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纳滤和反渗透三级处理用于牛仔纺织工业中水回用的比较

Comparison of tertiary treatment by nanofiltration and reverse osmosis for water reuse in denim textile industry.

作者信息

Ben Amar Nihel, Kechaou Noura, Palmeri John, Deratani André, Sghaier Ali

机构信息

Laboratoire de Modélisation Mathématique et Numérique dans les Sciences de l'Ingénieur, ENIT, Campus Universitaire, Le Belvédère 1002, Tunis, Tunisie.

出版信息

J Hazard Mater. 2009 Oct 15;170(1):111-7. doi: 10.1016/j.jhazmat.2009.04.130. Epub 2009 May 6.

Abstract

The wastewaters resulting from different baths of a dyeing factory specialized in denim fabric are collected and treated by an activated sludge plant. This study investigated the coupling of activated sludge treatment with either nanofiltration (NF) or reverse osmosis (RO) to recycle water and reuse it in the process. We first conducted NF experiments with a HL membrane in different configurations: dead end and cross-flow for flat sheets and also in spiral wound form. Results on water permeation and salt rejection show that performances are configuration dependent. Then, for the study of the NF/RO textile wastewater treatment, experiments were conducted with spiral wound membranes in order to be closest to the industrial configuration. After analyzing the removal efficiencies of suspended solids and chemical oxygen demand (COD) of the treatment plant, we conducted NF experiments using an HL2514TF spiral wound membrane preceded by ultrafiltration (UF) treatment. We used as well an RO membrane (AG2514TF) to compare performances in water yield and quality for the same pumping costs. The results show that NF allows higher yield, while respecting the Tunisian standard of water reuse (COD<90 mg L(-1)). Above 9bar, the TDS rejection reaches 60% and the hardness is lower than the factory constraint (100 mg L(-1) CaCO(3)), allowing the reuse of the water in the process.

摘要

一家专门从事牛仔布面料染色的工厂,其不同染色槽产生的废水被收集起来,并通过活性污泥处理厂进行处理。本研究调查了活性污泥处理与纳滤(NF)或反渗透(RO)的耦合,以实现水的循环利用并在生产过程中回用。我们首先使用HL膜以不同配置进行纳滤实验:平板膜的死端和错流配置,以及螺旋卷式配置。水渗透和盐分截留的结果表明,性能取决于配置。然后,为了研究纳滤/反渗透处理纺织废水,使用螺旋卷式膜进行实验,以便更接近工业配置。在分析了处理厂对悬浮固体和化学需氧量(COD)的去除效率后,我们在超滤(UF)处理之后,使用HL2514TF螺旋卷式膜进行纳滤实验。我们还使用了反渗透膜(AG2514TF),以比较在相同泵送成本下的产水量和水质性能。结果表明,纳滤能够实现更高的产水量,同时符合突尼斯水回用标准(COD<90 mg L(-1))。在9巴以上,总溶解固体截留率达到60%,硬度低于工厂限制(100 mg L(-1) CaCO(3)),从而使水能够在生产过程中回用。

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