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Product Identification and Distribution from Hydrothermal Conversion of Walnut Shells

机译:核桃壳水热转化的产物鉴定与分布

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摘要

Agricultural byproducts are a major source of biomass for biofuel/bioenergy conversion. The southeastern U.S. produces a great amount of nutshells from pecan, walnut, and peanut processing. In this study, walnut shells were selected as a representative agricultural byproduct, and a hydrothermal process catalyzed by both bases and acid was applied to convert the walnut shells into liquefied organic compounds. Conversion rate, major organic products, and their distribution were measured under different concentration of bases (0-1.0 M) and reaction temperature (200-300℃, corresponding to a pressure range of 1.5-8.6 MPa). An increase in base concentration (KOH and Na_2CO_3 ) or reaction temperature generally resulted in higher conversation rates and was more favorable to the generation of organic compounds of lower molecular weights. HCl as a catalyst promoted the generation of levulinic acid, but the conversion rates were very low. Major compounds from hydrothermal process catalyzed by bases were phenol derivatives. Small amounts of cyclopenten derivatives and C12-18 fatty acids were detected. The effects of reaction conditions on the distribution of products were characterized by the relative abundance of each compound group categorized based on the GC retention time.
机译:农业副产品是用于生物燃料/生物能源转化的生物质的主要来源。美国东南部通过山核桃,核桃和花生加工生产大量坚果壳。在这项研究中,选择核桃壳作为代表性的农业副产品,并利用碱和酸共同催化的水热过程将核桃壳转化为液化有机化合物。在不同浓度的碱(0-1.0 M)和反应温度(200-300℃,对应于1.5-8.6 MPa的压力)下测量转化率,主要有机产物及其分布。碱浓度(KOH和Na_2CO_3)或反应温度的升高通常会导致较高的转化率,并且更有利于生成较低分子量的有机化合物。 HCl作为催化剂促进了乙酰丙酸的产生,但是转化率非常低。碱催化水热过程的主要化合物是苯酚衍生物。检测到少量的环戊烯衍生物和C12-18脂肪酸。反应条件对产物分布的影响通过根据GC保留时间分类的每种化合物的相对丰度来表征。

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