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Ultrasonic pretreatment for low-temperature hydrothermal liquefaction of microalgae: enhancing the bio-oil yield and heating value

机译:微藻低温水热液化的超声波预处理:增强生物油产量和加热值

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We investigated the effect of ultrasonic pretreatment on the bio-oil yield and heating value in the low-temperature hydrothermal liquefaction (HTL) of microalgae. HTL is one of the thermochemical processes for bio-oil production. However, the high pressure of the process is one of the main challenges for commercialization. On the other hand, a decrease in the HTL pressure, and consequently a decrease in the temperature, results in a decrease in the bio-oil yield. In this work, we investigated a new method to increase the bio-oil yield at low pressures and temperatures. The microalgae (Nannochloropsis sp.) were first pretreated by ultrasonic waves for 30, 60, and 90 s at 100 W. After then, the bio-oil was produced using HTL at 210, 230, and 250 A degrees C. According to the results, using ultrasonic-assisted HTL increased the bio-oil yield up to the maximum of 28.9% (90-s sonication time at 250 A degrees C). Moreover, applying ultrasonic pretreatment resulted in a decrease in oxygen content of the bio-oil and consequently an increase in its heating value. However, the average nitrogen content did not change dramatically by using ultrasonic-assisted hydrothermal liquefaction.
机译:我们研究了超声波预处理对微藻低温水热液化(HTL)生物油产量和加热值的影响。 HTL是生物油生产的热化学工艺之一。然而,该过程的高压是商业化的主要挑战之一。另一方面,HTL压力降低,从而降低温度,导致生物油产量的降低。在这项工作中,我们研究了一种新的方法,以增加低压和温度下的生物油产量。首先通过超声波60,60和90s在100W的超声波预处理微量血糖(Nannochloropsis sp)。然后,在210,230和250℃下使用HTL生产生物油。根据结果,使用超声波辅助HTL将生物油产量增加到最大值为28.9%(250℃的90-S超声时间)。此外,施加超声波预处理导致生物油的氧含量降低,从而增加了其加热值。然而,通过使用超声波辅助的水热液化,平均氮含量不会显着变化。

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