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Properties of biomass-derived biochars: Combined effects of operating conditions and biomass types

机译:生物质衍生的生物炭的性质:操作条件和生物质类型的综合影响

摘要

Combined effects of operating conditions including heating temperature (200-700 degrees C), time (1-8 h) and rate, and atmosphere (air-flow, air-limited and N-2) on the physicochemical properties of biochars with pine sawdust, maize straw and sugarcane bagasse as feedstocks were investigated. The results demonstrated that production temperature and atmosphere acted as the predominant factors that determined the properties of biochars. The X-ray diffraction data confirmed the occurrence of phase transition in the biomass structures at around 400 degrees C. Heating time and rate showed little effect on the functional group compositions of the biochars within 8 h, particularly under N-2 atmosphere. In addition, the molecular weights of the biochar-derived dissolved organic carbon tended to increase with increasing temperature. Feedstock type also affected the biochar properties by the compositional differences in mineral salts and cellulose/lignin in the three biomass materials. This work provides important information for optimizing procedures for biochar production with desired properties and high yield. (C) 2015 Elsevier Ltd. All rights reserved.
机译:包括加热温度(200-700摄氏度),时间(1-8小时)和加热速率以及气氛(气流,空气受限和N-2)的操作条件对松木屑生物炭的理化性质的综合影响研究了玉米秸秆和甘蔗渣作为原料。结果表明,生产温度和气氛是决定生物炭特性的主要因素。 X射线衍射数据证实了在约400℃下生物质结构中发生了相变。加热时间和速率对8小时内的生物炭的官能团组成几乎没有影响,特别是在N-2气氛下。另外,源自生物炭的溶解的有机碳的分子量倾向于随温度升高而增加。原料类型还通过三种生物质材料中矿物盐和纤维素/木质素的组成差异影响了生物炭的性能。这项工作为优化具有所需特性和高产量的生物炭生产程序提供了重要信息。 (C)2015 Elsevier Ltd.保留所有权利。

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