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首页> 外文期刊>Smart Grid and Renewable Energy >Lowering Gasifier Tars and Particulates Using Heated Dololmite Catalyst and a Particulate Filter
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Lowering Gasifier Tars and Particulates Using Heated Dololmite Catalyst and a Particulate Filter

机译:使用加热的Dololmite催化剂和颗粒过滤器降低气化炉焦油和颗粒

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For this study, a fixed-bed, down-draft gasifier was designed to investigate the effect of a dolomite catalytic bedon tar removal. Pine pellets and wood chips (cypress) were used to produce syngas from the down-draft gasifier. For the gas conditioning, a combination of a heated dolomite (bed temperature at 850?C for catalytic cracking of tars) and a particulate filter (for particulate removal) was used. Investigation of temperature effects on dolomite activity between 650?C and 950 C bed temperatures, showed optimum catalytic efficiency at approximately 850?C. At the optimum conditions, gravimetric tar and particulate concentrations in syngas produced from pine pellets were 0.85 g/Nm3 (±0.16) and 4.75 g/Nm3 (±0.07), respectively before gas conditioning, and 0.09 g/Nm3 (±0.02) and 2.01 g/Nm3 (±0.13), respectively after gas conditioning. Syngas from wood chips contained 1.63 g/Nm3 (±0.45) and 3.84 g/Nm3 (±1.16) of tars and particulates, respectively before gas cleaning and 0.19 g/Nm3 (±0.02) and 2.27 g/Nm3 (±0.27) tars and particulates, respectively after gas conditioning. The combustible portion of the gas constituted carbon monoxide (12% - 14%), hydrogen (11% - 12%), and methane (~2%). These results suggest that syngas produced from gasification of pine pellets and wood chips in a down-draft biomass gasifier can be effectively cleaned using a heated catalyst bed and a particulate filter. However, the benefits of gas conditioning will be offset by the need to maintain a heated catalyst bed for tar cracking.
机译:对于本研究,设计了固定床,下浮式气化炉,以研究白云石催化的贝登焦油去除的效果。松木颗粒和木屑(柏树)用于从下浮式气化炉生产合成气。对于气体调节,使用了加热的白云石(床温度在850°C,以催化焦油裂解)和颗粒过滤器(用于去除颗粒)的组合。在650?C和950?C的床温之间对温度对白云石活性的影响进行的研究表明,最佳的催化效率约为850?C。在最佳条件下,在进行气体调节之前,从松油球产生的合成气中的重量焦油和颗粒物浓度分别为0.85 g / Nm3(±0.16)和4.75 g / Nm3(±0.07),以及0.09 g / Nm3(±0.02)和气体调节后分别为2.01 g / Nm3(±0.13)。来自木片的合成气在进行气体清洁之前分别含有1.63 g / Nm3(±0.45)和3.84 g / Nm3(±1.16)的焦油和微粒以及0.19 g / Nm3(±0.02)和2.27 g / Nm3(±0.27)的焦油气体调节后,分别将其与颗粒物混合。气体的可燃部分包括一氧化碳(12%-14%),氢气(11%-12%)和甲烷(〜2%)。这些结果表明,通过使用向下加热的生物质气化炉中的松木颗粒和木屑气化产生的合成气可以使用加热的催化剂床和颗粒过滤器进行有效清洁。但是,气体调节的好处将被保持焦油裂解所需的加热催化剂床所抵消。

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