Martínez C, Gómez V, Pocurull E, Borrull F
Department of Analytical Chemistry and Organic Chemistry, Universitat Rovira i Virgili, Marcel·lí Domingo s/n, Sescelades Campus, Tarragona 43007, Spain E-mail:
Dow Water & Process Solutions, Dow Chemical Ibérica S.L., Autovia Tarragona-Salou s/n, Tarragona 43006, Spain.
Water Sci Technol. 2015;71(1):117-25. doi: 10.2166/wst.2014.475.
Adsorption of organic substances on reverse osmosis (RO) membrane surfaces may form an organic film on the membrane, known as organic fouling, and cause flow-rate loss. This problem is mostly unavoidable as no pretreatment method exists for perfect removal of possible foulants, including organic compounds resulting from undesirable bioactivity. Understanding the characteristics of fouling layers is an essential step towards overall improvement of RO membrane operations. In this study, the organic fouling in RO membranes treating the effluent of a secondary treatment from an urban wastewater treatment plant was characterized. Headspace solid phase microextraction (HS-SPME) coupled with gas chromatography-mass spectrometry has been used for the first time, to provide valuable information of organic fouling. Different polarity SPME fibers were tested for this purpose. In addition, the characterization of the organic fouling obtained by HS-SPME was compared with the results obtained by extraction using several organic solvents. The results indicated that more compound families can be identified by HS-SPME than by organic solvent extraction. Moreover, complementary organic analyses were done for better understanding of the organic fouling in RO membranes, such as total organic carbon and loss on ignition.
有机物质在反渗透(RO)膜表面的吸附可能会在膜上形成有机膜,即所谓的有机污染,并导致流量损失。由于不存在能够完美去除包括不良生物活性产生的有机化合物在内的潜在污染物的预处理方法,这个问题几乎无法避免。了解污染层的特性是全面改善RO膜运行的关键一步。在本研究中,对处理城市污水处理厂二级处理出水的RO膜中的有机污染进行了表征。首次采用顶空固相微萃取(HS-SPME)结合气相色谱-质谱联用技术,以提供有关有机污染的有价值信息。为此测试了不同极性的SPME纤维。此外,将HS-SPME获得的有机污染表征结果与使用几种有机溶剂萃取获得的结果进行了比较。结果表明,与有机溶剂萃取相比,HS-SPME能够鉴定出更多的化合物类别。此外,还进行了补充有机分析,以便更好地了解RO膜中的有机污染,如总有机碳和烧失量。