玻璃窑炉余热发电系统节能整改分析
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1.中钢设备有限公司, 北京 100080 ; 2.河南安彩高科股份有限公司, 河南 安阳 455000 ;3.北京科技大学, 北京 100083

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刘旭(1984—),男,河南项城人,硕士,工程师,主要从事低碳冶金与能源工程项目总承包管理工作。

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X75

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Energy Saving Rectification Analysis of Glass Furnace Waste-heat Power-generation System
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    摘要:

    通过分析影响玻璃窑炉余热回收系统存在的问题可知,高温烟气量、烟气温度、脱硝设施、蒸汽管线长度、余热锅炉的蒸汽产量、外供蒸汽消耗等都是影响余热发电机组发电量的因素。根据分析结果制定了针对性的节能整改措施,如对窑炉的砖烟道、钢烟道进行保温,提高烟气温度; 通过对脱硝除尘系统进行保温、封堵漏风点、减少喷氨量,降低脱硝除尘系统的温降; 更换余热锅炉的炉管,封堵漏风之处; 减少外供蒸汽消耗量等。节能措施实施后,发电量大幅度提升,发电量由原来的2.5MW/h提高至3.2MW/h,日发电量超过75MW,系统检修成本也降低。

    Abstract:

    By analyzing of the problems affecting the waste heat recovery system of glass furnace, it can be seen that the amount of high-temperature flue gas, flue gas temperature, denitration facilities, steam pipeline length, steam output of waste heat boiler, and external steam consumption were all factors affecting the power generation of waste heat generating units. According to the analysis results, targeted energy-saving rectification measures were made, such as increasing the temperature of flue gas by holding the brick flue and steel flue of the furnace,reducing the temperature drop of denitration and dust removal system by heat preservation, sealing air leakage point and reducing ammonia injection,replacing tube of waste heat boiler and sealing air leakage,reducing external steam consumption, etc. After the implementation of the energy saving measures, the power generation was greatly improved, the power generation was increased from 2.5MW/h to 3.2MW/h, the daily power generation was more than 75MW, and the system maintenance cost was also reduced.

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刘旭,高永峰,郭婕. 玻璃窑炉余热发电系统节能整改分析[J].有色冶金节能,2021,37(3):44-46.

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  • 收稿日期:2020-12-22
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  • 在线发布日期: 2025-11-27
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