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Development of Coating-Resistant Materials at High Temperatures for Waste-to-Energy Plant Application

  • Ankita Kumari,
  • Priyanka Sati,
  • Sudesh Kumar

摘要

Higher efficiency by the use of thermal waste recycling technologies has recently become more well known. Corrosion-resistant materials are becoming more and more in demand. To complete a challenging job avoidance boiler that burns waste and is capable of producing steam, harshly corrosive environments are important technologies that must be combined with corrosion avoidance strategies in plant design and engineering. The distinctiveness of elements influencing high-temperature corrosion and corrosion action on the waterwall and superheater tubes of waste-to-energy boilers is explained for the first time in this research. The development and application of high-temperature coatings and corrosion-resistant boiler tubing is then summarised as the present status of this. Several coating techniques, such as metal-spraying over welding, employ alloys that include corrosion-resistant components. Also, research of corrosion processes and the assessment process using a real boiler have great repeatability. Crucial for the creation of new materials. Coatings and corrosion-resistant materials are crucial technologies for waste-to-energy (WTE) plant maintenance cost reduction and control production competence growth. Super heaters that operate at high temperatures also created coatings with great toughness using ceramic and cermet materials. The significant developments and uses in WTE plants over the years are covered in this chapter, along with the mechanisms of alloy corrosion, the deterioration of spray coating layers, and potential future research areas for the development of corrosion-resistant sources and coatings. The development and demand for corrosion avoidance technology is reportedly highly influenced by the usage of appropriate materials at reasonable costs. Corrosion-resistant CRM, CRC (corrosion-resistant coatings) technology advancements have improved the performance and durability of WTE plants. One of the areas for further study is the development of software for WTE boilers that can effectively apply corrosion protection. Engineers and researchers from CRM and CRC should be able to handle the difficulties.