ISSN 3080-8065(Print)
ISSN 3080-8073(Online)
往期阅览
版权信息

ISSN 3080-8065(Print)
ISSN 3080-8073(Online)
CODEN:JKYGC5
(国际标准连续出版物标识符·
全球唯一标识符)
分配机构:美国化学文摘社(CAS)

编委会  
主编
王涵
同行评议专家
 
副主编  
关军/余涛/邓梦思  
胡嘉钰/李聪聪/王晖  
李宗凡/黄盛浩/章鹏鑫  
(以上排名不分先后顺序)
编委
高佳硕/河北石家庄金迅文化传媒公司
编委会助理  
王明远
期刊主页
在线投稿
申请编委/副主编/同行评议专家
索引/检索/存档
EuroPub欧洲学术出版中心数据库(英国)
ICI哥白尼索引期刊数据库(波兰)
ESJI欧亚科学期刊索引(哈萨克斯坦)
Open Access Library(OALib)
开放存取资源图书馆

China DOI
Sci Online
Baidu Baike
Editing and Publishing
Quest Press Limited
Address
7th Floor,D, No.19,Palawak
Lane, Macau
Telephone
+853 6881 9699
Email
QuestPress@hotmail.com
Web site
http://jzkx.scionline2025.com

 

 

  首页 -> 往期阅览-> 2025年
《建筑科学与工程研究》( ISSN3080-8065、EISSN3080-8073 ) 发布者:Quest Press 发布日期:2025/10/9
10.12479/questpress-jzkxygcyj.20250102 Open Access 下载1 浏览29

 

基于余热回收的二氧化碳捕捉系统设计与经济性分析

余建
广州东华博泰科技有限公司,广东广州,510405
摘要:在国家“双碳”战略的大背景下,石化行业作为高能耗、高排放的典型领域,其绿色转型迫在眉睫。本文着重于石化行业二氧化碳捕捉系统,通过融合余热回收、溴化锂吸收式制热等核心技术,构建了一套适用于石化行业的低碳节能工艺。以大庆石化百万吨级项目为实例,验证了该系统在降低蒸汽耗量(每年 37.912 万吨,1.0MPaG 饱和蒸汽)、减少循环水消耗(每年 2580 万吨,32℃→40℃)以及二氧化碳减排(每年 7.44 万吨,通过节约蒸汽能源换算得出)等方面的显著效果。经详细测算,项目投资回收周期预估为 1.34 年,经济效益达到 5695 万元每年,为石化行业的低碳转型提供了可借鉴、可推广的技术路径。
关健词:二氧化碳捕捉;余热回收;溴化锂吸收式制热;能效优化
 
Design and Economic Analysis of a Carbon Dioxide Capture System Based on Waste Heat Recovery
Jian Yu
DH Bitech-IoT Co.,Ltd, Guangzhou, Guangdong, 510405, China
Abstract:Against the backdrop of China's "dual-carbon" strategy, the petrochemical industry, as a typical sector with high energy consumption and high emissions, is facing an urgent need for green transformation. This paper focuses on carbon dioxide capture systems in the petrochemical industry and constructs a low-carbon and energy-saving process suitable for the petrochemical industry by integrating core technologies such as waste heat recovery and lithium bromide absorption heating. Taking the million-ton-levelproject of Daqing Petrochemical as a case study, the significant effects of the system are verified in reducing steam consumption (379,120 tons per year of 1.0MPaG saturated steam), decreasing circulating water consumption (25.8 million tons per year with a temperature range from 32℃ to 40℃), and achieving carbon dioxide emission reduction (74,400 tons per year, calculated by converting saved steam energy). Through detailed calculation, the estimated investment payback period of the project is 1.34 years, with annual economic benefits reaching 56.95 million yuan. This provides a replicable and promotable technical path for the low-carbon transformation of the petrochemical industry.
Keywords:Carbon Dioxide Capture; Waste Heat Recovery; Lithium Bromide Absorption Heating; Energy Efficiency Optimization
 
 
 
  Peer Review
同行评审
Editorial Services
编辑服务
Research Ethics Policy
研究伦理政策
Contributorship & Authorship
贡献者与署名
About Quest Press / Macau Sino Int. Med. Press
关于 Quest Press 与 Macau Sino Int. Med. Press
  Global Indexing
全球索引
Copyright Licensing
版权许可
Data Sharing Policy
数据共享政策
Appeal/Correction/Retraction
申诉/更正/撤回
  Online Submission
线上投稿
To the Librarian
致图书馆员
Open Access Statement
开放获取声明
Misconduct Handling Policy
处理不端行为政策
  Content Licensing
内容许可
Guidelines for Reviewers
审稿人指南
Quality Control Mechanism
质量把控机制
Academic Misconduct Screening Policy
学术不端筛查政策
  Advertising Policy
广告政策
Article Processing Charge (APC)
文章处理费
Publication Ethics Policy
出版伦理政策
Call for Editorial Board Members/Associate Editors/Peer Reviewers/Editors-in-Chief
诚邀编委、副主编、同行评审专家及主编