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Factors that affect the permeability of commercial hollow-fibre membranes in a submerged anaerobic MBR (HF-SAnMBR) system

机译:在水下厌氧MBR(HF-SAnMBR)系统中影响商用中空纤维膜渗透性的因素

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摘要

A demonstration plant with two commercial HF ultrafiltration membrane modules (PURON~®, Koch Membrane Systems, PUR-PSH31) was operated with urban wastewater. The effect of the main operating variables on membrane performance at sub-critical and supra-critical filtration conditions was tested. The physical operating variables that affected membrane performance most were gas sparging intensity and back-flush (BF) frequency. Indeed, low gas sparging intensities (around 0.23 Nm~3h~(-1) m~(-2)) and low BF frequencies (30-s back-flush for every 10 basic filtration-relaxation cycles) were enough to enable membranes to be operated sub-critically even when levels of mixed liquor total solids were high (up to 25 g L~(-1)). On the other hand, significant gas sparging intensities and BF frequencies were required in order to maintain long-term operating at supra-critical filtration conditions. After operating for more than two years at sub-critical conditions (transmembrane flux between 9 and 13.3 LMH at gas sparging intensities of around 0.23 Nm~3 h~(-1) m~(-2) and MLTS levels from around 10-30 g L~(-1)) no significant irreversible/ irrecoverable fouling problems were detected (membrane permeability remained above 100 LMH bar~(-1) and total filtration resistance remained below 10~(13) m~(-1)), therefore no chemical cleaning was conducted. Membrane performance was similar to the aerobic HF membranes operated in full-scale MBR plants.
机译:一个带有两个商业HF超滤膜组件(PURON®,Koch膜系统,PUR-PSH31)的示范工厂正在处理城市废水。在亚临界和超临界过滤条件下,测试了主要操作变量对膜性能的影响。影响膜性能的物理操作变量主要是气体喷射强度和反吹(BF)频率。实际上,低的气体喷射强度(约0.23 Nm〜3h〜(-1)m〜(-2))和低的BF频率(每10个基本的过滤-松弛循环需要30-s的反冲洗)足以使膜能够即使混合液中的总固体含量很高(高达25 g L〜(-1)),也可以亚临界操作。另一方面,需要大量的气体喷射强度和高炉频率,以维持在超临界过滤条件下的长期运行。在亚临界条件下运行了两年以上(在气体喷射强度约为0.23 Nm〜3 h〜(-1)m〜(-2)且MLTS水平为10-30左右的情况下,跨膜通量在9和13.3 LMH之间g L〜(-1))未发现明显的不可逆/不可恢复的结垢问题(膜渗透率保持在100 LMH bar〜(-1)以上,总过滤阻力保持在10〜(13)m〜(-1)以下)没有进行化学清洗。膜的性能类似于在大型MBR工厂中操作的好氧HF膜。

著录项

  • 来源
    《Water Research》 |2013年第3期|1277-1288|共12页
  • 作者单位

    Institut Uniuersitari d'Inuestigacio d'Enginyeria de l'Aigua i Medi Ambient, IIAMA, Uniuersitat Politecnica de Valencia, Cami de Vera s, 46022 Valencia, Spain;

    Departament d'Enginyeria Qui'mica, Escola Tecnica Superior d'Enginyeria, Uniuersitat de Valencia, Auinguda de la Uniuersitat s, 46100 Buriassot, Valencia, Spain;

    Departament d'Enginyeria Qui'mica, Escola Tecnica Superior d'Enginyeria, Uniuersitat de Valencia, Auinguda de la Uniuersitat s, 46100 Buriassot, Valencia, Spain;

    Institut Uniuersitari d'Inuestigacio d'Enginyeria de l'Aigua i Medi Ambient, IIAMA, Uniuersitat Politecnica de Valencia, Cami de Vera s, 46022 Valencia, Spain;

  • 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

    back-flush frequency; biogas sparging; commercial; hollow-fibre membranes; submerged anaerobic membrane; bioreactor; membrane permeability;

    机译:反冲频率;沼气喷射;商业中空纤维膜浸没式厌氧膜生物反应器膜通透性;

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