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Torrefaction of waste wood-based panels: More understanding from the combination of upgrading and denitrogenation properties

机译:废木制面板的烘焙:从升级和脱氮性的结合更多地了解

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As a type of special biowaste, waste wood-based panels (WWPs) have a high nitrogen content and typical biomass defect properties, which limit their clean and efficient thermal utilization. An upgrading and denitrogenation procedure prior to thermal utilization is necessary, but the relevant mechanisms and characteristics have not been clearly elucidated. Torrefaction pretreatment of three typical WWPs (plywood, fiberboard, particleboard) was conducted to investigate the evolution of carbon and nitrogen functionalities in relation to the upgrading/denitrogenation procedure. The results demonstrated that the combined upgrading/denitrogenation of WWPs was possible. Under optimal operating conditions (300 degrees C and 10 min), the denitrogenation efficiency could reach 60-70 wt% with a slight energy loss of < 30% and a high HHV (20-22 MJ/kg) of the corresponding torrefied products. The carbon functionality evolution (upgrading) was believed to be the continuous change from low-energy "-C-H/-C-O/-C=O" to high-energy "aromatic -C-C/-C=C", which was related to the reactions of lignin (demethoxylation, chain scission and polycondensation), hemicellulose (deacetylation and degradation) and cellulose (degradation). The nitrogen functionality evolution (denitrogenation) was regarded as a conversion of amide-N into more stable heterocyclic-N (pyrrolic-N and pyridinic-N) through cross-linking reactions, together with a significant release of nitrogen containing gases (NH3 and HCN).
机译:作为一种特殊的Biowaste,废木制面板(WWPS)具有高氮含量和典型的生物质缺陷性能,这限制了它们的清洁和有效的热利用。在热利用之前的升级和脱氮过程是必要的,但没有明确阐明相关机制和特性。进行三种典型的WWP(胶合板,纤维板,刨花板)的Torrefaction预处理,以研究碳和氮功能的演变与升级/脱氮程序的进化。结果表明,WWP的组合升级/脱氮是可能的。在最佳操作条件下(300摄氏度和10分钟),脱氮效率可达到60-70重量%,略微能量损失<30%和高HHV(20-22MJ / kg)相应的烘焙产品。据信碳功能进化(升级)被认为是从低能量“-CH / -CO / -C = O”的连续变化,高能量“芳族-CC / -C = C”,这与之相关木质素(去甲氧化,链裂化和缩聚),半纤维素(脱乙酰化和降解)和纤维素(降解)的反应。通过交联反应,将氮功能效应(脱氮)作为酰胺-N转化为更稳定的杂环-N(吡咯基-N和吡啶-N),与含氮气体的显着释放一起(NH3和HCN )。

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