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Regeneration of cellulose by water addition to phosphoric acid/cellulose mixture

机译:通过添加水至磷酸/纤维素混合物中来再生纤维素

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摘要

In the last years, phosphoric acid has been increasingly considered as a simple and economic solvent for cellulose pretreatment before its degradation to glucose. Cellulose swells in 71–80% phosphoric acid solutions, whereas at higher H3PO4 concentrations dissolution appears to occur. In addition, it is reported that regenerated cellulose is more easily fermentable to bioethanol.udThe aim of the present study was to elucidate the mechanism for cellulose regeneration following treatment with phosphoric acid at room temperature.udCPMAS 13C NMR spectra revealed a downfield shift of the 13C NMR signals from the regenerated cellulose as compared to the crystalline one. CPMAS 31P NMR spectroscopy showed presence of organic phosphate in the regenerated cellulose. These results suggested that cellulose regeneration consisted in the precipitation of a phosphorylated polymer. Fast field cycling NMR relaxometry confirmed such hypothesis. In fact, the correlation time of water saturated crystalline cellulose was shorter than that measured for the water saturated regenerated cellulose. The phosphate groups bound to the regenerated cellulose surface allow restriction of water mobility, thereby producing longer correlation times.udFinally turbidimetric analyses revealed that the mechanism of regeneration consisted in a first reduction of the colloidal cellulose size followed by aggregation, colloidal size increment and flocculation.udThis study is of paramount importance to understand how phosphoric acid interact with cellulose in order to address its possible uses in biomass transformation for bioenergy purposes.
机译:在过去的几年中,磷酸已越来越多地被认为是纤维素预处理降解为葡萄糖之前的一种简单经济的溶剂。纤维素在71-80%的磷酸溶液中溶胀,而在较高的H3PO4浓度下,似乎会发生溶解。此外,据报道再生纤维素更容易发酵为生物乙醇。与结晶纤维素相比,来自再生纤维素的13 C NMR信号。 CPMAS 31P NMR光谱显示,再生纤维素中存在有机磷酸盐。这些结果表明,纤维素再生在于磷酸化聚合物的沉淀。快速场循环NMR弛豫测定法证实了这种假设。实际上,水饱和的结晶纤维素的相关时间短于水饱和的再生纤维素的相关时间。最终的比浊分析表明,再生的机理在于首先降低胶体纤维素的尺寸,然后进行聚集,胶体尺寸的增加和絮凝这项研究对于了解磷酸如何与纤维素相互作用以解决其在生物质转化中为生物能源目的的可能用途至关重要。

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