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Removal of dye from aqueous solution using a combination of advanced oxidation process and nanofiltration

机译:结合使用高级氧化工艺和纳滤技术从水溶液中去除染料

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In order to have energy and cost effective separation of dyes, a combination of advanced oxidation process (AOP) using Fenton's reagent and nanofiltration (NF) is proposed. Three combinations of AOP and NF are studied using a synthetic solution of eosin dye. Scheme-1 is AOP followed by NF. Scheme-2 is NF followed by AOP. And Scheme-3 is two-step NF. The concentration of eosin dye studied in the first step of each of the schemes is in the range of 70-200 mg/l. The operating transmembrane pressures for NF steps are 552, 689 and 828 kPa. The crossflow velocities are 0.46, 0.69 and 0.91 m/s. The schemes are compared for permeate flux, permeate concentration and duration of operation. In Scheme-1, AOP is conducted for 30 min, and then subjected to NF, whereas in Scheme-2, the time needed for AOP is more than 3 h to achieve the concentration level of the dye below 1 mg/l. Thus, it is found that Scheme-1 is superior to Scheme-2 due to lesser time requirement. However, Scheme-3 involving no AOP, is also suitable for dye separation as the final eosin concentration in the permeate falls below 1 mg/l. Scheme-1 is found suitable for dye concentration of 70mg/l and the most appropriate composition of Fenton's reagent is 1665 mg/l of H_2O_2 and 347.5 mg/l of FeSO_4·7H_2O. Suitable NF operating conditions in step 2 of Scheme-1 is transmembrane pressure of 689 kPa and crossflow velocity of 0.91 m/s. In Scheme-3, the suitable operating conditions for NF in both the steps are 828 kPa transmembrane pressure and 0.91 m/s crossflow velocity. Scheme-2 is found to be unsuitable.
机译:为了具有能量和成本效益的方式分离染料,提出了使用Fenton试剂的先进氧化工艺(AOP)和纳滤(NF)的组合。使用曙红染料的合成溶液研究了AOP和NF的三种组合。方案1是AOP,后跟NF。方案2是NF,后面是AOP。 Scheme-3是两步式NF。在每个方案的第一步中研究的曙红染料浓度在70-200 mg / l的范围内。 NF步骤的跨膜工作压力为552、689和828 kPa。错流速度为0.46、0.69和0.91 m / s。比较了方案的渗透通量,渗透浓度和运行时间。在方案1中,AOP进行30分钟,然后进行NF处理,而在方案2中,AOP所需的时间超过3小时,以使染料的浓度低于1 mg / l。因此,发现由于较少的时间需求,方案-1优于方案2。但是,不包含AOP的Scheme-3也适用于染料分离,因为渗透液中的曙红终浓度低于1 mg / l。发现方案1适用于70mg / l的染料浓度,最合适的芬顿试剂组成是1665mg / l的H_2O_2和347.5mg / l的FeSO_4·7H_2O。方案-1的步骤2中合适的NF操作条件是跨膜压力为689kPa,错流速度为0.91m / s。在方案3中,两个步骤中NF的合适操作条件是828 kPa跨膜压力和0.91 m / s错流速度。发现Scheme-2不适合。

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