气候变化研究进展 ›› 2022, Vol. 18 ›› Issue (2): 205-214.doi: 10.12006/j.issn.1673-1719.2021.107

• 温室气体排放 • 上一篇    下一篇

近零能耗建筑碳排放及影响因素分析

冯国会, 崔航(), 常莎莎, 黄凯良, 王茜如   

  1. 沈阳建筑大学,沈阳 110168
  • 收稿日期:2021-06-18 修回日期:2022-01-28 出版日期:2022-03-30 发布日期:2022-02-15
  • 通讯作者: 崔航
  • 作者简介:冯国会,男,教授
  • 基金资助:
    国家重点研发计划政府间国际科技创新合作项目(2019YFE0100300);国家自然科学基金项目(51778376);辽宁省教育厅高等学校(2020389)

Analysis of carbon emissions and influencing factors of near-zero energy buildings

FENG Guo-Hui, CUI Hang(), CHANG Sha-Sha, HUANG Kai-Liang, WANG Xi-Ru   

  1. Shenyang Jianzhu University, Shenyang 110168, China
  • Received:2021-06-18 Revised:2022-01-28 Online:2022-03-30 Published:2022-02-15
  • Contact: CUI Hang

摘要:

基于全生命周期评价理论,建立了建筑全生命周期碳排放计算模型,以严寒地区某近零能耗建筑为例,开展了建筑全生命周期碳排放核算。同时,选取了建筑保温材料类型、保温材料厚度、窗户类型、窗墙面积比、供暖系统形式以及建筑使用寿命等影响因素,开展了建筑碳排放影响因素研究。结果表明:近零能耗建筑全生命周期内建材生产运输、建筑施工、建筑运行以及建筑拆除清理阶段碳排放占比分别为51.3%、1.3%、47.3%、0.1%;通过采用低碳环保材料、保温材料厚度在160~260 mm之间、窗墙面积比在0.1~0.2之间、采用太阳能+地源热泵供能方式以及延长建筑使用寿命能够降低建筑全生命周期年均碳排放。

关键词: 近零能耗建筑, 全生命周期评价, 影响因素, 碳排放

Abstract:

In this study, a demonstration center of a near-zero energy building in a cold region was selected as a case to carry out the life-cycle carbon emissions accounting of the near-zero energy building. Numerical simulation method was used to select the type of building thermal insulation material, thickness of thermal insulation material, window type, window-wall area ratio, form of heating and air conditioning and building service life, and analyze the influencing factors of carbon emissions in the whole life cycle of the building. The results show that the carbon emissions in the production and transportation, construction, operation and demolition and cleaning stages of building materials account for 51.3%, 1.3%, 47.3% and 0.1%, respectively, in the whole life cycle of near-zero energy buildings. Compared with other buildings, it is found that with the improvement of building energy saving requirements, carbon emissions in the production stage of building materials account for more and more; One-third of the life cycle carbon emissions of near-zero energy buildings are about one-third of ordinary buildings, and one-third of green ones; Through the use of low-carbon environmental protection materials, insulation material thickness between 160-260 mm, window-wall area ratio between 0.1-0.2, solar+ground source heat pump energy supply mode and prolonging the service life of the building can reduce the carbon emissions in the whole life cycle of the building.

Key words: Near-zero energy building, Full life cycle assessment, Influencing factors, Carbon emissions

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