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Carbon dioxide-assisted fabrication of highly uniform submicron-sized colloidal carbon spheres via hydrothermal carbonization using soft drink

机译:使用软饮料通过水热碳化进行二氧化碳辅助的高度均匀的亚微米级胶体碳球的制备

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摘要

An eco-fxiendly and economical method for the formation of highly uniform-sized carbon spheres by hydro-thermal dehydration/condensation of a commercial carbonated beverage at 200 °C is reported. Until now, the effect of an extra pressure which is built up by dissolved CO2 on the generation of carbon spheres under hydrothermal condition less than 250 °C hasn't been demonstrated yet. In general, a complicated reactor is required to put overpressure on the autoclave vessel by adding inert gases, whereas the manipulation of a carbonated beverage including fructose and glucose molecules as precursors is favorable to design a simple experimental set-up and to investigate the effect of extra pressure on the growth of carbon spheres under mild hydrothermal condition. Herein, CO2 dissolved in the beverage accelerates the dehydration kinetics of the dissolved sugar molecules leading to production of homogeneous carbon spheres having a diameter less than 850 nm. In addition, the rough surface of these carbon spheres likely results from continuous Ostwald ripening of constituent microscopic carbon-containing spheres that are formed by subsequent polymerization of intermediate hydroxymethyl-furfural molecules.
机译:据报道,通过在200°C下对商用碳酸饮料进行水热脱水/冷凝来形成高度均一尺寸的碳球的一种环保,经济的方法。到目前为止,尚未证明在低于250°C的水热条件下由溶解的CO2产生的额外压力对碳球生成的影响。通常,需要一个复杂的反应器以通过添加惰性气体对高压釜容器施加超压,而对以果糖和葡萄糖分子为前体的碳酸饮料的操作则有利于设计简单的实验装置并研究其效果。在温和的热液条件下,碳球的生长受到额外压力。在此,溶解在饮料中的CO 2加速了溶解的糖分子的脱水动力学,导致产生直径小于850nm的均匀碳球。另外,这些碳球的粗糙表面可能是由组成的微观含碳球的连续奥斯特瓦尔德熟化造成的,该微观含碳球是由中间羟甲基糠醛分子的后续聚合反应形成的。

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