Metrics of Green Chemistry and Sustainability

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ACS Sustainable Chemistry & Engineering Perspective production of higher alcohols from ethanol. Catal. Today 2015, 239, 56−79. (118) Cespi, D.; Passarini, F.; Vassura, I.; Cavani, F. Butadiene from biomass, a life cycle perspective to address sustainability in the chemical industry. Green Chem. 2016, 18, 1625−1638. (119) Sheldon, R. A.; Sanders, J. P. M.; Marinas, A. Sustainability Metrics of Chemicals from Biomass. Catal. Today 2015, 239, 1−2. (120) Sheldon, R. A.; Sanders, J. P. M. Toward concise metrics for the production of chemicals from renewable biomass. Catal. Today 2015, 239, 3−6. (121) Juodeikiene, G.; Vidmantiene, D.; Basinskiene, L.; Cernauskas, D.; Bartkiene, E.; Cizeikiene, D. Green metrics for sustainability of bio- based lactic acid from starchy biomass vs chemical synthesis. Catal. Today 2015, 239, 11−16. (122)Guerrero-Peŕez,M.O.;Bañares,M.A.Metricsofacrylonitrile: from biomass vs. petrochemical route. Catal. Today 2015, 239, 25−30. (123) Uyttebroek, M.; van Hecke, W.; Vanbroekhoven, K. Sustainabiliy metrics of 1-butanol. Catal. Today 2015, 239, 7−10. (124) Marinas, A.; Bruijnincx, P.; Ftouni, J.; Urbano, F. J.; Pinel, C. Sustainability metrics for a fossil- and renewable-based route for 1,2- propanediol: a comparison. Catal. Today 2015, 239, 31−37. (125) Pinazo, J. M.; Domine, M. E.; Parvulescu, V.; Petru, F. Sustainability metrics for succinic acid production: a comparison between biomass-based and petrochemical routes. Catal. Today 2015, 239, 17−24. (126) Morais, A. R. C.; Dworakowska, S.; Reis, A.; Gouveia, L.; Matos, C. T.; Bogdal, D.; Bogel-Lukasik, R. Chemical and biological- based isoprene production: Green Metrics. Catal. Today 2015, 239, 38−43. (127) Sanders, J. P. M.; Sheldon, R. A. Comparison of the sustainability metrics of the petrochemical and biomass-based routes to methionine. Catal. Today 2015, 239, 44−49. (128) Morales, M.; Ataman, M.; Badr, S.; Linster, S.; Kourlimpinis, J.; Papadokonstantakis, S.; Hatzimanikatis, V.; Hungerbühler, K. Sustainability assessment of succinic acid production technologies from biomass using metabolic engineering. Energy Environ. Sci. 2016, 9, 2794−2805. (129)Csef́alvay,E.;Akien,G.R.;Qi,L.;Horvat́h,I.T.Definitionand application of ethanol equivalent: Sustainability performance metrics for biomass conversion to carbon-based fuels and chemicals. Catal. Today 2015, 239, 50−55. (130) Horvat́h, I. T.; Csef́alvay, E.; Mika, L. T.; Debreczeni, M. Sustainability Metrics for Biomass-Based Carbon Chemicals. ACS Sustainable Chem. Eng. 2017, 5, 2734−2740. (131) Sun, Z.; Cao, H.; Xiao, Y.; Sietsma, J.; Jin, W.; Agterhuis, H.; Yang, Y. Toward Sustainability of Critical Metals from Electronic Waste: The Hydrochemistry Process. ACS Sustainable Chem. Eng. 2017, 5, 21−40. (132) Indicators for a Circular Economy, EASAC Policy Report 30, November 2016. www.easac.eu (accessed November 2017). Q DOI: 10.1021/acssuschemeng.7b03505 ACS Sustainable Chem. Eng. XXXX, XXX, XXX−XXX

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