土木建筑工程信息技术
土木建築工程信息技術
토목건축공정신식기술
JOURNAL OF INFORMATION TECHNOLOGY IN CIVIL ENGINEERING AND ARCHITECTURE
2012年
3期
13-18
,共6页
林兴贵%周济%程晶%付菲菲
林興貴%週濟%程晶%付菲菲
림흥귀%주제%정정%부비비
建筑材料制品%碳排放测算%全生命周期
建築材料製品%碳排放測算%全生命週期
건축재료제품%탄배방측산%전생명주기
Construction Materials Products%Estimates of Carbon Emissions%The Whole Life Cycle Theory
通过对于国内外建筑材料碳排放测算的相关研究进行总结分析后,本文提出了基于全生命周期理论的建筑材料制品碳排放测算模型,即将建筑材料制品的全生命周期界定为从其原材料获取到最终报废或回收的整个时间段,着重分析了建筑材料制品各个阶段碳排放来源,明确各阶段碳排放的计算方法,同时以蒸压粉煤灰标砖的碳排放测算为例进行测算验证。研究结果表明,本文对于建筑材料制品碳源分析及其计算方法是可行的,同时通过计算分析蒸压粉煤灰标砖生产各个阶段及其生产工艺对其排放量的影响值,有针对性的提出改进相关生产工艺的建议以降低其碳排放量。通过本文的研究,以期能对今后建筑材料制品的碳排放测算具有借鉴意义。
通過對于國內外建築材料碳排放測算的相關研究進行總結分析後,本文提齣瞭基于全生命週期理論的建築材料製品碳排放測算模型,即將建築材料製品的全生命週期界定為從其原材料穫取到最終報廢或迴收的整箇時間段,著重分析瞭建築材料製品各箇階段碳排放來源,明確各階段碳排放的計算方法,同時以蒸壓粉煤灰標磚的碳排放測算為例進行測算驗證。研究結果錶明,本文對于建築材料製品碳源分析及其計算方法是可行的,同時通過計算分析蒸壓粉煤灰標磚生產各箇階段及其生產工藝對其排放量的影響值,有針對性的提齣改進相關生產工藝的建議以降低其碳排放量。通過本文的研究,以期能對今後建築材料製品的碳排放測算具有藉鑒意義。
통과대우국내외건축재료탄배방측산적상관연구진행총결분석후,본문제출료기우전생명주기이론적건축재료제품탄배방측산모형,즉장건축재료제품적전생명주기계정위종기원재료획취도최종보폐혹회수적정개시간단,착중분석료건축재료제품각개계단탄배방래원,명학각계단탄배방적계산방법,동시이증압분매회표전적탄배방측산위례진행측산험증。연구결과표명,본문대우건축재료제품탄원분석급기계산방법시가행적,동시통과계산분석증압분매회표전생산각개계단급기생산공예대기배방량적영향치,유침대성적제출개진상관생산공예적건의이강저기탄배방량。통과본문적연구,이기능대금후건축재료제품적탄배방측산구유차감의의。
This article proposes an accounting model of carbon emissions of construction materials products by a careful analysis of related researches of carbon emissions accounting of construction materials products in the world Especially, this paper makes a special effort to analyze the source of construction materials products' carbon emis- sions in different stages. Also, the calculating methods of carbon emissions in different stages are defined in this pa- per. And autoclaved fly ash brick is taken as an example to verify the calculating methods. Then the outcome re- veals that the analysis of carbon source of construction materials products and the corresponding calculating methods are feasible. Simultaneously, the impact of production technology on carbon emissions of construction materials products can be determined through the calculating. Moreover, special improvements can be put forward to optimize the production technology of raw materials of construction materials products. By doing the research in this paper, it is hoped that the research has its significance to the future study of accounting of carbon emissions of building mate- rials.