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Formation of bed agglomeration in a fluidized multi-waste incinerator

机译:流化多垃圾焚烧炉中床层结块的形成

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A case study was carried out to investigate the bed agglomeration observed in a fluidized bed incinerator when burning blends of three wastes (carbon soot, biosludge and fuel oil). Several instrumental approaches were employed (i.e. XRF, SEM, XRD, and ICP-AES) to identify the bed materials (fresh sand and degrader sand) and clinkers formed in the full-scale incinerator tests. Several elements (V, Al, S, Na, Fe, Ni, P, and Cl), which normally are associated with the formation of low melting point compounds, were found in the waste blends at high content levels. The clinker bridges were identified to be associated with Al, Fe, V, K, Na, S, Ni, and Si elements. The effects of temperature and blending ratio were investigated in a muffle furnace. Carbon soot is believed to be more susceptible to the clinker formation than the other two fuels. Thermodynamic multi-phase multi-component equilibrium calculations predict that the main low melting point species could be Al_2(SO_4)_3, Fe_2(SO_4)_3, Na_2SO_4, NaCl, Na_2SiO_3 and V_2O_5. This information is useful to understand the chemistry of clinker formation. Also, it helps to develop methods for the control and possible elimination of the agglomeration problem for the design fuels.
机译:进行了案例研究,以研究流化床焚烧炉中燃烧三种废物(碳烟,生物污泥和燃料油)的混合物时所产生的凝聚。采用了几种仪器方法(例如XRF,SEM,XRD和ICP-AES)来识别在大规模焚化炉测试中形成的床层材料(新鲜砂和降解砂)和熟料。在废料混合物中发现了高含量含量的几种元素(钒,铝,硫,钠,铁,镍,磷和氯),通常与低熔点化合物的形成有关。熟料桥被确定与Al,Fe,V,K,Na,S,Ni和Si元素相关。在马弗炉中研究了温度和混合比的影响。碳烟灰被认为比其他两种燃料更容易形成熟料。热力学多相多组分平衡计算表明,主要的低熔点物质可能是Al_2(SO_4)_3,Fe_2(SO_4)_3,Na_2SO_4,NaCl,Na_2SiO_3和V_2O_5。此信息对于了解熟料形成的化学过程很有用。而且,它有助于开发控制方法,并可能消除设计燃料的结块问题。

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