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Exploring Submerged Forward Osmosis for Water Recovery and Pre-Concentration of Wastewater before Anaerobic Digestion: A Pilot Scale Study

机译:在厌氧消化前探索水恢复和废水预浓度的淹没前渗透:试验规模研究

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摘要

Applying forward osmosis directly on raw municipal wastewater is of high interest for the simultaneous production of a high quality permeate for water reuse and pre-concentrating wastewater for anaerobic digestion. This pilot scale study investigates, for the first time, the feasibility of concentrating real raw municipal wastewater using a submerged plate and frame forward osmosis module (0.34 m2) to reach 70% water recovery. Membrane performance, fouling behavior, and effective concentration of wastewater compounds were examined. Two different draw solutions (NaCl and MgCl2), operating either with constant draw concentration or in batch with draw dilution over time, were evaluated. Impact of gas sparging on fouling and external concentration polarization was also assessed. Water fluxes up to 15 L m−2 h−1 were obtained with clean water and 35 g NaCl/L as feed and draw solution, respectively. When using real wastewater, submerged forward osmosis proved to be resilient to clogging, demonstrating its suitability for application on municipal or other complex wastewater; operating with 11.7 g NaCl/L constant draw solution, water and reverse salt fluxes up to 5.1 ± 1.0 L m−2 h−1 and 4.8 ± 2.6 g m−2 h−1 were observed, respectively. Positively, total and soluble chemical oxygen demand concentration factors of 2.47 ± 0.15 and 1.86 ± 0.08, respectively, were achieved, making wastewater more suitable for anaerobic treatment.
机译:直接在原始城市废水上施加前渗透性对于同时生产高质量的渗透物的高质量渗透,用于厌氧消化的预浓缩水溶性。这项试验规模研究首次调查了使用浸没式板和框架前渗透模块(0.34平方米)来集中真正的原始城市废水的可行性,以达到70%的水回收。检查膜性能,污垢行为和有效浓度的废水化合物。评价两种不同的绘制溶液(NaCl和MgCl2),随着恒定的凹陷浓度或随时间的批量进行批量而进行。还评估了气体喷射对污染和外浓度极化的影响。用净水和35g NaCl / L作为饲料和抽取溶液获得高达15L m-2 H-1的水通量。使用真正的废水时,淹没的前瞻性渗透被证明是有弹性的堵塞,展示其在市政或其他复杂废水上申请的适用性;使用11.7g NaCl / L恒定涂抹溶液,分别观察到高达5.1±1.0L M-2 H-1和4.8±2.6g M-2 H-1的水和逆盐通量。达到阳性和可溶性化学氧需求集中因子,分别为2.47±0.15和1.86±0.08,使废水更适合厌氧处理。

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