期刊目次

加入编委

期刊订阅

添加您的邮件地址以接收即将发行期刊数据:

Open Access Article

Scientific Development Research . 2025; 5: (4) ; 46-49 ; DOI: 10.12208/j.sdr.20250145.

Integration of CO₂ capture and mineralization sequestration in cement production
水泥生产过程中CO₂捕获与矿化封存技术集成

作者: 王金海 *

内蒙古蒙西水泥股份有限公司 内蒙古鄂尔多斯

*通讯作者: 王金海,单位:内蒙古蒙西水泥股份有限公司 内蒙古鄂尔多斯;

发布时间: 2025-08-18 总浏览量: 100

摘要

水泥生产是全球二氧化碳排放的重要来源之一,寻找有效的减排技术成为应对气候变化的关键课题。CO₂捕获与矿化封存技术为解决水泥工业碳排放提供了一条有效途径。本研究探讨了将CO₂捕获与矿化封存技术集成应用于水泥生产过程中的可行性与挑战。通过对现有技术的综合分析,评估了其在水泥生产过程中的适应性、经济性及环境效益。实验结果表明,合理的技术集成不仅能显著减少CO₂排放,还能促进副产品的利用。本文为水泥行业的低碳转型提供了可行的技术路径和策略,具有重要的实践意义。

关键词: 水泥生产;CO₂捕获;矿化封存;碳减排;技术集成

Abstract

Cement production stands as a major contributor to global carbon dioxide emissions, making the development of effective emission reduction technologies a critical challenge in combating climate change. CO₂ capture and mineralized storage technology offers a viable solution for addressing carbon emissions in the cement industry. This study investigates the feasibility and challenges of integrating CO₂ capture and mineralized storage into cement production processes. Through comprehensive analysis of existing technologies, we evaluate their adaptability, economic viability, and environmental benefits in cement manufacturing. Experimental results demonstrate that strategic integration of these technologies not only significantly reduces CO₂ emissions but also enhances by-product utilization. The findings provide actionable technical pathways and strategies for the low-carbon transformation of the cement industry, offering substantial practical implications for sustainable development.

Key words: Cement production; CO₂ capture; Mineralized storage; Carbon emission reduction; Technology integration

参考文献 References

[1] 王胜涛,唐佳旭,杨宁,等.粉煤灰直接湿法矿化封存CO2机制及关键影响因素优化研究[J].煤矿安全,2025,56(07): 47-56.

[2] 陈姝敏,秦金平,王小华,等.固危废中氯离子对水泥窑生产及产品质量的影响研究[J].水泥,2025,(07):23-27.

[3] 朱梦博,刘浪,王双明,等.煤矿采空区间隔条带充填CO2矿化封存及其关键技术[J].煤田地质与勘探,2025,53(06): 143-155.

[4] 赵洹熠,张钊,娄岩文,等.氨供氢替代煤在水泥生产中的绿色氢能降碳工业化技术的研发应用[J].水泥,2025,(06): 25-27.

[5] 邓雨萌,伍嘉文,曹洪杰,等.基于石灰石加绿氢制备CaO的低碳水泥生产系统模拟[J].洁净煤技术,2025, 31(06): 1-12.

[6] 冯宏坚.纤维水泥板生产中纸浆和纤维参数的影响因素研究[J].混凝土与水泥制品,2025,(05):68-71.

[7] 武猛,杨新鑫,王广顺.水泥生产余热发电系统一键并网技术及应用[J].水泥技术,2025,(02):58-61.

[8] 刘彬,邱宁,潘春梧,等.CO2矿化封存备选场址雷州半岛田洋玛珥湖玄武岩分布磁法勘探[J].环境工程学报, 2025,19(01):241-249.

引用本文

王金海, 水泥生产过程中CO₂捕获与矿化封存技术集成[J]. 科学发展研究, 2025; 5: (4) : 46-49.