玻璃工业窑炉节能减排热化学再生设计  被引量:2

Thermo-Chemical Regeneration Design for Energy Saving and Emission Reduction of Glass Industry Furnace

在线阅读下载全文

作  者:曾红杰 张纲 马立云 官敏[1,2] 周文彩 王川申[1,2] 左泽方 ZENG Hongjie;ZHANG Gang;MA Liyun;GUAN Min;ZHOU Wencai;WANG Chuanshen;ZUO Zefang(National Innovation Center for Advanced Glass Materials,Bengbu 233000,China;China Triumph International Engineering Co.Ltd.,Shanghai 200063,China)

机构地区:[1]国家玻璃新材料创新中心,蚌埠233000 [2]中国建材国际工程集团有限公司,上海200063

出  处:《硅酸盐通报》2022年第11期3886-3892,共7页Bulletin of the Chinese Ceramic Society

基  金:国家玻璃新材料创新中心自立课题(K22008)。

摘  要:燃料燃烧是玻璃工业碳排放的主要来源。热化学再生技术能够显著降低玻璃窑炉熔化能耗,减少碳排放。本文通过计算和模拟研究了玻璃窑炉热化学重整反应的可行性,设计参数对重整反应的影响,气体转化率对玻璃窑炉节能效率的影响以及重整反应时间对气体转化率和产量的影响。结果表明:甲烷与水蒸气自发反应温度大于617.82℃,与二氧化碳自发反应温度大于641.27℃;当重整反应温度大于1000℃,反应时间超过10 s,甲烷与窑炉废气流量比(摩尔比)接近1时,热化学重整反应能够充分进行。Fuel combustion is the main source of carbon emission in glass industry.Thermo-chemical regeneration technology can significantly reduce the melting energy consumption and carbon emission of glass furnace.In this paper,the feasibility of thermo-chemical reforming reaction in glass furnace,the effects of design parameters on thermo-chemical reforming reaction,the effect of gas conversion on energy saving efficiency of glass furnace and the effect of thermo-chemical reforming reaction time on gas conversion and yield were studied through calculation and simulation.The results show that the spontaneous reaction temperature of methane and water vapour is more than 617.82℃,and the spontaneous reaction temperature of methane and carbon dioxide is more than 641.27℃.In addition,when the reforming reaction temperature is greater than 1000℃,the reaction time is greater than 10 s,and the flow ratio(molar ratio)of methane to furnace waste gas is close to 1,the thermo-chemical reforming reaction can be fully carried out.

关 键 词:玻璃窑炉 节能减排 热化学再生 节能效率 反应温度 反应时间 

分 类 号:TQ171.62[化学工程—玻璃工业]

 

参考文献:

正在载入数据...

 

二级参考文献:

正在载入数据...

 

耦合文献:

正在载入数据...

 

引证文献:

正在载入数据...

 

二级引证文献:

正在载入数据...

 

同被引文献:

正在载入数据...

 

相关期刊文献:

正在载入数据...

相关的主题
相关的作者对象
相关的机构对象