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Characterization of the solid products from hydrothermal liquefaction of waste feedstocks from food and agricultural industries

机译:食品和农业产业中废料水热液化固体产物的特征

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This study characterized the hydro-char by-product from hydrothermal liquefaction (HTL) of waste feedstocks at two operating temperatures (250 and 300 degrees C) and times (5 and 60 min). The feedstocks were a selection of wastes from: dairy industries (manure and yogurt whey), municipal wastewater treatment plant, dining halls, fruit and alcohol manufacturing and olive oil production. The hydro-char was characterized for mass yield, elemental composition, and Fourier Transform Infrared Spectroscopy (FTIR) coupled with principal component analysis (PCA). The goal was to understand the chemistry and functionalities of the hydro-char, to find alternative niches of applications, and to understand chemical mechanisms undergoing HTL. Results showed that hydro-char can be divided into two different groups regarding mass yield and energy content, based on the pH of the selected feedstocks. In addition, the FTIR-PCA approach was successful to determine specific chemical differences of hydro-char from acid and alkaline feedstocks at different reaction condition.
机译:该研究表征了在两个工作温度(250和300℃)和时间(5和60分钟)的废料原料中的水热液化(HTL)的水热液化(HTL)的副产品。原料是来自:乳制品(粪便和酸奶乳清),市污水处理厂,餐厅,水果和酒精制造和橄榄油生产的垃圾渣。氢化物的特征在于与主要成分分析(PCA)相结合的质量产率,元素组合物和傅立叶变换红外光谱(FTIR)。目标是了解水力 - 焦炭的化学和功能,寻找替代申请的替代性,并了解接受HTL的化学机制。结果表明,基于所选原料的pH,可以将氢焦炭分为关于质量产量和能量含量的两组不同的基团。此外,FTIR-PCA方法是成功的,以确定在不同反应条件下从酸和碱性原料中的水氨酸和碱性原料的特定化学差异。

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