Optimization of membrane filtration and cleaning strategy in a high solid thermophilic AnMBR treating food waste

IF 8.1 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Chemosphere Pub Date : 2023-11-01 DOI:10.1016/j.chemosphere.2023.140151
Mengmeng Jiang , Jiu Huang , Peng Li , Bridget Ataa , Jinheng Gu , Zhiyue Wu , Wei Qiao
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Abstract

Anaerobic membrane bioreactor is advantageous over traditional processes for food waste treatment, i.e. short retention time, high loading rate, and particulate clean permeate. However, establishing a sustainable membrane filtration is a long-standing challenge because of its high viscosity and solids concentration characteristics. Therefore, this study investigated the changes in the membrane permeability before and after the cleaning during a 130-day thermophilic anaerobic experiment. Results show that the AnMBR system could maintain high stability even under a short HRT of 10 days and OLR of 9.0 kg-COD/(m3·d) with low volatile fatty acid of 50 mg/L. The membrane filtration deteriorates with the concurrence of a sharp increase of viscosity when the volatile solids reached 23 g/L. A critical flux was achieved at 5.5 L/(m2·h) under optimized operation conditions, membrane filtration/relaxing ratio with less than 4:1 at a hydraulic retention time of 15 d. Membrane fouling can be removed by soaking the membrane in NaClO (1 g/L, 15 h) and citric acid (2 g/L, 2 h). Conclusively, this work provides insight to establish the operation strategy for a thermophilic AnMBR treating food waste.

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高固相嗜热性AnMBR处理食物垃圾的膜过滤及清洗策略优化
厌氧膜生物反应器处理食物垃圾具有停留时间短、负荷率高、颗粒干净渗透等优点。然而,建立可持续的膜过滤是一个长期的挑战,因为它的高粘度和固体浓度的特性。因此,本研究在130天的嗜热厌氧实验中,研究了清洗前后膜透性的变化。结果表明,在低挥发性脂肪酸50 mg/L的条件下,AnMBR系统在HRT为10 d、OLR为9.0 kg-COD/(m3·d)的条件下仍能保持较高的稳定性。当挥发性固体达到23 g/L时,膜过滤性能恶化,同时粘度急剧增加。在优化的操作条件下,膜过滤/松弛比小于4:1,水力停留时间为15 d,达到了5.5 L/(m2·h)的临界通量。通过将膜浸泡在NaClO (1 g/L, 15 h)和柠檬酸(2 g/L, 2 h)中,可以去除膜污染。
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来源期刊
Chemosphere
Chemosphere 环境科学-环境科学
CiteScore
15.80
自引率
8.00%
发文量
4975
审稿时长
3.4 months
期刊介绍: Chemosphere, being an international multidisciplinary journal, is dedicated to publishing original communications and review articles on chemicals in the environment. The scope covers a wide range of topics, including the identification, quantification, behavior, fate, toxicology, treatment, and remediation of chemicals in the bio-, hydro-, litho-, and atmosphere, ensuring the broad dissemination of research in this field.
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