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Retention of Silica Nanoparticles in a Lab-Scale Membrane Bioreactor: Implications for Process Performance and Membrane Fouling

机译:在实验室规模的膜生物反应器中保留二氧化硅纳米颗粒:对工艺性能和膜污染的影响

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In conventional activated sludge (CAS) involving aerobic biological processes, the retention of silica nanoparticles (SiO 2 NPs) has no detrimental effect on chemical oxygen demand (COD) and ammonia nitrogen (NH 3 –N) removal. However, for the membrane bioreactor (MBR) system, which is also based on the activated sludge process in addition to the membrane separation process, it has implications not only on the process performance but also on membrane fouling. To investigate these two implications in lab-scale experiments, we continuously operated a control MBR and two experimental MBRs, in which the 28 nm SiO 2 NPs and 144 nm SiO 2 NPs were added separately to the influent at a final concentration of 100 mg/L. Although the retention of SiO 2 NPs in the MBR, as confirmed by dynamic light scattering (DLS) analysis, did not compromise the COD and NH 3 –N removal, it resulted in substantial increases in the transmembrane pressure (TMP) suggesting the onset of membrane fouling. Analyses by batch-dead end filtration revealed the same fouling trend as observed during the continuous MBR experiments; membrane fouling is aggravated in the presence of SiO 2 NPs. This was evident from permeate flux decline of between 30% and 74% at very low TMP (5 kPa) and the further increases in the total resistance.
机译:在涉及好氧生物过程的常规活性污泥(CAS)中,二氧化硅纳米颗粒(SiO 2 NPs)的保留对化学需氧量(COD)和氨氮(NH 3 -N)的去除没有不利影响。但是,对于膜生物反应器(MBR)系统,除了膜分离过程外,该系统还基于活性污泥法,它不仅对过程性能有影响,而且对膜污染也有影响。为了研究实验室规模实验中的这两个含义,我们连续操作了一个对照MBR和两个实验MBR,其中将28 nm SiO 2 NP和144 nm SiO 2 NP分别添加到进水中,最终浓度为100 mg / L.尽管通过动态光散射(DLS)分析证实了MBR中SiO 2 NPs的保留并没有影响COD和NH 3 -N的去除,但它导致跨膜压(TMP)的显着升高,提示MRP的发作。膜结垢。分批死端过滤的分析显示出与连续MBR实验中观察到的结垢趋势相同;在SiO 2 NP存在下,膜结垢加剧。从在非常低的TMP(5 kPa)下渗透通量下降30%到74%以及总电阻进一步增加这一点就可以明显看出这一点。

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