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Upgrading of hydrothermal liquefaction biocrude from algae grown in municipal wastewater

机译:城市污水中生长的藻类对水热液化生物原油的提质

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Algae biocrude was treated with hydrogen using metal catalysts supported on activated carbon for the production of biofuel. The biocrude was produced using hydrothermal liquefaction of microalgae (Scenedesmus-dominated polyculture) grown in municipal wastewater. Four metal catalysts (platinum, ruthenium, nickel and cobalt) were tested at 350 degrees C under the presence of high pressure hydrogen, and all the experiments were conducted at a weight hourly space velocity of 0.51 g/g(cat).h. Hydrotreating with all the catalysts increased higher heating value, while reducing viscosity and total acid number (TAN) of the biocrude. For example, biocrude upgraded using platinum catalyst increased the heating value from 45.9 to 47.0 MJ/Icg and reduced the TAN from 11.56 to 0.1 mg KOH/g. In addition, the liquid produced was colorless. Furthermore, the use of ruthenium and platinum catalysts greatly enhanced the yield of hexadecane and octadecane in the hydrogen-treated liquids whereas heptadecane was less favored. Overall, hydrogen treatment of biocrude was effective in improving the quality of biocrude produced from algae grown in wastewater. The BET surface area was reduced for all the spent catalysts. An SEM-EDS analysis revealed that some liquid products and sulfur were deposited in the spent catalysts. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用负载在活性炭上的金属催化剂,用氢气处理藻类生物原油,以生产生物燃料。使用在城市废水中生长的微藻(以情景舞为主的混养)进行水热液化来生产生物原油。四种金属催化剂(铂,钌,镍和钴)在高压氢气存在下于350摄氏度下进行测试,所有实验均在时空速度为0.51 g / g(cat..h)的条件下进行。使用所有催化剂进行加氢处理可提高热值,同时降低生物原油的粘度和总酸值(TAN)。例如,使用铂催化剂升级的生物原油将热值从45.9 MJ / Icg提高到47.0 MJ / Icg,将TAN从11.56降低到0.1 mg KOH / g。另外,产生的液体是无色的。此外,使用钌和铂催化剂大大提高了氢处理液中十六烷和十八烷的收率,而庚烷的收率则较低。总体而言,对生物原油进行氢处理可有效提高废水中生长的藻类产生的生物原油的质量。所有废催化剂的BET表面积均减小。 SEM-EDS分析表明,一些液体产物和硫沉积在废催化剂中。 (C)2015 Elsevier B.V.保留所有权利。

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