6533b7d3fe1ef96bd125ffd2
RESEARCH PRODUCT
Economic feasibility study for new technological alternatives in wastewater treatment processes: a review
Francesc Hernández-sanchoMaría Molinos-senanteRamón Sala-garridosubject
EngineeringEnvironmental EngineeringEmerging technologiesShadow price0207 environmental engineering02 engineering and technology010501 environmental sciencesWaste Disposal Fluid01 natural sciencesWater Purification12. Responsible consumptionMarket price020701 environmental engineering0105 earth and related environmental sciencesWater Science and TechnologyCost–benefit analysisbusiness.industryManagement science6. Clean waterRisk analysis (engineering)13. Climate actionSustainabilityFeasibility StudiesSewage treatmentbusinessAlternative technologyWaste disposaldescription
The concept of sustainability involves the integration of economic, environmental, and social aspects and this also applies in the field of wastewater treatment. Economic feasibility studies are a key tool for selecting the most appropriate option from a set of technological proposals. Moreover, these studies are needed to assess the viability of transferring new technologies from pilot-scale to full-scale. In traditional economic feasibility studies, the benefits that have no market price, such as environmental benefits, are not considered and are therefore underestimated. To overcome this limitation, we propose a new methodology to assess the economic viability of wastewater treatment technologies that considers internal and external impacts. The estimation of the costs is based on the use of cost functions. To quantify the environmental benefits from wastewater treatment, the distance function methodology is proposed to estimate the shadow price of each pollutant removed in the wastewater treatment. The application of this methodological approach by decision makers enables the calculation of the true costs and benefits associated with each alternative technology. The proposed methodology is presented as a useful tool to support decision making.
year | journal | country | edition | language |
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2012-03-01 | Water Science and Technology |