Open Access Article
Advances in Constructional Engineering. 2025; 5: (4) ; 62-64 ; DOI: 10.12208/j.ace.2025000141.
Analysis of low-carbon construction technology pathways for mechanical and electrical engineering under the "Dual Carbon" goals
“双碳”目标下机电工程低碳施工技术路径分析
作者:
吴献朋 *
安徽乾坤电力工程有限公司 安徽合肥
*通讯作者:
吴献朋,单位:安徽乾坤电力工程有限公司 安徽合肥;
发布时间: 2025-04-12 总浏览量: 22
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摘要
在“双碳”目标引领下,机电工程施工向低碳转型迫在眉睫。文章聚焦机电工程施工,深入剖析其当前高碳排放的现状,从施工设备、施工工艺等多方面探寻高碳成因。详细阐述低碳施工技术路径,包括节能设备选用、工艺优化、可再生能源利用等。通过这些路径,能显著降低机电工程施工能耗与碳排放,助力行业绿色可持续发展,为实现“双碳”目标贡献力量。
关键词: 双碳目标;机电工程;低碳施工;节能技术;可再生能源
Abstract
Under the guidance of the "Dual Carbon" goals, the low-carbon transformation of mechanical and electrical engineering construction has become imperative. This paper focuses on mechanical and electrical engineering projects, thoroughly analyzing their current high-carbon emission status and exploring the causes of high carbon emissions from multiple aspects such as construction equipment and techniques. It elaborates on low-carbon construction technology pathways including energy-saving equipment selection, process optimization, and renewable energy utilization. Through these approaches, the energy consumption and carbon emissions in mechanical and electrical engineering construction can be significantly reduced, promoting green and sustainable development of the industry and contributing to the realization of the "Dual Carbon" goals.
Key words: Dual carbon goals; Mechanical and electrical engineering; Low-carbon construction; Energy-saving technologies; Renewable energy
参考文献 References
[1] 卜建辉.民用建筑机电工程施工技术[J].大众标准化,2025,(14):35-37.
[2] 屈庆涛,马红伟.煤矿机电工程安装施工技术质量分析[J].中国设备工程,2025,(13):213-215.
[3] 廉恒智.装配式建筑中的机电工程模块化施工技术研究[J].四川建材,2025,51(07):147-149.
[4] 宋晓冰.高速公路监控通信系统施工技术研究[J].工程建设与设计,2025,(12):166-168.
[5] 白永红.机电工程施工中弱电系统安装技术研究[J].中国设备工程,2025,(12):95-97.
[6] 张柏虎.机电工程安装施工技术现存问题及处理方法研究[J].仪器仪表用户,2025,32(06):86-88.
[7] 杨先东.建筑机电设备安装工程施工技术要点[J].中华建设,2025,(06):177-179.
[8] 王露宁.BIM技术在综合机电工程施工中的应用[J].信息与电脑,2025,37(10):160-162.
引用本文
吴献朋, “双碳”目标下机电工程低碳施工技术路径分析[J]. 建筑工程进展, 2025; 5: (4) : 62-64.