Life cycle inherent toxicity: a novel LCA-based algorithm for evaluating chemical synthesis pathways

被引:28
作者
Eckelman, Matthew J. [1 ]
机构
[1] Northeastern Univ, Dept Civil & Environm Engn, 360 Huntington Ave, Boston, MA 02115 USA
基金
美国国家科学基金会;
关键词
GREEN CHEMISTRY; DIMETHYL CARBONATE; ORGANIC-CHEMISTRY; NETWORK; METRICS; ECOTOXICITY; EFFICIENCY; DISCOVERY; ENERGY;
D O I
10.1039/c5gc02768c
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Green chemistry has long called for a life cycle approach in designing and assessing new syntheses. In evaluating hazardous chemical use, most green chemistry metrics only consider those chemicals directly associated with the synthesis and miss upstream hazards that can contribute to or even dominate overall impacts when evaluated using life cycle assessment (LCA). Conversely, LCA metrics are wholly dependent on emissions and do not capture potential risks posed by inherently hazardous chemicals. Life cycle inherent toxicity i* is a proposed novel metric that adapts the computational framework of LCA by attaching measures of inherent hazard to the intermediate chemical flows, rather than considering only emissions. Thus, it captures toxicity associated with the entire cradle-to-gate of a chemical, rather than just direct chemical inputs into a synthesis, and is a function of upstream use of hazardous chemicals, rather than only emissions. Values of i* are calculated for 181 organic chemicals from the ecoinvent LCI database. Statistical testing revealed no significant correlation between life cycle inherent toxicity and conventional toxicity, suggesting that the proposed metric provides novel information that can be used in conjunction with current green chemistry metrics. Outliers are investigated where the target chemical is much more toxic than its upstream building blocks (e.g., phosgene) and, conversely, where upstream chemical toxicity dominates (e.g., aniline). Values of i* are weakly correlated with values of conventional life cycle toxicity from the USEtox LCIA model, again suggesting that the new metric provides additional knowledge. A similar computational approach can be applied to examine other types of chemical hazards, such as corrosivity.
引用
收藏
页码:3257 / 3264
页数:8
相关论文
共 39 条
[21]   Categorization of Scope 3 Emissions for Streamlined Enterprise Carbon Footprinting [J].
Huang, Y. Anny ;
Weber, Christopher L. ;
Matthews, H. Scott .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2009, 43 (22) :8509-8515
[22]   The evolution of life cycle assessment in pharmaceutical and chemical applications - a perspective [J].
Jimenez-Gonzalez, Concepcion ;
Overcash, Michael R. .
GREEN CHEMISTRY, 2014, 16 (07) :3392-3400
[23]   Parallel Optimization of Synthetic Pathways within the Network of Organic Chemistry [J].
Kowalik, Mikolaj ;
Gothard, Chris M. ;
Drews, Aaron M. ;
Gothard, Nosheen A. ;
Weckiewicz, Alex ;
Fuller, Patrick E. ;
Grzybowski, Bartosz A. ;
Bishop, Kyle J. M. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2012, 51 (32) :7928-7932
[24]   Life-cycle approaches for assessing green chemistry technologies [J].
Lankey, RL ;
Anastas, PT .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2002, 41 (18) :4498-4502
[25]  
Lapkin A., 2008, Green Chemistry Metrics: Measuring and Monitoring Sustainable Processes
[26]   Towards a holistic approach to metrics for the 21st century pharmaceutical industry [J].
McElroy, C. Robert ;
Constantinou, Andri ;
Jones, Leonie C. ;
Summerton, Louise ;
Clark, James H. .
GREEN CHEMISTRY, 2015, 17 (05) :3111-3121
[27]   Ex-ante environmental assessments of novel technologies - Improved caprolactam catalysis and hydrogen storage [J].
Roes, A. L. ;
Patel, M. K. .
JOURNAL OF CLEANER PRODUCTION, 2011, 19 (14) :1659-1667
[28]   USEtox-the UNEP-SETAC toxicity model: recommended characterisation factors for human toxicity and freshwater ecotoxicity in life cycle impact assessment [J].
Rosenbaum, Ralph K. ;
Bachmann, Till M. ;
Gold, Lois Swirsky ;
Huijbregts, Mark A. J. ;
Jolliet, Olivier ;
Juraske, Ronnie ;
Koehler, Annette ;
Larsen, Henrik F. ;
MacLeod, Matthew ;
Margni, Manuele ;
McKone, Thomas E. ;
Payet, Jerome ;
Schuhmacher, Marta ;
van de Meent, Dik ;
Hauschild, Michael Z. .
INTERNATIONAL JOURNAL OF LIFE CYCLE ASSESSMENT, 2008, 13 (07) :532-546
[29]   Eco-efficiency analysis by BASF:: The method [J].
Saling, P ;
Kicherer, A ;
Dittrich-Krämer, B ;
Wittlinger, R ;
Zombik, W ;
Schmidt, I ;
Schrott, W ;
Schmidt, S .
INTERNATIONAL JOURNAL OF LIFE CYCLE ASSESSMENT, 2002, 7 (04) :203-218
[30]  
SHELDON RA, 1992, CHEM IND-LONDON, P903