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Structural characterization of cellulose nanofibers isolated from spent coffee grounds and their composite films with poly(vinyl alcohol): a new non-wood source

机译:用聚(乙烯醇)分离的纤维素纳米纤维纤维素纳米纤维的结构表征:新型非木材源

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The waste valorization of spent coffee grounds (SCGs), which are obtainable in large amounts worldwide for new non-wood source has been considered. Cellulose nanofibers derived from SCGs have been successfully produced by 2,2,6,6-tetramethylpiperidine-1-oxyl radical (TEMPO)-mediated oxidation of SCGs containing 10% cellulose (dry weight). The TEMPO-oxidized cellulose nanofibers (TOCNFs) are 20-35 nm wide observed by scanning electron microscopy. X-ray diffraction showed that TOCNFs are present in a cellulose crystal form I. The average crystal size corresponding to a fiber width was 4.2 nm, as determined from the diffraction pattern. Solid-state NMR shows that hemicellulose and lignin were mostly removed from SCGs via TEMPO-mediated oxidation, but small amounts of triacylglycerols remained in the TOCNFs. Thermogravimetric analysis of TOCNFs showed two major steps of thermal decomposition at 251 degrees C and 267 degrees C, which were higher than the coffee roasting temperature range. Furthermore, in order to investigate an interaction of these TOCNFs with a polymer, a SCG-derived TOCNF composite film with poly(vinyl alcohol) as a water-soluble polymer was prepared. We found the TOCNFs were successfully integrated into the polymer. The outcome of this study indicated that SCGs could be used as well as wood as an alternative source for producing TOCNFs, thus contributing to the development of sustainable green chemistry.
机译:已经考虑了废咖啡渣(SCG)的废物储存,其在全球范围内可用于新的非木材源。通过2,2,6,6-四甲基哌啶-1-氧基自由基(Tempo)介导的SCG的SCG氧化成功地制备了含有SCG的纤维素纳米纤维,含有10%纤维素(干重)。通过扫描电子显微镜观察速度氧化纤维素纳米纤维(TOCNF)是20-35nm宽的。 X射线衍射显示TOCNF以纤维素晶体I存在。与纤维宽度相对应的平均晶体尺寸为4.2nm,从衍射图案中确定。固态NMR表明,通过Tempo介导的氧化大多数从SCG中除去半纤维素,但少量三酰基甘油残留在TOCNF中。 ToCNF的热重分析显示251摄氏度的热分解的两个主要步骤,267℃高于咖啡焙烧温度范围。此外,为了研究这些TOCNF与聚合物的相互作用,制备具有聚(乙烯醇)作为水溶性聚合物的SCG衍生的TOCNF复合膜。我们发现TOCNFS成功集成到聚合物中。本研究的结果表明,可以使用SCG以及木材作为生产TOCNF的替代来源,从而有助于发展可持续的绿色化学。

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