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Fabrication of Biomass-Derived Carbon Aerogels with High Adsorption of Oils and Organic Solvents: Effect of Hydrothermal and Post-Pyrolysis Processes

机译:油脂和有机溶剂的高吸附性的生物质碳气凝胶的制备:水热和热解过程的影响

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摘要

Biomass is the most plentiful and well-utilized renewable carbon resource on the earth. Direct conversion of biomass to carbon aerogel provides a promising approach to develop adsorbent materials. In the present work, the effect of presence of water during hydrothermal treatment and holding temperature during post-pyrolysis process have been investigated for the preparation of carbon aerogels (CAs) using eggplant as raw material. The results showed that the addition of water during hydrothermal treatment was advantageous for the preparation of CA samples with higher surface area and stronger hydrophobicity, resulting in superior adsorption capacities of CAs for both oil and organic solvents compared with that fabricated without the presence of water. The optimized carbon aerogel possessed higher specific surface of 249 m2·g−1 and exhibited excellent hydrophobicity with a water contact angle of 133°. The adsorption capacities of carbon aerogel for oils and organic solvents could reach 35–45 times its own weight. In addition, the adsorbed oil and organic solvents could be recovered by distillation, and the regenerated carbon aerogels samples exhibited the stable performance and outstanding reusability. Therefore, the carbon aerogel has great potential in application of oil recovery and environmental protection.
机译:生物质是地球上最丰富,利用最充分的可再生碳资源。将生物质直接转化为碳气凝胶提供了开发吸附材料的有前途的方法。在目前的工作中,已经研究了以茄子为原料制备碳气凝胶(CAs)的过程,在水热处理过程中水的存在和后热解过程中保持温度的影响。结果表明,在水热处理过程中添加水有利于制备具有更大表面积和更强疏水性的CA样品,与不存在水的情况相比,CA对油和有机溶剂的吸附能力更高。优化后的碳气凝胶具有较高的比表面积249 m 2 ·g -1 ,并具有优异的疏水性,与水的接触角为133°。碳气凝胶对油和有机溶剂的吸附能力可以达到其自重的35–45倍。此外,吸附的油和有机溶剂可通过蒸馏回收,再生的碳气凝胶样品表现出稳定的性能和出色的可重复使用性。因此,碳气凝胶在采油和环境保护方面具有巨大的潜力。

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