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Microwave Assisted Selective Hydrolysis of Polyamides from Multicomponent Carpet Waste

机译:来自多组分地毯废物的微波辅助选择性水解

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Selective hydrolysis of polyamide‐6 (PA‐6) and polyamide‐66 (PA‐66) from commercial multicomponent PA‐6/PA‐66/polypropylene (PP) carpet is demonstrated by a microwave‐assisted acid catalyzed hydrothermal process, yielding monomeric products and solid polypropylene residue. First, an effective method is established to chemically recycle neat PA‐6 and PA‐66 granules using microwave irradiation. The optimized, hydrochloric acid (HCl) catalyzed process leads to selective production of monomers, 6‐aminocaproic acid or adipic acid and hexamethylenediamine, after only 30?min. A piece of commercial carpet is then recycled using the same reaction conditions, but with the alteration of the reaction time from 1 to 6 h. The produced water‐soluble products and the remaining solid residue are carefully characterized, proving that the polyamide‐part of the carpet is selectively hydrolyzed into water‐soluble monomers and the polypropylene‐part remains as an unconverted solid that can be further used to produce recycled filaments containing the carpet residue and virgin polypropylene. The developed process opens the possibility to recycle multicomponent materials, such as carpets, through selective hydrolysis. It can also contribute to a circular economy, producing original monomers and materials ready for a new life‐cycle. A fast, efficient, and selective microwave‐assisted recycling of polyamide/polypropylene carpet waste is demonstrated. During this process, polyamide fibers are hydrolyzed back to monomers, while the polypropylene part can be collected as a solid residue. The method does not require a complicated separation step and the produced products are ready for further usage.
机译:通过微波辅助酸催化的水热法证实了来自商业多组分PA-6 / PA-66 /聚丙烯(PP)地毯的聚酰胺-6(PA-6)和聚酰胺-66(PA-66)的选择性水解,得到了单体的单体产品和固体聚丙烯残余物。首先,使用微波辐射建立有效的方法,以化学再循环纯净PA-6和PA-66颗粒。优化的盐酸(HCl)催化的方法导致选择性地生产单体,6-氨基己酸或己二酸和六亚甲基二胺,之后仅在30?min之后。然后使用相同的反应条件再循环一块商业地毯,但随着反应时间从1-6小时的改变。所生产的水溶性产物和剩余的固体残余物被仔细考虑,证明了地毯的聚酰胺部分选择性地水解成水溶性单体,聚丙烯部分保持为未转化的固体,可以进一步用于产生再循环含有地毯残余物和维生聚丙烯的长丝。开发过程通过选择性水解来打开可回收多组分材料,例如地毯。它还可以促进循环经济,生产原始单体和材料准备新的生命周期。证实了聚酰胺/聚丙烯地毯废物的快速,高效和选择性的微波辅助再循环回收。在该方法期间,聚酰胺纤维水解回单体,而聚丙烯部分可以作为固体残余物收集。该方法不需要复杂的分离步骤,并且生产的产品已准备好进一步使用。

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