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Intensification of delignification of Tectona grandis saw dust as sustainable biomass using acoustic cavitational devices

机译:采用声学空型器件,COCTONA Grandis的奥地利化粉尘作为可持续生物量的加强

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Delignification of sawdust was studied using ultrasound assisted alkali peroxide approach using longitudinal horn for the first time and the efficacy compared with more commonly used configurations of ultrasonic reactors. Comparison with the conventional approach based on stirring has also been presented to establish the process intensification benefits. Effect of different operating parameters such as sodium carbonate concentration (0.1, 0.15, 0.2, 0.25 M), hydrogen peroxide concentration (0.2, 0.4, 0.6, 0.8, 1 M) and biomass loading (2, 4, 6, 8, 10 wt%), on the efficacy of lignin extraction has been investigated for different ultrasonic reactors. The optimum conditions for probe type ultrasonic horn were established as 150 W, 50% duty cycle and 80% amplitude with optimum process conditions as Na2CO3 concentration as 0.2 M, H2O2 concentration as 1 M, biomass loading of 10 wt% and operating time of 70 min. Longitudinal horn resulted in best efficacy (both in terms of yield and energy requirements) followed by ultrasonic horn and ultrasonic bath whereas the conventional approach was least effective. The obtained lignin was also analyzed using different characterization techniques. The presence of peaks at wavelength range of 875-817, 1123-1110, and at 1599 cm(-1) for the extracted sample confirmed the presence of lignin. Increase in the crystallinity index of the processed sample (maximum for longitudinal horn) also confirmed the lignin removal as lignin is amorphous in nature. Overall it has been concluded that ultrasound can be effectively used for delignification with longitudinal horn as best configuration.
机译:使用纵向喇叭首次使用纵向喇叭的超声辅助碱过氧化物方法研究了锯末的脱铜,与更常用的超声反应器配置相比,效力。还提出了与基于搅拌的常规方法的比较,以建立过程强化益处。不同操作参数如碳酸钠浓度(0.1,0.15,0.2,0.25μm),过氧化氢浓度(0.2,0.4,0.6,0.8,1 m)和生物质负载(2,4,6,8,10重量) %)对木质素提取的疗效进行了研究,针对不同的超声反应器研究。探针型超声喇叭的最佳条件是为150W,50%的占空比和80%振幅,最佳过程条件为Na 2 CO 3浓度为0.2M,H 2 O 2浓度为1米,生物质负载量为10重量%,操作时间为70闵。纵向喇叭导致最佳功效(在产量和能源要求方面),然后是超声波喇叭和超声波浴,而传统方法最不有效。还使用不同的表征技术分析所获得的木质素。提取样品的波长范围为875-817,1123-1110和1599cm(-1)的峰的存在证实了木质素的存在。加工样品的结晶性指数增加(纵向角的最大值)也证实了随着木质素在性质中无定形的。总的来说,它已经得出结论,超声波可以有效地用于纵向喇叭作为最佳配置的脱野。

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