Life cycle assessment of innovative insulation panels based on eucalyptus bark fibers

被引:36
|
作者
Casas-Ledon, Yannay [1 ]
Daza Salgado, Karen [1 ]
Cea, Juan [2 ]
Arteaga-Perez, Luis E. [3 ]
Fuentealba, Cecilia [2 ]
机构
[1] Univ Concepcion, EULA Ctr, Fac Environm Sci, Environm Engn Dept, Concepcion, Chile
[2] Univ Concepcion, Technol Dev Unit UDT, Concepcion, Chile
[3] Univ Bio Bio, Dept Wood Engn, Lab Thermal & Catalyt Proc LPTC, Concepcion, Chile
关键词
Insulation materials; Eucalyptus bark fibers; Life cycle assessment; THERMAL INSULATION; RESIDENTIAL BUILDINGS; WASTE; GASIFICATION; PERFORMANCE; STALK;
D O I
10.1016/j.jclepro.2019.119356
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This paper reports on the environmental issues associated with the manufacturing of a new insulation material (panel) produced with fibers from Eucalyptus bark. The analyses consider four types of eucalyptus bark panels with different bulk densities (25, 50, 75 and 100 kg/m(3)). For each type of panel, the environmental impact assessment is performed using Life Cycle Assessment (LCA) methodology and considering system boundaries from cradle to gate. Major environmental impacts were associated to the panel with a density of 100 kg/m(3), due to the higher mass required for the same functional unit (R = 1 m(2)K/W). The panel manufacturing, forest management and biomass transport were the stages with the highest significance, mainly due to: the contribution of the synthetic fiber used for binding the bark-derived fibers, intensive use of agrochemicals in forest management and long traveled distances for biomass transportation. Furthermore, the eucalyptus bark panels with densities of 25 and 50 kg/m(3) shown the lower embodied energy and carbon emissions than traditional insulation materials (expanded polyurethane, polystyrene, glass fibers and glass wool). Therefore, it could be an attractive insulation material for a more sustainable building sector. (C) 2019 Elsevier Ltd. All rights reserved.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Life Cycle Assessment of Disposed and Recycled End-of-Life Photovoltaic Panels in Australia
    Singh, Jasleen Kaur Daljit
    Molinari, Georgina
    Bui, Jonathan
    Soltani, Behdad
    Rajarathnam, Gobinath Pillai
    Abbas, Ali
    SUSTAINABILITY, 2021, 13 (19)
  • [42] Environmental Life-Cycle Assessment of an Innovative Multifunctional Toilet
    Rodrigues, Carla
    Almeida, Joao
    Santos, Maria Ines
    Costa, Andreia
    Alem, Sandra
    Rufo, Emanuel
    Tadeu, Antonio
    Freire, Fausto
    ENERGIES, 2021, 14 (08)
  • [43] Environmental Life Cycle Assessment of Thermal Insulation Tiles for Flat Roofs
    Gomes, Raul
    Silvestre, Jose D.
    de Brito, Jorge
    MATERIALS, 2019, 12 (16)
  • [44] Comparative environmental life cycle assessment of thermal insulation materials of buildings
    Pargana, Nuno
    Pinheiro, Manuel Duarte
    Silvestre, Jose Dinis
    de Brito, Jorge
    ENERGY AND BUILDINGS, 2014, 82 : 466 - 481
  • [45] Preliminary Life Cycle Assessment of an innovative wave energy converter
    Guercio, Andrea
    Cuto, Domenico
    Cusenza, Maria Anna
    Cirrincione, Maurizio
    Kumar, Dhirendran Munith
    Montalbano, Andrea
    OCEANS 2021: SAN DIEGO - PORTO, 2021,
  • [46] Life Cycle Assessment of an Innovative Food Waste Management System
    Elginoz, Nilay
    Khatami, Kasra
    Owusu-Agyeman, Isaac
    Cetecioglu, Zeynep
    FRONTIERS IN SUSTAINABLE FOOD SYSTEMS, 2020, 4
  • [47] Life Cycle Assessment of Tomato Cultivated in an Innovative Soilless System
    Pedala, Maria Concetta
    Traverso, Marzia
    Prestigiacomo, Simona
    Covais, Antonio
    Gugliuzza, Giovanni
    SUSTAINABILITY, 2023, 15 (21)
  • [48] Determination of optimum insulation thickness in pipe for exergetic life cycle assessment
    Kecebas, Ali
    ENERGY CONVERSION AND MANAGEMENT, 2015, 105 : 826 - 835
  • [49] The life cycle assessment related to insulation thickness of external walls of the airport
    Kon, Okan
    Caner, Ismail
    INTERNATIONAL JOURNAL OF SUSTAINABLE AVIATION, 2019, 5 (02) : 158 - 173
  • [50] Life cycle assessment (LCA) of thermal insulation materials: A critical review
    Fuechsl, Stefan
    Rheude, Felix
    Roeder, Hubert
    CLEANER MATERIALS, 2022, 5