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Long-term evaluation of a forward osmosis-nanofiltration demonstration plant for wastewater reuse in agriculture

机译:农业废水再利用前渗透 - 纳米过滤厂的长期评价

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摘要

Hybrid forward osmosis (FO) processes such as forward osmosis with membrane bioreactors (FO-MBR), electrodialysis (FO-ED), nanofiltration (FO-NF) or reverse osmosis (FO-RO) present promising technologies for wastewater reuse in agriculture as they meet high effluent quality requirements, especially regarding boron and/or salt content. An FO-NF demonstration plant for this application was built and operated treating 3m(3) h(-1) of real wastewater with a salinity of 3-5 mS cm(-1) and 1.5 mg L-1 of boron in continuous mode for 480 days. Three draw solutions (DS) were evaluated in different periods of experimentation. Sodium polyacrylate led to reversible fouling on the FO and NF membranes and the permeate was not suitable for irrigation. Magnesium sulphate, used as DS in a second phase, generated severe irreversible fouling on NF membranes and therefore it was discarded. Finally, magnesium chloride showed the best performance, with FO-NF membranes presenting a stable permeability and low membrane fouling during long-term operation. The FO-NF permeate showed high quality for irrigation, achieving a conductivity value of 1 mS cm(-1), a boron concentration below 0.4 mg L-1 and an average SAR of 1.98 (mequ L-1)(0.5). DS replacement costs were reduced by working with high rejection NF membranes. However, energy consumption costs associated with the NF step make the global process more energy intensive than conventional technology.
机译:杂交前期渗透(FO)方法,如前渗透量,膜生物反应器(FO-MBR),电渗析(FO-ED),纳米滤灰(FO-NF)或反渗透(FO-RO)提出了农业废水重用的有希望的技术。它们符合高污水质量要求,特别是硼和/或盐含量。本申请的FO-NF示范厂建造和操作处理3M(3)小时(-1)的实际废水,其盐度为3-5ms cm(-1)和1.5mg L-1在连续模式下480天。在不同的实验期间评估了三种绘制解决方案(DS)。聚丙烯酸钠导致FO和NF膜上可逆污垢,渗透物不适合灌溉。硫酸镁在第二阶段用作DS,在NF膜上产生严重的不可逆污垢,因此被丢弃。最后,氯化镁表现出最佳性能,具有在长期操作期间呈现稳定的渗透性和低膜污染的FO-NF膜。 FO-NF渗透物​​显示出灌溉的高质量,实现1ms cm(-1)的电导率值,硼浓度低于0.4mg l-1和1.98(mequ l-1)(0.5)的平均sar。通过使用高排出NF膜来减少DS更换成本。然而,与NF步骤相关的能量消耗成本使全球过程更加能量密集型而不是传统技术。

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