Effect of ultrasonic pretreatment on pyrolysis of microalgae

Ruaa O. Taha, A. H. Shaban
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Abstract

Pyrolysis has been considered a method for recovering the power from combined micro alga bio mass here, next executing heat probe of or involving sound waves with a frequency above the upper limit of human hearing as a pretreatment to increase the bio-crude yield. Pyrolysis of mixed-microalgae was carried out in a batch reactor made up of steel at a temperature range 350-600 C°, nitrogen gas was used as sweep gas for maintaining oxygen free atmosphere in the pyrolysis. The results show that the using ultrasonic probe for both frequency 60 &90 KHz increase the bio-crude yield from 50.72 to 44.13 and 44.83 % respectively at 550C°. The thermal degradation temperature of microalgae are studied using TGA. Also the results show that the ash content after applying ultrasonic sound as a pretreatment for both frequency 60 &90 KHz were reduced from 7.21 to 4.83 and 4.21 % respectively. The aim of the work was to study the effect of using ultrasound for different frequency on algae pyrolysis as a pretreatment steps.
超声波预处理对微藻热解的影响
热解被认为是一种从组合微藻生物量中回收能量的方法,然后对频率高于人类听力上限的声波进行热探针或涉及热探针作为预处理,以提高生物原油产量。混合微藻在钢结构间歇式反应器中热解,温度范围为350 ~ 600℃,热解过程中以氮气作为扫气维持无氧气氛。结果表明,在550℃下,使用频率为60和90 KHz的超声波探针,生物原油收率分别从50.72%提高到44.13%和44.83%。采用热重分析仪对微藻的热降解温度进行了研究。结果表明,60 KHz和90 KHz超声波预处理后,粉煤灰灰分分别从7.21%降低到4.83%和4.21%。本研究的目的是研究不同频率的超声波对藻类热解预处理的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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