F. A. Nugroho, P. Aryanti, B. Irawan, M. Kurnia, T. Prasetyo
{"title":"Integrated Electrocoagulation and Tight Ultrafiltration Membrane for Wastewater Reclamation and Reuse","authors":"F. A. Nugroho, P. Aryanti, B. Irawan, M. Kurnia, T. Prasetyo","doi":"10.14710/REAKTOR.18.04.209-215","DOIUrl":null,"url":null,"abstract":"Wastewater reclamation and reuse have become an alternative to saving operational costs while reducing the impact of waste pollution. In this paper, integration of electrocoagulation (EC) and polysulfone-based ultrafiltration (UF-PSf) membranes were used for the mentioned purpose. The EC unit equipped with 7 (seven) pieces of E-shaped of Al electrodes, which operated at a current of 3 (three) Amperes and a residence time of 2 (two) hours. The waste samples obtained from textile and oil palm industries. The experimental results were compared based on product quality and economic feasibility. When used for textile waste treatment, the integrated EC-UF units reduced TDS, TSS, BOD, and COD by 77%, 95%, 70 -80%, and 60-70%, respectively. While in palm oil waste treatment, the TDS and TSS reduced by 92% and 98%. The electrode loss rate in palm oil waste treatment was 2 (two) times greater than textile waste. By assuming that the waste production capacity of both industries was 400 m3/day, the water production cost in textile waste treatment was Rp. 4,000/m3. While in the palm oil waste treatment, the water production cost was Rp. 6,000/m3. These results showed that the EC-UF unit could be used as an economical and environmentally friendly alternative process for reclamation of industrial wastewater that meets the clean water quality standards.Keywords: electrocoagulation, industrial wastewater, ultrafiltration, reclamation, reuse water","PeriodicalId":20874,"journal":{"name":"Reaktor","volume":"15 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2019-03-31","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Reaktor","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.14710/REAKTOR.18.04.209-215","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 3
Abstract
Wastewater reclamation and reuse have become an alternative to saving operational costs while reducing the impact of waste pollution. In this paper, integration of electrocoagulation (EC) and polysulfone-based ultrafiltration (UF-PSf) membranes were used for the mentioned purpose. The EC unit equipped with 7 (seven) pieces of E-shaped of Al electrodes, which operated at a current of 3 (three) Amperes and a residence time of 2 (two) hours. The waste samples obtained from textile and oil palm industries. The experimental results were compared based on product quality and economic feasibility. When used for textile waste treatment, the integrated EC-UF units reduced TDS, TSS, BOD, and COD by 77%, 95%, 70 -80%, and 60-70%, respectively. While in palm oil waste treatment, the TDS and TSS reduced by 92% and 98%. The electrode loss rate in palm oil waste treatment was 2 (two) times greater than textile waste. By assuming that the waste production capacity of both industries was 400 m3/day, the water production cost in textile waste treatment was Rp. 4,000/m3. While in the palm oil waste treatment, the water production cost was Rp. 6,000/m3. These results showed that the EC-UF unit could be used as an economical and environmentally friendly alternative process for reclamation of industrial wastewater that meets the clean water quality standards.Keywords: electrocoagulation, industrial wastewater, ultrafiltration, reclamation, reuse water
废水回收和再利用已成为节约运营成本和减少废物污染影响的另一种选择。本文采用电絮凝(EC)和聚砜基超滤(UF-PSf)膜相结合的方法来实现上述目的。EC单元配备了7个e形铝电极,工作电流为3安培,停留时间为2小时。从纺织和油棕工业获得的废物样本。从产品质量和经济可行性两方面对实验结果进行了比较。在纺织废水处理中,集成的EC-UF装置可将TDS、TSS、BOD和COD分别降低77%、95%、70 -80%和60-70%。而在棕榈油废弃物处理中,TDS和TSS分别减少了92%和98%。棕榈油废弃物处理的电极损失率是纺织废弃物的2倍。假设两个行业的产废能力均为400 m3/d,则纺织废水处理的产水成本为0.4000 Rp /m3。而在棕榈油废弃物处理中,产水成本为6,000 Rp /m3。结果表明,EC-UF装置可作为一种经济、环保的工业废水回收替代工艺,满足清洁水质标准。关键词:电絮凝,工业废水,超滤,回收,中水