis\", ''Open Environmental Sciences'', 3, pp. 88-96, 2009. [https://www.academia.edu/1490894/Utilization_of_Virtual_Globes_for_Open_Source_Industrial_Symbiosis open access]\n* Amir H. Nosrat, Jack Jeswiet, and Joshua M. Pearce, \"[https://dx.doi.org/10.1109/TIC-STH.2009.5444358 Cleaner Production via Industrial Symbiosis in Glass and Large-Scale Solar Photovoltaic Manufacturing]\" ''Proceedings 2009 IEEE Toronto International Conference – Science and Technology for Humanity (TIC-STH)'', pp. 967-970. [https://www.academia.edu/1505293/Cleaner_production_via_industrial_symbiosis_in_glass_and_largescale_solar_photovoltaic_manufacturing open access]\n* Joshua M. Pearce, \"[https://dx.doi.org/10.1016/j.renene.2007.07.002 Industrial Symbiosis for Very Large Scale Photovoltaic Manufacturing]\", ''Renewable Energy ''33, pp. 1101-1108, 2008. [https://www.academia.edu/1485066/Industrial_Symbiosis_for_Very_Large_Scale_Photovoltaic_Manufacturing open access]\n* Joshua M. Pearce, Sara J. Johnson, and Gabriel B. Grant, \"[https://dx.doi.org/10.1016/j.resconrec.2006.10.010 3D-Mapping Optimization of Embodied Energy of Transportation]\", ''Resources, Conservation and Recycling'', 51 pp. 435–453, 2007. [https://www.academia.edu/1484569/3D-mapping_optimization_of_embodied_energy_of_transportation open access]\n\n{{Page data\n| license = CC-BY-SA-3.0\n| part-of = Pearce publications\n| keywords = Industrial ecology, Energy, Energy efficiency, Environmental philosophy, Industry, Sustainability, Waste management, Industrial processes\n| sdg = SDG09 Industry innovation and infrastructure\n| organizations = Western University, FAST\n| description = Explore Joshua M. Pearce's significant contributions to industrial symbiosis through diverse research publications, focusing on sustainability and innovative solutions.\n}}\n\n[[Category:Energy]]\n[[Category:Energy efficiency]]\n[[Category:Environmental philosophy]]\n[[Category:Industry]]\n[[Category:Sustainability]]\n[[Category:Waste management]]\n[[Category:Industrial processes]]"}