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Bioflocculation: Chemical free, pre-treatment technology for the desalination industry

机译:生物絮凝:用于海水淡化行业的无化学预处理技术

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摘要

Rapid sand filtration (RSF), proceeded by chemical coagulation and flocculation, is a commonly used, effective pretreatment in the desalination industry. We designed and tested a novel, large pilot-scale, two-stage granular Rapid Bioflocculation Filter (RBF) based on a first-stage Bioflocculator (BF) unit followed by a mixed-media bed filter (MBF). The BF filter bed consisted of an extremely porous volcanic Tuff granular medium which provided an enlarged surface area for microbial development and biofilm proliferation. We compared the efficiency of the pilot RBF to that of a full-scale RSF, operating with upstream chemical coagulation, by measuring the removal from the same untreated seawater feed of key factors related to membrane clogging: SDI, turbidity, chlorophyll a (Chl a) and transparent exopolymer particles (TEP). After 2 weeks of operation, the Tuff grains were colonized extensively by coccoid bacteria that formed biofilm along the entire BF. With bacterial colonization and biofilm development, numerous aggregates of bacteria and some algal cells embedded in an amorphous organic matrix were formed on and within the Tuff grains. By 1-3 months, the biotic diversity within the Tuff filter bed had increased to include filamentous bacteria, cyanobacteria, fungi, protista and even crustaceans and marine worms. During and for ~ 24 h after each cleaning cycle (carried out every5 to 7 days by upward flushing with air and water), large numbers of floc-like particles, from ~15 μm to ~ 2 mm in size were observed in the filtrate of the BF unit. Microscopic examination of these floes (stained with Alcian Blue and SYTO~R 9) showed that they were aggregates of many smaller particles with associated bacteria and algae within a polysaccharide gel-like matrix. These biogenic floes (biqflocs) were observed to form during normal operation of the RBF, accumulating as aggregates of inorganic and organic material on the Tuff surfaces. With each flush cleaning cycle, these bioflocs were released into the BF effluent but were retained by the second phase MBF unit. No flocs were seen in the MBF filtrate. Over a yearlong study, both the pilot RBF and the full-scale RSF showed similar filtration efficiencies, measured as the percentage removal of Chl a, TEP, turbidity and SDI from the same seawater feed. These results indicate the potential of the bioflocculation approach with no chemical additives as an alternative to conventional RSF pretreatment for large SWRO facilities.
机译:通过化学凝结和絮凝进行快速砂滤(RSF)是脱盐行业中一种常用的有效预处理方法。我们设计和测试了一种新型的,中试规模的,两阶段的颗粒状快速生物絮凝过滤器(RBF),该过滤器基于第一级生物絮凝器(BF)单元,然后是混合介质床过滤器(MBF)。高炉滤床由极多孔的火山凝灰岩颗粒介质组成,可为微生物发育和生物膜增殖提供更大的表面积。我们通过测量从同一未经处理的海水中去除与膜堵塞相关的关键因素(SDI,浊度,叶绿素a(Chl a)的去除率),将试验RBF与采用上游化学混凝的全尺寸RSF的效率进行了比较。 )和透明的外聚合物颗粒(TEP)。手术2周后,凝灰球菌在整个高炉上形成生物膜,广泛地聚集在凝灰岩颗粒上。随着细菌的定殖和生物膜的发展,在凝灰岩颗粒之上和之内形成了许多细菌聚集体和一些嵌入无定形有机基质中的藻类细胞。到1-3个月,凝灰岩滤床中的生物多样性增加,包括丝状细菌,蓝细菌,真菌,原生生物,甚至甲壳类和海生蠕虫。在每个清洁周期内和之后约24小时内(每5至7天通过向上吹入空气和水冲洗一次),在下列清洁剂的滤液中观察到大量絮状颗粒,尺寸从〜15μm到〜2 mm。高炉单元。对这些絮凝物(用Alcian Blue和SYTO_R 9染色)的显微镜检查表明,它们是多糖凝胶状基质中许多小颗粒的聚集体,伴有相关细菌和藻类。观察到这些生物成因絮状物(biqflocs)在RBF的正常运行期间形成,累积为凝灰岩表面上无机和有机物质的聚集体。在每个冲洗清洁周期中,这些生物絮凝物均被释放到高炉废水中,但被第二相MBF单元保留。在MBF滤液中未观察到絮状物。在为期一年的研究中,RBF试验和全尺寸RSF均显示出相似的过滤效率,以相同海水中Chla,TEP,浊度和SDI的去除率来衡量。这些结果表明,不使用化学添加剂的生物絮凝方法有可能替代大型SWRO设施的常规RSF预处理。

著录项

  • 来源
    《Water Research》 |2013年第9期|3093-3102|共10页
  • 作者单位

    Mina and Everard Goodman Faculty of Life Sciences, Bar-Ilan University, Ramat Gan 52900, Israel;

    Mina and Everard Goodman Faculty of Life Sciences, Bar-Ilan University, Ramat Gan 52900, Israel;

    I.D.E. Kadima, Israel;

    Mina and Everard Goodman Faculty of Life Sciences, Bar-Ilan University, Ramat Gan 52900, Israel;

    Israel Oceanographic and Limnologica! Research, The Yigal Allon Kinneret Limnological Laboratory, Tiberias, Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    desalination pretreatment; rapid sand filtration; bioflocculator;

    机译:淡化预处理快速砂滤;生物絮凝剂;
  • 入库时间 2022-08-17 13:45:38

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