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Development and application of a continuous fast microwave pyrolysis system for sewage sludge utilization

机译:污水污泥利用连续快速微波热解系统的开发与应用

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A continuous fast microwave-assisted pyrolysis system was designed, fabricated, and tested with sewage sludge. The system is equipped with continuous biomass feeding, mixing of biomass and microwave absorbent, and separated catalyst upgrading. The effect of the sludge pyrolysis temperature (450, 500, 550, and 600 degrees C) on the products yield, distribution and potentially energy recovery were investigated. The physical, chemical, and energetic properties of the raw sewage sludge and bio-oil, char and gas products obtained were analyzed using elemental analyzer, GC-MS, Micro-GC, SEM and ICP-OES. While the maximum bio-oil yield of 41.39 wt% was obtained at pyrolysis temperature of 550 degrees C, the optimal pyrolysis temperature for maximum overall energy recovery was 500 degrees C. The absence of carrier gas in the process may be responsible for the high HHV of gas products. This work could provide technical support for microwave-assisted system scale-up and sewage sludge utilization.
机译:设计,制造,用污水污泥设计了连续的快速微波辅助热解系统。该系统配备了连续的生物质进料,生物质和微波吸收剂的混合,以及分离的催化剂升级。研究了污泥热解温度(450,500,550和600℃)对产物产量,分布和潜在能量回收的影响。使用元素分析仪,GC-MS,Micro-GC,SEM和ICP-OES分析了原始污水污泥和生物油,炭和燃气产品的物理,化学和能量性质。在550℃的热解温度下获得41.39wt%的最大生物油产率,而最大总能量回收的最佳热解温度为500℃。该过程中没有载气可能对高HHV负责天然气产品。这项工作可以为微波辅助系统扩大和污水污泥利用提供技术支持。

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