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Preparation, characterization and environmental/electrochemical energy storage testing of low-cost biochar from natural chitin obtained via pyrolysis at mild conditions

机译:在温和条件下通过热解获得的天然几丁质低成本生物炭的制备,表征和环境/电化学储能测试

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Chitin (a biopolymer obtained from shellfish industry) was used as precursor for the production of biochars obtained via pyrolysis treatments performed at mild conditions (in the 290-540 degrees C range). Biochars were physicochemical characterized in order to evaluate the pyrolysis-induced effects in terms of both functional groups and material structure. Moreover, such carbonaceous materials were tested as adsorbent substrates for the removal of target molecules from aqueous environment as well as in solid-gas experiments, to measure the adsorption capacities and selectivity toward CO2. Lastly, biochars were also investigated as possible cathode materials in sustainable and low-cost electrochemical energy storage devices, such as lithium-sulphur (Li-S) batteries. Interestingly, experimental results evidenced that such chitin-derived biochars obtained via pyrolysis at mild conditions are sustainable, low-cost and easy scalable alternative materials suitable for both environmental and energetic applications. (C) 2017 Elsevier B.V. All rights reserved.
机译:几丁质(从贝类工业获得的生物聚合物)被用作生产生物炭的前体,这些炭是通过在温和的条件下(在290-540摄氏度范围内)进行热解处理而获得的。对生物炭进行了物理化学表征,以便从官能团和材料结构两个方面评估热解诱导的效应。此外,测试了这种碳质材料作为吸附基质,用于从水环境中以及在固体气体实验中去除目标分子,以测量其吸附能力和对CO2的选择性。最后,还研究了生物炭作为可持续和低成本电化学储能设备(例如锂硫(Li-S)电池)中可能的阴极材料。有趣的是,实验结果证明,在温和条件下通过热解获得的这种几丁质衍生的生物炭是可持续的,低成本的,易于扩展的替代材料,适用于环境和能源应用。 (C)2017 Elsevier B.V.保留所有权利。

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