采用分光光度计法和活体荧光计法,研究了吉米奇类表面活性剂双烷基聚氧乙烯基三季铵盐(DPQAc)改性粘土对2种赤潮生物赤潮异弯藻和锥状斯氏藻的絮凝沉降动力学,比较了2种实验方法的不同,并对几种影响絮凝沉降的因素进行了研究.结果表明,传统的分光光度计法进行动力学研究时,有机粘土对赤潮藻的絮凝沉降较好地符合双分子反应动力学模型,而采用活体荧光计法进行实验时,有机粘土对赤潮藻的絮凝沉降很好地符合双曲线动力学模型,利用活体荧光计法进行实验时避免了前者由于粘土沉降导致的体系透光率的快速变化,更好地反映了赤潮藻细胞絮凝沉降实质.2种动力学实验方法都表明,高岭土体系的沉降速率要略高于膨润土体系,提高粘土、改性剂的用量以及体系的pH值都能加快沉降速率,其中提高改性剂的用量是增加去除率和加快沉降速率的最有效方法.
The kinetics of red tide organisms (Heterosigma akashiwo and Scrippsiella trochoidea ) coagulation with clays modified by dialkylpolyoxyethenyl quaternary ammonium compound (DPQAC) was studied using spectrophotometer and fluorometry, and the effects of different kinds and concentrations of clays, the second component DPQAC added in clays and pH on the coagulation rate were examined. When using spectrophotometer, the coagulation kinetics of red tide organism coagulation with organo-clays is well fit for the bimolecular reaction model; while using fluoremetry, it is fit for the hyperbola model much better. Moreover, the results also prove that using fluoremetry can avoid the great change of permeance efficiency caused by clays' sedimentation when using spectrophotometer, which has availably avoided the influence of clays' sedimentation and reflected the essential of algal coagulation and sedimentation well and truly. The results of two studying methods show that the coagulation rate is more rapid in the system of kaolin than in that of bentonite; increasing the concentration of clays and DPQAC and increasing pH all can accelerate coagulation, and among those increasing the concentration of DPQAC is the most efficient way of increasing the removal efficiency and coagulation rate.