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首页> 外文期刊>Energy Conversion & Management >Simultaneous production of syngas and magnetic biochar via pyrolysis of paper mill sludge using CO2 as reaction medium
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Simultaneous production of syngas and magnetic biochar via pyrolysis of paper mill sludge using CO2 as reaction medium

机译:以CO2为反应介质通过造纸污泥的热解同时生产合成气和磁性生物炭

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Pyrolysis of paper mill sludge (PMS) was conducted to produce syngas (H-2 and CO) and fabricate magnetic biochar (PMS biochar) for use as an adsorbent for As(V). The enhanced generation of CO was observed in the CO2 atmosphere due to reactions triggered by CO2. Particularly, the generation of syngas from pyrolysis of PMS in CO2 (9.6 mol% at 720 degrees C) was superior to the cases of pyrolysis of acid-washed PMS (i.e., minerals-eliminated PMS) in CO2 (2.9 mol% at 720 degrees C), which evidences catalytic effects attributed by Fe and Ca species contained in PMS. Based on the results of X-ray diffraction (XRD), pyrolysis of PMS in CO2 led to the conversion of Fe species into magnetite (Fe3O4) solid phase that imparted the magnetic property to the biochar (saturation magnetization: 28.4 emu g(-1)). The PMS biochar exhibited high As(V) adsorption capacity of 34.1 mg g(-1) in a given condition, which could be attributed to the great adsorption affinity of Fe3O4/CaCO3 mixture toward As(V). The integrated approach for the utilization of PMS could satisfy growing demand for renewable energy and environmental sustainability. (C) 2017 Elsevier Ltd. All rights reserved.
机译:进行了造纸厂污泥(PMS)的热解以产生合成气(H-2和CO),并制造了磁性生物炭(PMS生物炭)用作As(V)的吸附剂。由于CO2触发的反应,在CO2气氛中观察到了CO生成量的增加。特别是,在CO2中由PMS热解产生的合成气(在720摄氏度下为9.6 mol%)优于在CO2中酸洗过的PMS(即矿物消除的PMS)的热解(在720度下为2.9 mol%) C),这证明了PMS中所含的Fe和Ca具有催化作用。根据X射线衍射(XRD)的结果,PMS在CO2中的热解导致Fe物种转化为磁铁矿(Fe3O4)固相,从而赋予生物炭磁性(饱和磁化强度:28.4 emu g(-1) ))。在给定条件下,PMS生物炭具有34.1 mg g(-1)的高As(V)吸附能力,这可能归因于Fe3O4 / CaCO3混合物对As(V)的巨大吸附亲和力。利用PMS的综合方法可以满足对可再生能源和环境可持续性不断增长的需求。 (C)2017 Elsevier Ltd.保留所有权利。

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