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首页> 外文期刊>Green chemistry >Thermocatalytic depolymerization of kraft lignin to guaiacols using HZSM-5 in alkaline water-THF co-solvent: a realistic approach
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Thermocatalytic depolymerization of kraft lignin to guaiacols using HZSM-5 in alkaline water-THF co-solvent: a realistic approach

机译:使用HZSM-5在碱性水THF共溶剂中使用HZSM-5的热催化剂对愈菌酚的解聚:一种现实方法

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Lignin is recognized as a renewable and rich source of aromatics, which could be an alternative to fossil fuel-based petrochemicals. However, the development of an efficient catalyst and industrially scalable process for lignin depolymerization remains a challenge. The present work is therefore dedicated towards a one-pot approach for depolymerization of commercial kraft lignin in a batch reactor with higher loading using the water-THF solvent mixture over the HZSM-5 and NaOH catalytic system. Process parameters such as time, temperature, lignin-to-solvent (w/v), water-to-THF (v/v), NaOH-to-lignin (w/w), catalyst-to-lignin (w/w), and Si/Al mole ratios of HZSM5 were chosen carefully and optimized using statistical analysis - response surface methodology (RSM). A significant yield of 61% for a particular single ring aromatic compound (i.e. guaiacols) was obtained under the optimized reaction conditions: reaction time = 2 h, temperature = 533 K, lignin-to-solvent ratio = 0.060 (1 : 16.6), water-to-THF ratio = 0.86 : 1, catalyst-to-lignin ratio = 1 : 6 (0.16), NaOH-to-lignin ratio = 0.1 and Si/Al ratio = 280. Around 77% of lignin was selectively converted to guaiacols (79%) with minimal char formation (7.7%). The Hansen solubility parameter and RSM studies indicate that the obtained results were significantly related to the solubility of lignin and guaiacol at different water-THF ratios. FT-IR and H-1-NMR studies were also performed to correlate the process outcome with the presence of functional groups in identified EtOAc soluble products. A plausible mechanism for catalytic depolymerization of lignin has been proposed considering the product distribution obtained under varying process parameters.
机译:木质素被认为是可再生和丰富的芳烃来源,这可能是化石燃料的石化石化的替代品。然而,为木质素解解化的有效催化剂和工业上可扩展方法的发展仍然是一个挑战。因此,目前的作品旨在朝着使用水-THF溶剂混合物在HZSM-5和NaOH催化系统上使用较高负载的分批反应器中商用牛皮油的批量化的单罐方法。工艺参数如时间,温度,木质素 - 溶剂(W / V),水至THF(v / v),NaOh - lignin(w / w),催化剂 - 木质素(w / w ),使用统计分析致响应表面方法(RSM)仔细和优化HZSM5的Si / Al摩尔比。在优化的反应条件下获得特定单环芳族化合物(即Guaiacols)的显着收率为61%:反应时间= 2小时,温度= 533k,木质素 - 溶剂比= 0.060(1:16.6),水至THF比率= 0.86:1,催化剂至木质素比率= 1:6(0.16),NaOH - 木质素比= 0.1和Si / Al比率= 280.左右77%的木质素被选择性地转化为Guaiacols(79%)具有最小的炭状(7.7%)。 Hansen Solubility参数和RSM研究表明,所得结果与木质素和愈菌酚在不同水THF比率下的溶解性显着相关。还进行FT-IR和H-1-NMR研究以将过程结果与鉴定的EtOAc可溶品产品中的官能团相关联。考虑到在不同工艺参数下获得的产物分布,提出了一种可催化木质素催化解聚机制。

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