Energy-efficiency measures for heritage buildings: A literature review S Lidelöw, T Örn, A Luciani, A Rizzo Sustainable cities and society 45, 231-242, 2019 | 224 | 2019 |
Evaluation of leachate emissions from crushed rock and municipal solid waste incineration bottom ash used in road construction S Lidelöw, A Lagerkvist Waste Management 27 (10), 1356-1365, 2007 | 78 | 2007 |
Exploring the trade-off in life cycle energy of building retrofit through optimization F Shadram, S Bhattacharjee, S Lidelöw, J Mukkavaara, T Olofsson Applied Energy 269, 115083, 2020 | 64 | 2020 |
Assessing the environmental impact of ashes used in a landfill cover construction I Travar, S Lidelöw, L Andreas, G Tham, A Lagerkvist Waste Management 29 (4), 1336-1346, 2009 | 61 | 2009 |
MSWI bottom ash used as basement at two pilot-scale roads: comparison of leachate chemistry and reactive transport modeling L De Windt, D Dabo, S Lidelöw, R Badreddine, A Lagerkvist Waste management 31 (2), 267-280, 2011 | 58 | 2011 |
The thermal performance of a green roof on a highly insulated building in a sub-arctic climate J Schade, S Lidelöw, J Lönnqvist Energy and Buildings 241, 110961, 2021 | 51 | 2021 |
Toxicity of leachate from bottom ash in a road construction S Ore, J Todorovic, H Ecke, K Grennberg, S Lidelöw, A Lagerkvist Waste management 27 (11), 1626-1637, 2007 | 45 | 2007 |
Leaching behaviour of copper slag, construction and demolition waste and crushed rock used in a full-scale road construction S Lidelöw, J Mácsik, I Carabante, J Kumpiene Journal of environmental management 204, 695-703, 2017 | 39 | 2017 |
Field trials to assess the use of iron-bearing industrial by-products for stabilisation of chromated copper arsenate-contaminated soil S Lidelöw, D Ragnvaldsson, P Leffler, S Tesfalidet, C Maurice Science of the total environment 387 (1-3), 68-78, 2007 | 30 | 2007 |
The promise of BIM? Searching for realized benefits in the Nordic architecture, engineering, construction, and operation industries S Lidelöw, S Engström, O Samuelson Journal of Building Engineering 76, 107067, 2023 | 23 | 2023 |
Exploring industrialized housebuilders’ interpretations of local requirements using institutional logics A Viking, S Lidelöw Construction management and economics 33 (5-6), 484-494, 2015 | 23 | 2015 |
Using the energy signature method to estimate the effective U-value of buildings G Nordström, H Johnsson, S Lidelöw Sustainability in Energy and Buildings: Proceedings of the 4th International …, 2013 | 22 | 2013 |
Techniques for the stabilization and assessment of treated copper-, chromium-, and arsenic-contaminated soil C Maurice, S Lidelöw, B Gustavsson, A Lättström, D Ragnvaldsson, ... AMBIO: A Journal of the Human Environment 36 (6), 430-436, 2007 | 17 | 2007 |
Environmental assessment of secondary construction materials S Lidelöw Luleå tekniska universitet, 2004 | 14 | 2004 |
Comparing energy signature analysis to calculated U-values in wooden houses in a cold climate G Nordström, S Lidelöw, H Johnsson WIT Transactions on Ecology and the Environment 165, 411-419, 2012 | 9 | 2012 |
From the pilot project to the mainstream practice-Learning explored in planning and design of a low-energy quarter S Engström, S Lidelöw Procedia Economics and Finance 21, 288-296, 2015 | 8 | 2015 |
Byggentreprenörens energisignatur S Lidelöw, KF Munck Svenska byggbranschens utvecklingsfond, 2015 | 6 | 2015 |
Environmental assessment of construction with recycled materials S Lidelöw Luleå tekniska universitet, 2008 | 5 | 2008 |
Energy and indoor thermal performance analysis of a glazed façade high-rise building under various Nordic climatic conditions S Bhattacharjee, S Lidelöw, F Shadram Energy Reports 10, 3039-3053, 2023 | 3 | 2023 |
The challenge of energy efficiency in Kiruna’s heritage buildings A Luciani, S Lidelöw, S Bhattacharjee, T Örn Cold Climate HVAC Conference, 275-289, 2018 | 3 | 2018 |