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首页> 外文期刊>Chemical engineering journal >Draw solution solute selection for a hybrid forward osmosis-membrane distillation module: Effects on trace organic compound rejection, water flux and polarization
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Draw solution solute selection for a hybrid forward osmosis-membrane distillation module: Effects on trace organic compound rejection, water flux and polarization

机译:杂交前期渗透膜蒸馏模块的脱脂溶液溶质选择:对痕量有机化合物排出,水通量和极化的影响

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The integrated forward osmosis membrane bioreactor and membrane distillation (OMBR-MD) is an emerging technique for wastewater reclamation and trace organic compound (TrOC) removal. The selection of draw solution (DS) for this system should consider the particularities of both forward osmosis and membrane distillation. The effect of five different draw solutions on forward osmosis and TrOC rejection in a hybrid submerged forward osmosis - membrane distillation (FO-MD) module was investigated in this study. The roles of each solution on FO and MD water flux, FO reverse salt flux, temperature, concentration polarization and rejection of 7 TrOCs were explored. The salt used in the draw solution influenced both FO water flux (NaCl = MgOAc2 (4.8 L.m(-2).h(-1)) > NaOAc (4.6 L.m(-2).h(-1)) > MgCl2 (3.6 L.m(-2).h(-1)) > EDTA-Na-2 (2.8 L.m(-2).h(-1))) and MD water flux (NaOAc (4.0 L.m(-2).h(-1)) > NaCl (3.8 L.m(-2).h(-1)) > MgCl2 (3.3 L.m(-2).h(-1)) > MgOAc2 (3.1 L.m(-2).h(-1) > EDTA-Na-2 (3.0 L.m(-2).h(-1))). MgCl2 draw solution produced the lowest FO reverse salt flux, demonstrating its potential to prevent salinity build-up when applied in OMBR-MD. MgCl2 and NaCl were the only salts completely rejected by the distillation membrane, which salt losses during draw solution reconcentration. Regardless of the draw solution salt, the integrated FO-MD module could effectively remove 6 of the 7 TrOCs. MgCl2 and NaOAc afforded the highest TrOC rejections, while the lowest rejections were observed when MgAOc(2) was used. MgCl2 was selected as the best DS salt for OMBR-MD by using the technique for order preference by similarity to ideal solution (TOPSIS) tool.
机译:综合前渗透膜生物反应器和膜蒸馏(OMBR-MD)是一种用于废水填海和痕量有机化合物(TROC)去除的新出现技术。该系统的绘制溶液(DS)的选择应考虑前渗透渗透和膜蒸馏的特殊性。本研究研究了五种不同绘制溶液对杂交浸没前渗透膜蒸馏(FO-MD)模块的前渗透和TROC排斥反渗透和TROC排斥的影响。探讨了每种溶液对FO和MD水通量,逆向盐通量,温度,浓度极化和7个TROC排斥的作用。在脱脂溶液中使用的盐影响了水通量(NaCl = MGOAc2(4.8 LM(-2).h(-1))> Naoac(4.6 Lm(-2).h(-1))> MgCl 2(3.6 LM(-2).h(-1))> EDTA-Na-2(2.8 LM(-2).h(-1)))和MD水通量(NaOAc(4.0 Lm(-2).h( - 1))> NaCl(3.8 LM(-2).h(-1))> MgCl 2(3.3 LM(-2).h(-1))> MGOAC2(3.1 LM(-2).h(-1) > EDTA-NA-2(3.0 LM(-2).H(-1)))。MgCl2绘制溶液产生最低的逆盐通量,展示其在ombr-MD中应用时防止盐度的潜力。MgCl2 NaCl是蒸馏膜完全拒绝的唯一盐,在绘制溶液重新康复期间的盐损失。无论绘制溶液盐,集成的FO-MD模块都可以有效去除7个TROC中的6个。MGCL2和NAOAC提供了最高的TROC当使用MgAoc(2)时,观察到最低抑制剂,当使用MgAoc(2)时,选择MgCl2作为OMBR-MD的最佳DS盐,通过使用相似性与理想解决方案(Topsis)的顺序偏好 工具。

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