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1.
Environ Sci Technol ; 47(2): 1170-6, 2013 Jan 15.
Article in English | MEDLINE | ID: mdl-23268715

ABSTRACT

Growth in biofuel production, which is meant to reduce greenhouse gas (GHG) emissions and fossil energy demand, is increasingly seen as a threat to food supply and natural habitats. Using photovoltaics (PV) to directly convert solar radiation into electricity for battery electric vehicles (BEVs) is an alternative to photosynthesis, which suffers from a very low energy conversion efficiency. Assessments need to be spatially explicit, since solar insolation and crop yields vary widely between locations. This paper therefore compares direct land use, life cycle GHG emissions and fossil fuel requirements of five different sun-to-wheels conversion pathways for every county in the contiguous U.S.: Ethanol from corn or switchgrass for internal combustion vehicles (ICVs), electricity from corn or switchgrass for BEVs, and PV electricity for BEVs. Even the most land-use efficient biomass-based pathway (i.e., switchgrass bioelectricity in U.S. counties with hypothetical crop yields of over 24 tonnes/ha) requires 29 times more land than the PV-based alternative in the same locations. PV BEV systems also have the lowest life cycle GHG emissions throughout the U.S. and the lowest fossil fuel inputs, except for locations with hypothetical switchgrass yields of 16 or more tonnes/ha. Including indirect land use effects further strengthens the case for PV.


Subject(s)
Biofuels/economics , Electric Power Supplies/economics , Ethanol/metabolism , Panicum/metabolism , Zea mays/metabolism , Electricity , Greenhouse Effect
2.
J Environ Manage ; 90(3): 1476-82, 2009 Mar.
Article in English | MEDLINE | ID: mdl-19028416

ABSTRACT

The presence of pharmaceutical compounds in treated wastewater and in surface waters is a growing environmental concern. This paper provides information about general awareness of the issue, disposal practices, willingness to pay for a disposal program, and willingness to participate in a disposal program. The results are based on a telephone survey of 1005 residents in southern California. Less than half of the respondents are aware of the issue. While disposal of unused medications through the trash and toilet/sink is the most common practices, respondents that are aware of the issue are more likely to return pharmaceuticals to a pharmacy or drop them off at a hazardous waste center. The results of a contingent valuation question indicate a substantial willingness to pay a surcharge on prescriptions to support the establishment of a pharmaceutical disposal program. The more conservative estimate of mean willingness to pay is $1.53 per prescription, which translates into an average annual willingness to pay of approximately $14. A benefit-cost comparison suggests ample scope for establishing a pharmaceutical disposal program that would yield positive net social benefits, even if the surcharge was applied to only one prescription per year. We also find that respondents are likely to participate in a disposal program. Assuming that the program is based on drop-off locations at local pharmacies, approximately 70 percent of the respondents would be very likely to return their unwanted or expired medicines.


Subject(s)
Pharmaceutical Preparations/chemistry , Waste Disposal, Fluid/economics , Waste Disposal, Fluid/methods , Community Participation , Data Collection , Models, Economic , Telephone , Water Pollutants, Chemical
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