In this paper, poly (acrylamide-co-acrylic acid) (P(AM-co-AA)) hydrogel was pre- pared in an aqueous solution by using glow-discharge electrolysis plasma (GDEP) induced copoly- merization of acrylamide (AM) and acrylic acid (AA), in which N,N'-methylenebisacrylamide (MBA) was used as a crosslinker. A mechanism for the synthesis of P(AM-co-AA) hydrogel was proposed. To optimize the synthesis condition, the following parameters were examined in detail: the discharge voltage, discharge time, the content of the crosslinker, and the mass ratio of AM to AA. The results showed that the optimum pH range for cationic dyes removal was found to be 5.0-10.0. The P(AM-co-AA) hydrogel exhibits a very high adsorption potential and the ex- perimental adsorption capacities for Crystal violet (CV) and Methylene blue (MB) were 2974.3 mg/g and 2303.6 mg/g, respectively. The adsorption process follows a pseudo-second-order kinetic model. In addition, the adsorption mechanism of P(AM-co-AA) hydrogel for cationic dyes was also discussed.
用辉光放电电解等离子体(GDEP)对模拟染料废水罗丹明B(RhB)的降解过程进行了研究.通过发射光谱法测定了GDEP产生的活性粒子,采用紫外光谱分析了放电电压、溶液浓度、pH、Fe^(2+)等对RhB脱色率的影响,并用电导率仪和酸度计测定了降解过程中溶液的电导率和pH的变化,同时结合红外光谱粗略探讨了降解机理.结果表明,在最佳电压为600 V和放电60 min时,200 m L 20 mg·L^(-1)RhB的脱色率可达95.4%,降解过程符合动力学准一级反应;降解过程中溶液的电导率先增大后减小,溶液的pH呈现先减小后增大的趋势,说明在放电过程中产生了大量带电离子及酸性中间产物;加入0.03 mmol的Fe^(2+)对RhB的降解有催化作用,在pH=3.19条件下,放电5 min可使RhB的脱色率达到98.3%;羟基自由基(·OH)对RhB的降解起关键作用.