Environ Technol. 2014 Aug;35(13-16):1866-73. doi: 10.1080/09593330.2014.885067.
A continuous tank reactor was used to remove 4-chlorophenol from aqueous solutions, using immobilized soybean peroxidase and hydrogen peroxide. The influence of operational variables (enzyme and substrate concentrations and spatial time) on the removal efficiency was studied. By using the kinetic law and the intrinsic kinetic parameters obtained in a previous work with a discontinuous tank reactor, the mass-balance differential equations of the transient state reactor model were solved and the theoretical conversion values were calculated. Several experimental series were used to obtain the values of the remaining model parameters by numerical calculation and using an error minimization algorithm. The model was checked by comparing the results obtained in some experiments (not used for the determination of the parameters) and the theoretical ones. The good concordance between the experimental and calculated conversion values confirmed that the design model can be used to predict the transient behaviour of the reactor.
采用连续搅拌釜式反应器,利用固定化大豆过氧化物酶和过氧化氢去除水溶液中的 4-氯苯酚。研究了操作变量(酶和底物浓度及空间时间)对去除效率的影响。根据在先前使用间歇式搅拌釜式反应器获得的动力学规律和本征动力学参数,对瞬态状态反应器模型的质量平衡微分方程进行求解,并计算理论转化率。通过数值计算和使用误差最小化算法,利用多个实验系列获得剩余模型参数的值。通过比较一些未用于参数确定的实验和理论结果来检验模型。实验和计算转化率之间的良好一致性证实了设计模型可用于预测反应器的瞬态行为。