采用X线衍射(X-ray diffraction,XRD)和扫描电镜(scanning electron microscope,SEM)对以电镀法制备的PbO_2/Ti阳极进行表征,以阳极氧化电流占比系数γ描述苯酚氧化与析氧反应之间的影响机制,并基于法拉第定律建立描述有机物氧化进程的...采用X线衍射(X-ray diffraction,XRD)和扫描电镜(scanning electron microscope,SEM)对以电镀法制备的PbO_2/Ti阳极进行表征,以阳极氧化电流占比系数γ描述苯酚氧化与析氧反应之间的影响机制,并基于法拉第定律建立描述有机物氧化进程的通用阶段反应动力学模型;在不同电流密度和进水流量条件下进行苯酚阳极氧化实验。研究结果表明:电极表面晶相主要为β-PbO_2,晶粒平均直径为50.23 nm,形成的团聚体粒径在5~10μm之间。PbO_2/Ti阳极析氧电位约为1.78 V;液相中苯酚的存在可抑制氧气析出,且析氧反应电阻由无苯酚情况下的148.3?增大至195.9?。回归分析和F检验结果证明理论预测值与实验数据之间具有一致性。展开更多
提高市政污泥脱水性能是当前污泥预处理中的热点和难点.本文以毛细吸水时间(CST)作为衡量污泥预处理中脱水性能的指标,选用钛/二氧化铅网状极板为阴、阳电极,研究了电解电压、极板间距、电解质种类及电解质投加量等因素对电化学预处理...提高市政污泥脱水性能是当前污泥预处理中的热点和难点.本文以毛细吸水时间(CST)作为衡量污泥预处理中脱水性能的指标,选用钛/二氧化铅网状极板为阴、阳电极,研究了电解电压、极板间距、电解质种类及电解质投加量等因素对电化学预处理市政污泥的影响.结果表明,电压对污泥脱水性能影响较大,在电压为20 V、极板间距为2 cm、电解质为0.6 g Na Cl的条件下,电化学处理市政污泥20 min效果最佳,污泥的CST下降率在90%以上.进一步探究表明,电解过程中污泥菌胶团结构首先被破坏,释放大量结合水,且菌胶团内的蛋白质和多聚糖释放到上清液中,二者浓度先升高;随后二者部分氧化分解,浓度降低,从而有效提高市政污泥脱水性能.展开更多
Methodology for the electrochemical decomposition of imazethapyr using Ti/SnO2-Sb2O5/PbO2 anode in Na2SO4 medium is suggested in this paper. The electrolysis reaction conditions were optimized. The process of electroc...Methodology for the electrochemical decomposition of imazethapyr using Ti/SnO2-Sb2O5/PbO2 anode in Na2SO4 medium is suggested in this paper. The electrolysis reaction conditions were optimized. The process of electrochemical decomposition was monitored by ultra-violet spectrophotometry and CODCr method. The electrochemical decomposition mechanism of imazethapyr was studied primarily by UV-VIS spectrophotometry. The effectiveness of the electrochemical pretreatment was proved by the comparative aerobic biological treatment test based on the activated sludge process.展开更多
摘要提高市政污泥脱水性能是当前污泥预处理中的热点和难点.本文以毛细吸水时间(CST)作为衡量污泥预处理中脱水性能的指标,选用钛/二氧化铅网状极板为阴、阳电极,研究了电解电压、极板间距、电解质种类及电解质投加量等因素对电化学预处理市政污泥的影响.结果表明,电压对污泥脱水性能影响较大,在电压为20 V、极板间距为2 cm、电解质为0.6 g Na Cl的条件下,电化学处理市政污泥20 min效果最佳,污泥的CST下降率在90%以上.进一步探究表明,电解过程中污泥菌胶团结构首先被破坏,释放大量结合水,且菌胶团内的蛋白质和多聚糖释放到上清液中,二者浓度先升高;随后二者部分氧化分解,浓度降低,从而有效提高市政污泥脱水性能.
摘要Methodology for the electrochemical decomposition of imazethapyr using Ti/SnO2-Sb2O5/PbO2 anode in Na2SO4 medium is suggested in this paper. The electrolysis reaction conditions were optimized. The process of electrochemical decomposition was monitored by ultra-violet spectrophotometry and CODCr method. The electrochemical decomposition mechanism of imazethapyr was studied primarily by UV-VIS spectrophotometry. The effectiveness of the electrochemical pretreatment was proved by the comparative aerobic biological treatment test based on the activated sludge process.