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A comprehensive investigation of hydrothermal carbonization: Energy potential of hydrochar derived from Virginia mallow

机译:水热碳化的综合调查:弗吉尼亚乌洛尼亚含量的氨基氨基能源潜力

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In this study, the effects of temperature, residence time and biomass to water ratio on hydrothermal carbonization of Virginia mallow were conducted. The main goal of this research was to investigate hydrochars derived from Virginia mallow in order to assess their fuel properties. Proximate, ultimate and high heating value analyses were used to establish the chemical energy content of raw biomass and hydrochars. TGA, SEM, BET and FTIR were performed to discuss the combustion characteristics and changes in the surface of the material. Temperature was found to be the main factor influencing the conversion of Virginia mallow during the HTC process. It was confirmed by the properties of hydrochar derived at 220 degrees C for 5 min which was as carbonaceous (51.8% carbon content) and reactive as that obtained at 200 degrees C for 60 min (52.5% carbon content). A sample pretreated at 200 degrees C for 90 min had the highest fixed carbon value (16.29%) when compared to raw feedstock (5.63%). In the resulting reduction of mass found in the hydrochar, an increase in the energy densification ratio as well as better combustion stability were also observed. Detailed analysis of the Results confirmed that the HTC is a promising method for producing energy-dense solid biofuel. (C) 2020 The Authors. Published by Elsevier Ltd.
机译:在该研究中,进行了温度,停留时间和生物质对弗吉尼亚鞘水热碳化的水比的影响。该研究的主要目标是调查源自弗吉尼亚锦葵的源泉,以评估其燃料特性。近似,最终和高加热值分析用于建立原料生物量和氢港的化学能含量。进行TGA,SEM,BET和FTIR以讨论材料表面的燃烧特性和变化。发现温度是影响HTC过程中弗吉尼亚锦葵的转化的主要因素。通过在220℃下衍生的水质的性质确认5分钟,其作为碳质(51.8%碳含量)和在200℃下获得的反应性60分钟(52.5%碳含量)。与原料原料(5.63%)相比,在200℃下预处理90℃的样品最高的固定碳值(16.29%)。在氢乙酰中发现的物质的降低中,还观察到能量致密化比的增加以及更好的燃烧稳定性。对结果的详细分析证实,HTC是生产能量密集的固体生物燃料的有希望的方法。 (c)2020作者。 elsevier有限公司出版

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