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In situ modification of pyrolysis products of macromolecules in an analytical pyrolyser

机译:在分析型热解器中原位修饰大分子的热解产物

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An application of pyrolysis-gas chromatography/mass spectrometry (Py-GC/MS) is presented for the fast on-line testing of solid catalysts activity in upgrading pyrolysis oils and/or gases of natural and synthetic polymers. Evaluation of the chemical conversion by a catalyst is simply and quickly performed in a Py-GC/MS instrument without any modification either of the micropyrolyser or the GC inlet. The pyrolysis products evolved from the sample pass through catalyst microbeds of some mm length and the GC/MS analysis of the converted products is performed on-line. Modification of polyolefin, styrene copolymer, polyester, polyamide, brominated epoxy resin and wood pyrolysate was carried out applying sodium type zeolite and medium acidic mesoporous aluminosilicate in the microbeds. The primary pyrolysis products are converted over the microbeds due to the catalytic activity of the bed material. Intramolecular hydrogen transfer reactions promoted by Na zeolite results in the isomerisation of alkenes and alkadienes evolved by pyrolysis from polyethylene and polypropylene. These basic catalysts were found to be effective for the elimination of brominated phenols from the pyrolysate of brominated epoxy resin. Cracking of alkane and alkene oligomer products of polyolefins to light isoalkenes occur over acidic mesoporous aluminosilicate. Certain compounds with polar groups evolved from polyester, polyamide, cellulose or lignin are removed by this catalyst. Alkenylaromatic compounds are simultaneously hydrogenated and polyaromatised in pyrolysis oils of styrene copolymers over both acidic and basic aluminosilicate catalysts tested.
机译:提出了一种热解气相色谱/质谱法(Py-GC / MS)的应用,用于快速在线测试固体催化剂在提升天然和合成聚合物的热解油和/或气体中的活性。在Py-GC / MS仪器中,可以通过催化剂简单快速地评估化学转化率,而无需对微型热解器或GC入口进行任何修改。从样品中析出的热解产物通过一些毫米长的催化剂微床,在线进行转化产物的GC / MS分析。在微床中使用钠型沸石和中酸性介孔铝硅酸盐对聚烯烃,苯乙烯共聚物,聚酯,聚酰胺,溴化环氧树脂和木材热解产物进行改性。由于床材料的催化活性,初级热解产物在微床上转化。 Na沸石促进的分子内氢转移反应导致通过热解从聚乙烯和聚丙烯产生的烯烃和链二烯的异构化。发现这些碱性催化剂对于从溴化环氧树脂的热解物中消除溴化酚是有效的。聚烯烃的烷烃和烯烃低聚物产物裂化为轻质异烯烃在酸性中孔铝硅酸盐上发生。某些具有由聚酯,聚酰胺,纤维素或木质素形成的极性基团的化合物可通过该催化剂除去。在测试的酸性和碱性铝硅酸盐催化剂上,烯基芳族化合物同时在苯乙烯共聚物的热解油中氢化和多芳烃化。

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