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Furfural production by acid hydrolysis and supercritical carbon dioxide extraction from rice husk

机译:从稻壳中酸水解和超临界二氧化碳萃取生产糠醛

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摘要

The aim of this research was to study the effect of furfural production from rice husk by hydrolysis accompanying supercritical CO_2 (SC-CO_2) extraction. The two-level fractional factorial design method was used to investigate the production process carried out with respect to furfural yield. The process variables are temperature range of 373-453 K, pressure 9.1 -18.2 MPa, CO_2 flow rate 8.3 ×10~(-5)-1.7 × 10~(-4) kg/s (5-10 g/min), sulfuric acid concentration 1 to 7 (%wt) and ratio of liquid to solid (L/S) 5 : 1 to 15 : 1 (vol/wt). The results obtained from the experimental design showed that increasing temperature, pressure, CO_2 flow rate and sulfuric acid concentration but decreasing ratio of liquid to solid would improve furfural yield. Moreover, furfural production by two-stage process (pre-hydrolysis and dehydration) can improve furfural yield further to be around 90% of theoretical maximum.
机译:这项研究的目的是研究伴随超临界CO_2(SC-CO_2)萃取水解产生的稻壳糠醛生产的影响。使用两级分数阶乘设计方法来研究有关糠醛收率的生产过程。过程变量为温度范围373-453 K,压力9.1 -18.2 MPa,CO_2流量8.3×10〜(-5)-1.7×10〜(-4)kg / s(5-10 g / min),硫酸浓度为1至7(%wt),液体与固体的比例(L / S)为5至1至15:1(体积/重量)。实验设计结果表明,提高温度,压力,CO_2流量和硫酸浓度,降低液固比将提高糠醛收率。此外,通过两步法(预水解和脱水)生产糠醛可进一步提高糠醛收率至理论最大值的90%左右。

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