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A New and Environmentally Friendly Route for Preparation of Carbon Microspheres from Wheat Straw

机译:一种新的和环保途径,用于麦秆碳微球的制备

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The reactions were performed to synthesize carbon materials using wheat straw powder as raw material. The wheat straw powder was first hydrolyzed at the absence of a catalyst at 190°C for 1 h, then the hydrolyzate solution was used as carbon source to prepare carbon materials via hydrothermal carbonization at 180°C in the absence of a catalyst for 8 h. The influence of solid-liquid-ratio of wheat straw to water on the morphology of the product was investigated. The samples were examined by a scanning electron microscope and Fourier transform infrared spectroscopy. The results show that the product was carbon microspheres with a large number of O–H, CHO, and other functional groups, and the diameters of carbon microspheres noticeably depended on the solid-liquid ratio. When the solid-liquid ratio was 1 : 60, the diameters of carbon microspheres were in the range of 100 to 300 nm when the solid-liquid ratio was 1 : 40, carbon microspheres with larger and more uniform diameters mostly about 250 nm were obtained, and when the solid-liquid-ratio was 1 : 20, there were more larger carbon microspheres with diameters about 800 nm in the product and the surface of these carbon microspheres is smoother, whereas; the uniformity of the product deteriorates.
机译:进行反应以使用麦秸粉作为原料合成碳材料。首先在190℃下在没有催化剂的情况下在1小时内水解麦秸粉末,然后将水解液溶液用作碳源,以在180℃下在8小时内在180℃下通过水热碳化制备碳材料。研究了小麦秸秆与水对产物形态的影响。通过扫描电子显微镜和傅里叶变换红外光谱检查样品。结果表明,该产物是具有大量O-H,CHO,其他官能团的碳微球,并且碳微球的直径明显依赖于固液比。当固液比为1:60时,当固液比为1:40时,碳微球的直径在100至300nm的范围内,获得具有较大且更均匀直径大约约250nm的碳微球并且当固体液体比为1:20时,在产品中存在较大的碳微球,该直径约为800nm,这些碳微球的表面更平滑,而;产品的均匀性劣化。

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