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Assessing the potential of a UV-based AOP for treating high-salinity municipal wastewater reverse osmosis concentrate

机译:评估基于紫外线的AOP处理高盐度市政废水反渗透浓缩液的潜力

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摘要

The UVC/H_2O_2 process was studied at laboratory scale for the treatment of one moderate (conductivity ~8 mS/cm) and two high salinity (~23 mS/cm) municipal wastewater reverse osmosis concentrate (ROC) samples with varying organic and inorganic characteristics. The process efficiency was characterized in terms of reduction of dissolved organic carbon (DOC), chemical oxygen demand (COD), colour and absorbance at 254 nm (A_(254)), and the improvement of biodegradability. The reduction of colour and A_(254) was significantly greater than for DOC and COD for all samples due to the greater breakdown of humic compounds, as confirmed by fluorescence excitation-emission matrix spectra. Fairly small differences in the reduction of DOC (26-38%) and COD (25-37%) were observed for all samples, suggesting that the salinity of the ROC did not have a significant impact on the UVC/H_2O_2 treatment under the test conditions. The biodegradability of the treated ROC samples improved markedly (approximately 2-fold) after 60 min UVC/H_2O_2 treatment. This study indicates the potential of UVC/H2O 2 treatment followed by biological processes for treating high-salinity concentrate, and the robustness of the process where the characteristics of the secondary effluent (influent to RO) and thus resultant ROC vary significantly.
机译:在实验室规模下研究了UVC / H_2O_2工艺,以处理一种具有不同有机和无机特性的中度(电导率〜8 mS / cm)和两种高盐度(〜23 mS / cm)的城市废水反渗透浓缩液(ROC)样品。通过降低溶解有机碳(DOC),化学需氧量(COD),在254 nm处的颜色和吸光度(A_(254))以及提高生物降解性来表征工艺效率。对于所有样品,颜色和A_(254)的降低均显着大于DOC和COD,这是由于腐殖质化合物的分解更大,如荧光激发-发射矩阵光谱所证实的。对于所有样品,观察到的DOC减少量(26-38%)和COD减少量(25-37%)的差别都很小,这表明ROC的盐度对测试中的UVC / H_2O_2处理没有显着影响条件。经过60分钟的UVC / H_2O_2处理后,处理过的ROC样品的生物降解性显着提高(约2倍)。该研究表明,UVC / H2O 2处理的潜力以及随后的用于处理高盐浓缩物的生物工艺,以及该工艺的鲁棒性,在该工艺中,次级流出物(RO的进水)的特性以及由此产生的ROC都有很大差异。

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