...
首页> 外文期刊>Waste Disposal & Sustainable Energy >Energy recovery of solid waste disposal in Russia, State of the Art and operation experience
【24h】

Energy recovery of solid waste disposal in Russia, State of the Art and operation experience

机译:俄罗斯的固体废物处置的能源回收,艺术和运营经验

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Abstract For Russia, there is no alternative way of a civilized solution to the problem of municipal solid wastes (MSW): through combustion (energy utilization) to complex processing. The government of the Russian Federation in 2017 adopted some decisions aimed at thermal processing of MSW. The order defines the construction of renewable energy facilities on the basis of MSW with a total electric capacity of 280?MW in Moscow region and one object with an electric capacity of 55?MW in the Republic of Tatarstan. In Russia, only three plants where the energy potential of MSW is converted into electricity were built. The results of the?operation experience of fluidized bed furnaces for MSW incineration at Rudnevo plant in Russia are done. The main problems were connected with ash properties, deposit formation, and corrosion of superheater tubes. Also, the data of mathematical modeling of dynamic behavior near gas burners, chemical composition and material balance of solids, and the influence of secondary air injection on NOx formation are given. A special test rig was designed for the?investigation of the corrosion mechanism. Also, the main corrosion factors (temperature of the tube surface, rates of O2, HCl, SO2, and H2O in flue gas, contains chloride and alkali metals in deposits) were found during the tests. Experience of energy recovery from waste incineration of pulp and paper mill plants is presented. Considerable attention is paid to improving the efficiency of waste incineration and bed particle agglomeration. Special experiments were carried out to optimize the bed drain flow rate. The influence of secondary air supply improvement on mixing with the main flow and boiler efficiency is given. Semi-empirical three-zone method of engineering heat calculations for fluidized bed furnaces of biomass boilers was proposed to predict both the value of outlet furnace temperature and the value of fluidized bed temperature. The method based on empirical values and relationships of the share of heat release in fluidized bed zone.
机译:对于俄罗斯来说,摘要是解决市政固体废物(MSW)问题的文明解决方案:通过燃烧(能源利用)到复杂的处理。俄罗斯联邦政府在2017年采取了一些针对MSW热处理的决定。该命令根据MSW在莫斯科地区的总电力容量为280?MW,定义了可再生能源设施的构建,塔塔斯坦共和国的电力为55兆瓦的物体。在俄罗斯,仅建造了MSW能源潜力转换为电力的三个植物。俄罗斯Rudnevo Plant的MSW焚化床的运营经验的结果已完成。主要问题与灰分特性,沉积物形成和过热管的腐蚀有关。同样,给出了气体燃烧器附近动态行为,化学成分和固体材料平衡以及次级空气注射对NOX形成的影响的数据。设计了一个特殊的测试钻机,用于研究腐蚀机制。同样,在测试期间发现了主要的腐蚀因子(烟气中的O2,HCl,SO2和H2O的温度,O2,HCl,SO2和H2O的速率含有氯化物和碱金属)。提出了从纸浆和造纸厂植物的废物焚化中恢复能量的经验。非常关注提高废物焚烧和床颗粒聚集的效率。进行了特殊的实验以优化床漏流速。给出了次级空气供应改善对与主流量和锅炉效率混合的影响。提出了针对生物质锅炉的流化床炉进行工程热计算的半经验三区方法,以预测出口炉温度的值和流化床温度的值。该方法基于经验值和流化床区域中热量释放的关系的关系。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号