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CHARACTERIZATION OF DEPOSITED ASH DURING CO-FIRING OF PEAT AND LIGNITE IN A FLUIDIZED BED COMBUSTOR

机译:在流化床燃烧室中泥炭和褐煤共射期间沉积灰的特征

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By installing a custom designed air-cooled probe in the freeboard region of a bubbling fluidized-bed combustor, the ash deposition on a heat transfer surface was investigated under different conditions including fuel types (lignite/peat), fuel blending ratios (20% to 80% on a thermal basis), air to fuel (A/F) ratios (1.4/1.6) and feedstock particle size. Co-firing lignite and peat at various blending ratios led to significant differences in the concentrations of some major inorganic compounds (e.g. SiO_2, CaO, MgO, SO_3, etc.) in the deposited ashes. Combustion of peat pellets alone caused higher ash deposition than combustion of lignite alone because of the larger contents of alkali metals, alkaline earth metals, and halogen elements (Cl and Br) combined with smaller SiO_2 and Al_2O_3 contents in the peat. A higher A/F ratio retains lower boiling point ash elements (such as alkali metals and chlorine) in the bottom ash, leading to reduced relative ash deposition rates and retarded chloride condensation in the combustion process. Combustion of a fuel with finer particle size reduces the ash deposition rate and decreases the condensation of corrosive alkali chlorides on the heat transfer surface.
机译:通过在鼓泡流化床燃烧器的流动区域安装定制设计的风冷探针,在包括燃料类型(褐煤/泥炭)的不同条件下研究了传热表面上的灰分沉积,燃料混合比(20%至散热80%),空气到燃料(A / F)比率(1.4 / 1.6)和原料粒径。在各种混合比下共同烧成褐煤和泥炭导致沉积灰烬中一些主要无机化合物(例如SiO_2,CaO,MgO,SO_3等)的显着差异。仅仅由于碱金属,碱土金属和卤素元素(Cl和Br)与泥炭中的较小SiO_2和Al_2O_3内容物更大的碱性含量,泥炭粒子的燃烧仅仅引起了褐煤的燃烧而不是褐煤的燃烧。较高的A / F比保留底部灰中的较低沸点灰分(例如碱金属和氯),导致燃烧过程中的相对灰分沉积速率降低和延迟氯化物缩合。燃料燃烧具有更细粒尺寸的燃烧降低了灰分沉积速率,并降低了在传热表面上的腐蚀性碱氯化物的冷凝。

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