waste heat power generation,bypass ventilation, BP boiler, waste heat cycle,energy conservation and emission reduction ,"/> <p class="MsoNormal"> 旁路放风余热循环利用系统优化及经济性分析
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水泥技术, 2024, 1(6): 27-30    doi: 10.19698/j.cnki.1001-6171.20246027
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旁路放风余热循环利用系统优化及经济性分析

中材节能股份有限公司,天津  300499

Optimization and Economic Analysis of Bypass Ventilation Waste Heat Recycling System

Sinoma Energy Saving Co., Ltd. , Tianjin 300499, China

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摘要 

增设旁路放风系统是解决水泥窑采用固废原燃材料导致水泥产品质量劣化的有效途径,但传统旁路放风系统存在废弃余热资源浪费的问题。为提高水泥窑余热资源的利用率,在传统旁路放风余热利用系统的基础上进行了工艺优化,通过采用混合BP锅炉排烟取代混合环境冷风,回收了绝大部分的烟气余热资源,增加了余热电站的发电量。以某5 000t/d水泥生产线余热发电项目为例,对比分析了两种工艺流程的经济性。结果表明,采用优化后的旁路放风余热锅炉烟气循环系统,年可增加经济效益296.27万元,减少废气排放量42 750Nm3/h,社会效益和经济效益显著。

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王炯
邹军辉
张国平
曹伟
关键词:  余热发电  旁路放风  BP锅炉  余热循环  节能减排    
Abstract: 

Adding a bypass ventilation system is an effective way to solve the problem of cement product quality deterioration caused by the use of solid waste raw materials in cement kilns. However, traditional bypass ventilation systems suffer from the waste of waste heat resources. In order to improve the utilization rate of waste heat resources in cement kilns, process optimization was carried out on the basis of the traditional bypass ventilation waste heat utilization system. By replacing the mixed ambient cold air with mixed BP boiler exhaust, the vast majority of gas waste heat resources were recovered, increasing the power generation capacity of the waste heat power plant. Taking a 5 000t/d cement production line waste heat power generation project as an example, the economic feasibility of two process flows was compared and analyzed. The results show that adopting the optimized bypass ventilation waste heat boiler flue gas circulation system can increase economic benefits by 2.962 7 million yuan annually, reduce exhaust gas emissions by 42 750 Nm3/h, and achieve significant social and economic benefits.

Key words:  waste heat power generation')" href="#">

waste heat power generation    bypass ventilation    BP boiler    waste heat cycle    energy conservation and emission reduction

收稿日期:  2024-03-11      修回日期:  2024-11-25           出版日期:  2024-11-25      发布日期:  2024-11-25      整期出版日期:  2024-11-25
ZTFLH:  TQ172.62  
引用本文:    
王炯, 邹军辉, 张国平, 曹伟.

旁路放风余热循环利用系统优化及经济性分析 [J]. 水泥技术, 2024, 1(6): 27-30.
WANG Jiong, ZOU Junhui, ZHANG Guoping, CAO Wei.

Optimization and Economic Analysis of Bypass Ventilation Waste Heat Recycling System . Cement Technology, 2024, 1(6): 27-30.

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http://www.cemteck.com/CN/10.19698/j.cnki.1001-6171.20246027  或          http://www.cemteck.com/CN/Y2024/V1/I6/27
[1] 李俊. 余热发电汽轮机真空抽气系统节能改造[J]. 水泥技术, 2022, 1(5): 68-71.
[2] 黄海林, 姜树丰, 郝利炜, 刘鹏飞, 王小文. 水泥窑旁路放风系统及其工艺设计[J]. 水泥技术, 2022, 1(3): 67-72.
[3] 刘庆江, 高增毅, 方婉, 沈欣. 旁路放风与高硫煤的应用[J]. 水泥技术, 2020, 1(4): 65-70.
[4] 张高科, 姚营娇. 两档短窑的操作技巧[J]. 水泥技术, 2020, 1(4): 71-73.
[5] 李小燕, 俞为民, 彭学平, 王秀龙, 朱金波. 新型干法水泥生产线高硫煤应用技术[J]. 水泥技术, 2014, 1(2): 26-29.
[6] 包文忠, 张磊, 张福滨.
水泥窑旁路放风技术及余热利用简介
[J]. 水泥技术, 2013, 1(6): 96-99.
[7] 李国强, 朱彦坤.
水泥窑旁路放风余热资源利用的探讨
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[8] 李国强, 韩涛, 肖衍党, 杜俊昭.
水泥窑旁路放风技术的研究
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[9] 王春梅, 杨立荣, 杨克锐, 张志勇.
旁路放风合并煤矸石脱水的工艺设想
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[10] 张大康. 国外某水泥工厂的旁路放风装置[J]. 水泥技术, 2006, 1(4): 56-59.
[1] . Review and Prospect of Engineering Practice of Waste Disposal in Cement Kiln in China[J]. Cement Technology, 2018, 1(1): 17 -21 .
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[3] LIU Yonggang, GAO Hongwei, XIAO Guiqing. Design Method of Road Structure Using Lean Concrete Base[J]. Cement Technology, 2018, 1(1): 27 -31 .
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[5] MA Debao. Finite Element Analysis of Inverted Cone in Raw Meal Silo[J]. Cement Technology, 2018, 1(1): 35 -38 .
[6] HAN Zhongqi. [J]. Cement Technology, 2018, 1(1): 38 -48 .
[7] XIE Jianzhong, LIAN Xuewen. Analysis and Solution of Segregation of the Kiln Ash in Continuous Raw Meal Homogenization Silo#br#[J]. Cement Technology, 2018, 1(1): 49 -53 .
[8] GUAN Laiqing, HE Yongxian. [J]. Cement Technology, 2018, 1(1): 54 -59 .
[9] WEI Can, ZHANG Yuanyuan, AI Jun. Application of Cement Intelligent Control System in Overseas Projects[J]. Cement Technology, 2018, 1(1): 60 -64 .
[10] JIN Shuang. [J]. Cement Technology, 2018, 1(1): 72 -73 .
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