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利用生成的氮氧化物从甜菜糖蜜中生产草酸

Production of oxalic acid from sugar beet molasses by formed nitrogen oxides.

作者信息

Gürü M, Bilgesü A Y, Pamuk V

机构信息

Department of Chemical Engineering, Gazi University, Ankara, Turkey.

出版信息

Bioresour Technol. 2001 Mar;77(1):81-6. doi: 10.1016/s0960-8524(00)00122-x.

Abstract

Production of oxalic acid from sugar beet molasses was developed in a series of three reactors. Nitrogen oxides formed were used to manufacture oxalic acid in the second and third reactor. Parameters affecting the reaction were determined to be, air flow rate, temperature, the amount of V2O5 catalyst and the concentrations of molasses and H2SO4. The maximum yields in the second and third reactors were 78.9% and 74.6% of theoretical yield, respectively. Also, kinetic experiments were performed and the first-order rate constants were determined for the glucose consumption rate. Nitrogen oxides in off-gases from the final reactor were absorbed in water and concentrated sulphuric acid and reused in the following reactors giving slightly lower yields under similar conditions. In this novel way, it was possible to recover NO(x) and to prevent air pollution. Meanwhile, it was possible to reduce the unit cost of reactant for oxalic acid production. A maximum 77.5% and 74.1% of theoretical yield was obtained by using the absorption solutions with NO(x).

摘要

从甜菜糖蜜生产草酸是在一系列三个反应器中进行的。生成的氮氧化物用于在第二和第三个反应器中制造草酸。确定影响反应的参数为空气流速、温度、V2O5催化剂的用量以及糖蜜和H2SO4的浓度。第二和第三个反应器中的最大产率分别为理论产率的78.9%和74.6%。此外,还进行了动力学实验,并确定了葡萄糖消耗速率的一级速率常数。最终反应器废气中的氮氧化物被水和浓硫酸吸收,并在后续反应器中重复使用,在类似条件下产率略低。通过这种新颖的方式,可以回收NO(x)并防止空气污染。同时,可以降低草酸生产反应物的单位成本。使用含NO(x)的吸收溶液可获得高达理论产率77.5%和74.1%的产率。

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