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Chemical Cleaning of a Polyethersulfone Membrane Used for Concentrating the Effluent from Alkaline Peroxide Mechanical Pulping Plants

机译:化学清洗用于浓缩碱性过氧化物机械制浆厂废水的聚醚砜膜

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Fouling is one of the most common problems encountered when using membranes in treatment applications of papermaking wastewater. The alkaline peroxide mechanical pulping (APMP) process has been widely adopted all over the world. However, reports on the membrane treatment of APMP plant effluent are relatively rare. It is mainly attributed to the high operational cost of membrane recovery and replacement. So, we originally investigated the cleaning protocols for the polyethersulfone (PES) membranes fouled by APMP plant effluent. To maximize flux recovery, four chemical cleaning protocols were explored to clean the fouled membranes. Parameters evaluated included flux recovery percent, total solids, dichromate chemical oxygen demand (CODCr), five-day biochemical oxygen demand (BOD5), and color retentions of membranes. Scanning electron microscopy with an energy dispersive x-ray analyzer (SEM-EDX) and attenuated total reflection Fourier-transformed infrared spectroscopy (ATR-FTIR) were employed to give a more precise assessment of the cleaning processes. Results showed that the cleaning protocol of “0.2 wt% Triton X-100+absorbent cotton” presented the strongest cleaning effectiveness for the fouled PES membranes. Flux of the fouled membrane recovered to 98.5% that of the pristine membrane, and the retention of total solids, CODCr, BOD5, and color of the cleaned membrane were approximate to those of the pristine membrane. Examinations of SEM-EDX and ATR-FTIR revealed that the cleaned membranes had similar appearances with the pristine membrane, as well as elemental and chemical compositions.
机译:当在造纸废水的处理应用中使用膜时,结垢是最常见的问题之一。碱性过氧化物机械制浆(APMP)工艺已在世界范围内广泛采用。但是,关于膜处理APMP植物废水的报道相对较少。这主要归因于膜回收和更换的高运营成本。因此,我们最初研究了APMP工厂废水污染的聚醚砜(PES)膜的清洁方案。为了最大限度地提高通量回收率,研究了四种化学清洁方案以清洁污垢的膜。评估的参数包括通量回收率,总固体,重铬酸盐化学需氧量(CODCr),五天生化需氧量(BOD5)和膜的保色性。使用能量色散X射线分析仪(SEM-EDX)进行的扫描电子显微镜和衰减全反射傅立叶变换红外光谱(ATR-FTIR)进行了清洁过程的更精确评估。结果表明,“ 0.2%wt%Triton X-100 +吸收性棉”的清洁方案对结垢的PES膜具有最强的清洁效果。污垢膜的通量恢复到原始膜的通量的98.5%,并且保留的总固体,CODCr,BOD5和清洁膜的颜色与原始膜的保留率近似。 SEM-EDX和ATR-FTIR的检查表明,清洁过的膜与原始膜的外观,元素和化学成分相似。

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