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Pyrolysis of wood – PVC mixtures. Formation of chloromethane from lignocellulosic materials in the presence of PVC

机译:木材的热解-PVC混合物。在PVC存在下由木质纤维素材料形成氯甲烷

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摘要

udThermal decomposition of polyvinylchloride (PVC) – wood and wood component mixtures were examined under slow and fast heating by pyrolysis-gas chromatography/mass spectrometry (Py-GC/MS) and thermogravimetry/mass spectrometry(TG/MS) techniques in order to clarify the chemical interaction of biomass materials and PVC during thermal decomposition. A hardwood and a softwood (beech and pine), their lignin and two types of cellulose (Avicel and Whatman) were chosen as natural polymer components. Comparing the gaseous and liquid pyrolysis products of pure samples to those of mixtures it was found that considerably lower amount of several reactive compounds have been produced when the biomass sample was mixed with PVC. On the other hand significant amount of chloromethane appeared in the pyrolysate of wood and lignin samples mixed with PVC under fast and slow pyrolysis conditions as well, but only in traces of chlorinated organic compounds were detected from cellulose mixtures. It was concluded that the methoxy groups at phenolic rings in lignin are the methyl source of chloromethane formation, and this reaction consumed most of the HCl evolved from PVC. ud
机译:ud通过热解-气相色谱/质谱(Py-GC / MS)和热重/质谱(TG / MS)技术在缓慢和快速加热下检查聚氯乙烯(PVC)–木材和木材成分混合物的热分解,以便阐明热分解过程中生物质材料和PVC的化学相互作用。选择了硬木和软木(山毛榉和松木),木质素和两种类型的纤维素(Avicel和Whatman)作为天然聚合物成分。将纯净样品的气态和液态热解产物与混合物的气态和液态热解产物进行比较,发现当将生物质样品与PVC混合时,产生的反应活性化合物的量要低得多。另一方面,在快速和缓慢热解条件下,与PVC混合的木材和木质素样品的热解产物中也出现大量的氯甲烷,但仅从纤维素混合物中检测到痕量的氯化有机化合物。可以得出结论,木质素中酚环上的甲氧基是氯甲烷形成的甲基来源,该反应消耗了大部分PVC产生的HCl。 ud

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