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1.
Waste Manag Res ; 32(6): 500-8, 2014 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-24855225

RESUMEN

Waste management in construction is critical for the sustainable treatment of building-related construction and demolition (C&D) waste materials, and recycling of these wastes has been considered as one of the best strategies in minimization of C&D debris. However, recycling of C&D materials may not always be a feasible strategy for every waste type and therefore recycling and other waste treatment strategies should be supported by robust decision-making models. With the aim of assessing the net carbon, energy, and water footprints of C&D recycling and other waste management alternatives, a comprehensive economic input-output-based hybrid life-cycle assessment model is developed by tracing all of the economy-wide supply-chain impacts of three waste management strategies: recycling, landfilling, and incineration. Analysis results showed that only the recycling of construction materials provided positive environmental footprint savings in terms of carbon, energy, and water footprints. Incineration is a better option as a secondary strategy after recycling for water and energy footprint categories, whereas landfilling is found to be as slightly better strategy when carbon footprint is considered as the main focus of comparison. In terms of construction materials' environmental footprint, nonferrous metals are found to have a significant environmental footprint reduction potential if recycled.


Asunto(s)
Materiales de Construcción , Ambiente , Modelos Teóricos , Administración de Residuos/métodos , Carbono/análisis , Industria de la Construcción/métodos , Efecto Invernadero , Incineración , Papel , Plásticos , Reciclaje/métodos , Eliminación de Residuos/métodos , Residuos Sólidos/análisis , Instalaciones de Eliminación de Residuos , Madera
2.
Accid Anal Prev ; 53: 55-64, 2013 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-23376545

RESUMEN

In this study, a DEA based Malmquist index model was developed to assess the relative efficiency and productivity of U.S. states in decreasing the number of road fatalities. Even though the national trend in fatal crashes has reached to the lowest level since 1949 (Traffic Safety Annual Assessment Highlights, 2010), a state-by-state analysis and comparison has not been studied considering other characteristics of the holistic national road safety assessment problem in any work in the literature or organizational reports. In this study, a DEA based Malmquist index model was developed to assess the relative efficiency and productivity of 50 U.S. states in reducing the number of fatal crashes. The single output, fatal crashes, and five inputs were aggregated into single road safety score and utilized in the DEA-based Malmquist index mathematical model. The period of 2002-2008 was considered due to data availability for the inputs and the output considered. According to the results, there is a slight negative productivity (an average of -0.2 percent productivity) observed in the U.S. on minimizing the number of fatal crashes along with an average of 2.1 percent efficiency decline and 1.8 percent technological improvement. The productivity in reducing the fatal crashes can only be attributed to the technological growth since there is a negative efficiency growth is occurred. It can be concluded that even though there is a declining trend observed in the fatality rates, the efficiency of states in utilizing societal and economical resources towards the goal of zero fatality is not still efficient. More effective policy making towards increasing safety belt usage and better utilization of safety expenditures to improve road condition are derived as the key areas to focus on for state highway safety agencies from the scope of current research.


Asunto(s)
Accidentes de Tránsito/prevención & control , Benchmarking/métodos , Modelos Teóricos , Seguridad/normas , Accidentes de Tránsito/mortalidad , Bases de Datos Factuales , Humanos , Seguridad/estadística & datos numéricos , Estados Unidos
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