Higgins Carlyn J, Duranceau Steven J
Hazen and Sawyer, 1000 N. Ashley Dr. Suite 1000, Tampa, FL 33602, USA.
Department of Civil, Environmental and Construction Engineering, University of Central Florida, 4000 Central Florida Blvd., Orlando, FL 32816, USA.
Membranes (Basel). 2020 Nov 30;10(12):383. doi: 10.3390/membranes10120383.
A study of the behavior of R- and S-enantiomers of ibuprofen (R-IBU and S-IBU) in aqueous solution by nanofiltration (NF) membranes revealed that up to 23% of the pharmaceutical was adsorbed onto the stainless steel equipment of a flat-sheet experimental unit. Mass balances disclosed that IBU's S-enantiomer was primarily responsible for the adsorption onto the equipment. Additional IBU adsorption was also experienced on the NF membrane coupons, verified by increased contact angle measurements on the surfaces. The IBU-equipment adsorptive relationship with and without the membrane coupon were best described by Freundlich and Langmuir isotherms, respectively. At a feed water pH of 4.0 units and racemic µg/L IBU concentrations, NF removal ranged from 34.5% to 49.5%. The rejection of S-IBU was consistently greater than the R-enantiomer. Adsorption onto the surfaces influenced NF rejection by 18.9% to 27.3%. The removal of IBU displayed a direct relationship with an increase in feed water pH. Conversely, the adsorption of IBU exhibited an indirect relationship with an increase in feed water pH.
一项通过纳滤(NF)膜研究布洛芬的R-和S-对映体(R-IBU和S-IBU)在水溶液中的行为的实验表明,高达23%的药物吸附在平板实验装置的不锈钢设备上。质量平衡表明,IBU的S-对映体是设备吸附的主要原因。通过对NF膜试片表面接触角测量值的增加也证实了在NF膜试片上也存在额外的IBU吸附现象。有和没有膜试片时,IBU与设备的吸附关系分别用Freundlich等温线和Langmuir等温线能得到最好的描述。在进水pH值为4.0单位、外消旋IBU浓度为μg/L时,NF去除率在34.5%至49.5%之间。S-IBU的截留率始终高于R-对映体。表面吸附对NF截留率的影响为18.9%至27.3%。IBU的去除率与进水pH值的升高呈直接关系。相反,IBU的吸附与进水pH值的升高呈间接关系。