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Hydrothermal carbonization of loblolly pine: reaction chemistry and water balance

机译:火炬松的水热碳化:反应化学与水平衡

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Hydrothermal carbonization (HTC) is a thermochemical process to convert lignocellulosic biomass into lignite-like HTC biochar. In this study, chemical reactions occurring during a relatively short HTC reaction time are discussed (5-30 min), and reaction mechanisms are examined at temperatures between 200 and 260 °C. Solid HTC biochar products were analyzed by attenuated total reflectance (ATR)/Fourier transform infrared spectroscopy (FTIR), elemental analysis, and gas chromatography-mass spectrometry (GC-MS), while liquid products were analyzed with GC-MS and ion chromatography (IC) to predict the reaction schemes. HTC reactions for whole biomass (loblolly pine) were proposed in the context of HTC reactions for individual biomass fractions. Hydrolysis, dehydration, and decarboxylation reactions are the major reactions of HTC, though condensation, polymerization, and aromatization also occur. An experimental procedure was developed to determine the net water production, a balance between consumption by hydrolysis reactions and production by dehydration reactions. Net production of water is evaluated. At lower HTC temperature (200 °C), water was consumed. However, at higher HTC temperatures, water was produced and the production increaseswith increasing reaction time.
机译:水热碳化(HTC)是将木质纤维素生物质转化为褐煤样HTC生物炭的热化学过程。在这项研究中,讨论了在相对较短的HTC反应时间内发生的化学反应(5-30分钟),并在200至260°C的温度下检查了反应机理。固体HTC生物炭产品通过衰减全反射(ATR)/傅立叶变换红外光谱(FTIR),元素分析和气相色谱-质谱(GC-MS)进行分析,而液体产品通过GC-MS和离子色谱法进行分析( IC)来预测反应方案。在针对单个生物质部分的HTC反应的背景下,提出了针对整个生物质(多叶松)的HTC反应。水解,脱水和脱羧反应是HTC的主要反应,尽管也会发生缩合,聚合和芳构化。开发了一种实验程序以确定净水产量,水解反应的消耗量与脱水反应的生产量之间的平衡。评估净水产量。在较低的HTC温度(200°C)下,水被消耗了。但是,在较高的HTC温度下,会产生水,并且产量随着反应时间的增加而增加。

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