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Microwave-assisted hydrothermal treatment of corncob using tin(IV) chloride as catalyst for furfural production

机译:以氯化锡(IV)为催化剂的糠醛生产微波辅助水热处理玉米芯

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The hydrothermal treatment of pentose-rich corncob under microwave irradiation was performed using SnCl4 as catalyst for furfural production in this study. The influences of the catalyst amount, reaction temperature and reaction time on the compositions of the hydrolysate and solid residue were discussed comparatively. The solid residue obtained was characterized by FTIR, XRD and SEM. The results showed that the cell wall structure of the treated corncob was destroyed to a certain extent under the function of catalysts during the treatment, and most of the hemicelluloses were released from the cell wall and entered the hydrolysate as hemicellulose-derived sugars, followed by the selective dehydration to furfural. When the temperature reached the preset value of 190 A degrees C under microwave irradiation, the highest furfural yield of 9.0 wt% (based on the dry weight of corncob) was achieved from the one-step conversion of corncob under the microwave-assisted hydrothermal treatment with a 1 % amount of SnCl4 (based on the dry weight of corncob) and a solid-to-liquor ratio of 1:20.
机译:在本研究中,以SnCl4为催化剂生产糠醛,在微波辐射下对富含戊糖的玉米芯进行水热处理。比较讨论了催化剂用量,反应温度和反应时间对水解产物和固体残渣组成的影响。得到的固体残余物通过FTIR,XRD和SEM表征。结果表明,在处理过程中,在催化剂的作用下,处理过的玉米芯的细胞壁结构受到一定程度的破坏,大部分半纤维素从细胞壁释放出来,并以半纤维素来源的糖类进入水解产物,其次为选择性脱水成糠醛。当温度在微波辐射下达到190 A的预设值时,通过微波辅助水热处理下玉米芯的一步转化,糠醛的最高收率为9.0 wt%(基于玉米芯的干重)。含1%的SnCl4(基于玉米芯的干重),固液比为1:20。

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