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生物质电站锅炉高温腐蚀及防控技术综述

刘晓博 蒋旭光 刘珍 刘可亮 俞苗

热力发电2026,Vol.55Issue(6):15-27,13.
热力发电2026,Vol.55Issue(6):15-27,13.DOI:10.19666/j.rlfd.202510037

生物质电站锅炉高温腐蚀及防控技术综述

A review on the high temperature corrosion and protection technology in biomass power plant boilers

刘晓博 1蒋旭光 2刘珍 3刘可亮 3俞苗3

作者信息

  • 1. 西子清洁能源装备制造股份有限公司,浙江 杭州 310021||浙江大学能源高效清洁利用全国重点实验室,浙江 杭州 310027
  • 2. 浙江大学能源高效清洁利用全国重点实验室,浙江 杭州 310027
  • 3. 西子清洁能源装备制造股份有限公司,浙江 杭州 310021
  • 折叠

摘要

Abstract

[Significance]Biomass power generation plays a crucial role in China's efforts to achieve the"dual carbon"goal.The goal focuses on peaking carbon dioxide emissions and reaching carbon neutrality within a predefined timeline.However,high chlorine and alkali metal contents are naturally present in biomass fuels.Due to this characteristic,biomass boilers are prone to severe high-temperature corrosion during operation.The long-term reliability and safety of boiler systems are undermined by this issue.A systematic and comprehensive review of high-temperature corrosion in biomass boilers is provided in this paper.The corrosion mechanisms,influencing factors,and mitigation technologies are covered,with the aim of providing a valuable reference for both research and engineering practices.[Analysis]Firstly,the typical characteristics of high-temperature corrosion in biomass-fired boilers are outlined.On this basis,the corrosion mechanisms involving key media such as chlorine,alkali metals,and sulfur are elaborated.Subsequently,the influence of multiple critical factors on corrosion behavior is analyzed in detail.The reaction rate of corrosive processes is directly regulated by temperature.The corrosive environment is changed by flue gas composition.The formation of protective or corrosive deposits is affected by ash composition.The intrinsic corrosion resistance of boiler components is determined by material properties.Finally,a series of prevention and control technologies are summarized.These technologies have been validated through laboratory experiments or long-term engineering practice.They include fuel pretreatment(to reduce corrosive constituents),coating protection(to isolate metal surfaces from corrosive media),additive inhibition(to suppress harmful chemical reactions),and external fluidized beds(to optimize combustion and corrosion conditions).The unique application features,advantages,limitations and economic efficiency of each technology are also discussed.[Prospect]Future research can be deepened from three key aspects.First,advanced materials science should be integrated to elucidate the microscopic mechanisms of multi-medium coupled corrosion.Interface reactions and damage evolution processes at the atomic and molecular levels can be uncovered.Second,efforts should be intensified to develop novel high-performance protective materials.These materials should be endowed with exceptional high-temperature stability,corrosion resistance and mechanical strength.The harsh operating environments of biomass boilers must be withstood by them.Third,an integrated and collaborative control strategy should be established.This strategy is synergistically combined with fuel pretreatment,scientific additive selection,optimized operational parameters,and advanced material protection.Full-cycle,multi-dimensional corrosion control is the ultimate goal to be achieved.Through the synergistic innovation of mechanism research,advanced material development and systematic prevention-and-control technologies,it is expected to provide essential support for the safe,efficient,and low-cost operation of biomass boilers.

关键词

生物质锅炉/高温腐蚀/腐蚀机理/防控技术

Key words

biomass boiler/high-temperature corrosion/corrosion mechanism/protection technology

引用本文复制引用

刘晓博,蒋旭光,刘珍,刘可亮,俞苗..生物质电站锅炉高温腐蚀及防控技术综述[J].热力发电,2026,55(6):15-27,13.

基金项目

国家重点研发计划项目(2018YFC1901302) (2018YFC1901302)

内蒙古自治区"揭榜挂帅"项目(2024JBGS0026) National Key Research and Development Program(2018YFC1901302) (2024JBGS0026)

Inner Mongolia Autonomous Region"Unveiling the List and Appointing Leaders"Project(2024JBGS0026) (2024JBGS0026)

热力发电

1002-3364

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