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Amending the Structure of Renewable Carbon from Biorefinery Waste-Streams for Energy Storage Applications

机译:修改用于能源存储应用的生物炼制厂废水中可再生碳的结构

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摘要

Biorefineries produce impure sugar waste streams that are being underutilized. By converting this waste to a profitable by-product, biorefineries could be safeguarded against low oil prices. We demonstrate controlled production of useful carbon materials from the waste concentrate via hydrothermal synthesis and carbonization. We devise a pathway to producing tunable, porous spherical carbon materials by modeling the gross structure formation and developing an understanding of the pore formation mechanism utilizing simple reaction principles. Compared to a simple hydrothermal synthesis from sugar concentrate, emulsion-based synthesis results in hollow spheres with abundant microporosity. In contrast, conventional hydrothermal synthesis produces solid beads with micro and mesoporosity. All the carbonaceous materials show promise in energy storage application. Using our reaction pathway, perfect hollow activated carbon spheres can be produced from waste sugar in liquid effluence of biomass steam pretreatment units. The renewable carbon product demonstrated a desirable surface area of 872 m2/g and capacitance of up to 109 F/g when made into an electric double layer supercapacitor. The capacitor exhibited nearly ideal capacitive behavior with 90.5% capacitance retention after 5000 cycles.
机译:生物精炼厂会产生不纯的糖废物流,这些糖流没有得到充分利用。通过将这些废物转化为有利可图的副产品,可以保护生物炼油厂免受低油价的影响。我们证明了通过水热合成和碳化从废浓缩物中控制生产有用的碳材料。我们通过建立总体结构模型并利用简单的反应原理发展对孔形成机理的了解,设计出一条生产可调的,多孔的球形碳材料的途径。与由糖浓缩物进行简单的水热合成相比,基于乳液的合成导致空心球具有丰富的微孔性。相反,常规的水热合成产生具有微孔和中孔的固体珠。所有含碳材料在储能应用中都显示出了希望。使用我们的反应途径,可以在生物质蒸汽预处理单元的液体流出物中由废糖生产出完美的空心活性炭球。当制成双电层超级电容器时,可再生碳产品的理想表面积为872 m 2 / g,电容最高为109 F / g。电容器在5000次循环后表现出近乎理想的电容性能,电容保持率为90.5%。

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