Use of HPC Data for Life Cycle Assessment Characterizing Chemicals in Commerce Austin, TX, December 12-14, 2006 Rita Schenck, Institute for Environmental.

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Presentation transcript:

Use of HPC Data for Life Cycle Assessment Characterizing Chemicals in Commerce Austin, TX, December 12-14, 2006 Rita Schenck, Institute for Environmental Research & Education American Center for LCA

Life Cycle Assessment is: A comprehensive assessment of environmental impacts of products and services A comprehensive assessment of environmental impacts of products and services Based on input-output analysis of the entire product life cycle Based on input-output analysis of the entire product life cycle Using indicators of all relevant environmental impacts to provide an ecoprofile Using indicators of all relevant environmental impacts to provide an ecoprofile Often based on the fate & transport of chemical emissions Often based on the fate & transport of chemical emissions Highly data intensive Highly data intensive Science-based and useful for many decision Science-based and useful for many decision

All Life Cycle Stages Industrial System Raw Material Extraction Manufacturing, Production Distribution, Transportation Operations and Maintenance Recycle and Waste Management Inputs (resources) energy, materials Outputs air and water emissions, wastes

All Impact Categories Human Toxicity Ozone Depletion Ecotoxicity Fossil Fuel Depletion Photochemical Smog Eutrophication Acidification Climate Change

Some Uses of LCA LCA DfE Vendor Management Annual Reports Emissions Trading Product Stewardship Public Policy Marketing & Labels EMS

Raw Materials Warehouse/ Checkpoint Tool Machining Warehousing Colorant Mixing Liner Chroming (off site) Dishwasher testing Boiling Water Test Assembly Printing (Stainless) Compression Molding Injection Molding Ship to US/UK Truck to Hong Kong Packaging Mold Machining Truck to Stores Truck to Seattle/York HVAC Example Scoping, Cups System Boundary

Resources Electricity (location) Water (location & type) Fuel (in ground) Minerals (in ground) Biomass (harvested) Land use (area & location) Air CO 2 CO PM (10, 2.5) CH 4 SO X NO X NH 3 Hg Pb VOC (NM) Dioxin PAH’s Water COD TDS TSS BOD (5,7,10) Flow  Temperature NH3 (as N) TKN (as N) NO3, NO2 (as N) PAH’s Phosphates (as P) Cu Ni As Cd Cr Pb Hg Wastes Solid waste Radioactive Waste (high, low, medium) Hazardous Waste Not a comprehensive list, but a minimum list FLOWS

Normalized Type III Ecolabel

Typical LCA Toxicity Measures Benzene or Toluene equivalents for Cancer or non-cancer endpoints Benzene or Toluene equivalents for Cancer or non-cancer endpoints DALY’s (disability adjusted life years) DALY’s (disability adjusted life years) Toxic units (based on toxicity & persistence, sometimes bioaccumulation) Toxic units (based on toxicity & persistence, sometimes bioaccumulation) LCA focuses on environmental health & ecotoxicity LCA focuses on environmental health & ecotoxicity Naturally-occurring chemicals and mixtures are rarely if ever considered Naturally-occurring chemicals and mixtures are rarely if ever considered

Most Useful HVC’s

Natural & Petroleum Oils & Derivatives

Opportunities to Reduce Costs Alkanes, C Alkanes, C Alkanes, C Alkanes, C Alkanes, C Alkanes, C Alkanes, C4-6

Summary Much of the information in HPV database in useful for LCA Much of the information in HPV database in useful for LCA Especially the information on acute toxicity, ecotoxicity and fate Especially the information on acute toxicity, ecotoxicity and fate About half of the “substances” are either mixtures or naturally occurring, and toxicity testing is questionable About half of the “substances” are either mixtures or naturally occurring, and toxicity testing is questionable There is an opportunity to test components of mixtures to minimize costs There is an opportunity to test components of mixtures to minimize costs