School of Environmental Science and Engineering, Huazhong University of Science and Technology, Wuhan, Hubei, 430074, PR China.
Dongjiang Environment Company, Shenzhen, Guangdong, 518000, PR China.
Chemosphere. 2017 Dec;189:67-75. doi: 10.1016/j.chemosphere.2017.09.034. Epub 2017 Sep 9.
In this study, the influence of NaSO on electro-dewatering (EDW) of waste activated sludge (WAS) was investigated. The highest water removal efficiency of 42.5% was achieved at the optimum NaSO dosage of 12.5 g kg DS during EDW process at a constant voltage of 20 V. The migration and distribution of water, organic matters and Na at different NaSO dosages were investigated through layered experiments. The results indicated the entire EDW process followed the S curve model, and it can be divided into three stages: (1) initial desalination stage: at the initial few min of EDW process, the rate of electroosmosis was extremely slow while electromigration of ions like Na was intense, and the electromigration was more obvious with increased NaSO dosage; (2) dewatering stage: the dewatering efficiency increased dramatically via electroosmosis; (3) the dewaterability limit stage: the maximum value of dewatering efficiency has been achieved, while the water removal efficiency and dry solids content remained constant. During the EDW process, the possible electrolysis resulted in a pH gradient in the sludge cake. With the addition of NaSO in the EDW, the pH gradient was intensified, and the migration rate of organic matters moving from cathode to anode increased while compared with the raw WAS. This study provided insights into the mechanism of EDW process at different dosages of NaSO.
在这项研究中,研究了 NaSO 对废活性污泥(WAS)电脱水(EDW)的影响。在 EDW 过程中,在恒定电压为 20V 时,NaSO 的最佳剂量为 12.5gkgDS,此时的水去除效率最高,达到 42.5%。通过分层实验研究了不同 NaSO 剂量下水、有机物和 Na 的迁移和分布。结果表明,整个 EDW 过程遵循 S 曲线模型,可分为三个阶段:(1)初始脱盐阶段:在 EDW 过程的最初几分钟,电渗速度极慢,而 Na 等离子的电迁移速度则很强,并且随着 NaSO 剂量的增加,电迁移更为明显;(2)脱水阶段:通过电渗脱水效率大大提高;(3)脱水能力极限阶段:达到了脱水效率的最大值,而水去除效率和干固体含量保持不变。在 EDW 过程中,可能发生的电解导致污泥饼中存在 pH 梯度。在 EDW 中添加 NaSO 后,pH 梯度加剧,与原始 WAS 相比,有机物从阴极向阳极的迁移速度加快。本研究深入了解了不同剂量 NaSO 下 EDW 过程的机理。