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Therefore, this work suggests a novel methodological framework by combining Hybrid Input\u2013Output Lifecycle Analysis (HIO-LCA) with the Portuguese seasonal method for computing the households\u2019 energy needs. A holistic assessment of the energy, economic, environmental, and social impacts connected with the adoption of EE solutions is conducted aimed at supporting decision-makers (DMs) in the design of suitable funding policies. For this purpose, 109,553 EE packages have been created by combining distinct thermal insulation options for roofs and fa\u00e7ades, with the replacement of windows, also considering the use of space heating and cooling and domestic heating water systems. The findings indicate that it is possible to confirm that various energy efficiency packages can be used to achieve the best performance for most of the impacts considered. Specifically, savings-to-investment ratio (SIR), Greenhouse gases (GHG), and energy payback times (GPBT and EPBT) present the best performances for packages that exclusively employ extruded polystyrene (XPS) for roof insulation (packages 151 and 265). However, considering the remaining impacts created by the investment in energy efficiency measures, their best performances are obtained when roof and fa\u00e7ades insulation is combined with the use of space heating and cooling and DHW systems to replace the existing equipment. If biomass is assumed to be carbon\u2013neutral, solution 18,254 yields the greatest reduction in GHG emissions. Given these trade-offs, it is evident that multiobjective optimization methods employing the impacts and benefits assessed are crucial for helping DMs design future EE programs following their preferences.<\/jats:p>","DOI":"10.1007\/978-3-031-18161-0_9","type":"book-chapter","created":{"date-parts":[[2022,11,29]],"date-time":"2022-11-29T15:04:43Z","timestamp":1669734283000},"page":"131-146","update-policy":"https:\/\/doi.org\/10.1007\/springer_crossmark_policy","source":"Crossref","is-referenced-by-count":0,"title":["Multiple Impacts of Energy Efficiency Technologies in Portugal"],"prefix":"10.1007","author":[{"given":"Marcos","family":"Tenente","sequence":"first","affiliation":[]},{"given":"Carla","family":"Henriques","sequence":"additional","affiliation":[]},{"given":"\u00c1lvaro","family":"Gomes","sequence":"additional","affiliation":[]},{"given":"Patr\u00edcia Pereira","family":"da Silva","sequence":"additional","affiliation":[]},{"given":"Ant\u00f3nio","family":"Trigo","sequence":"additional","affiliation":[]}],"member":"297","published-online":{"date-parts":[[2022,11,30]]},"reference":[{"key":"9_CR1","doi-asserted-by":"publisher","first-page":"81","DOI":"10.1016\/j.enbuild.2011.10.016","volume":"44","author":"E Asadi","year":"2012","unstructured":"Asadi, E., Da Silva, M. 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