Analytical Pharmaceutical Chemistry, Uppsala University, BMC Box 574, SE-751 23 Uppsala, Sweden; GE Healthcare Bio-Sciences AB, Björkgatan 30, SE-751 84 Uppsala, Sweden.
Analytical Pharmaceutical Chemistry, Uppsala University, BMC Box 574, SE-751 23 Uppsala, Sweden.
Sci Total Environ. 2020 Jul 1;724:138159. doi: 10.1016/j.scitotenv.2020.138159. Epub 2020 Mar 26.
Nonylphenol polyethoxylates (NPEOs) are banned in EU due to their endocrine disrupting properties. In a proof of concept study including continuous reactor lab-scale experiments, polyurethane foam (PUF)-immobilized Trametes versicolor was used to reduce the concentration levels of these compounds in an acidic nutrient solution over an 18-day period. Biodegradation and adsorption were identified as the major removal principles. A 90% removal was achieved by solely biodegradation in an experimental setup in which steady state conditions occurred, including NPEO-saturated glass and PUF surfaces. Biotransformation products containing mono- and di-ethoxylated nonylphenol, nonylphenol (NP1EO, NP2EO, NP) and nonylphenol polyethoxy carboxylates (NPECs) were tentatively identified. The maximum static NPEO adsorption capacity of PUF (determined with Erlenmeyer flask experiment) was calculated to 106 mg g, and the adsorption was described by the Langmuir isotherm equation. The corresponding maximum dynamic adsorption capacity (determined by continuous reactor experiment) was 100 mg g. These findings show that PUF is an excellent adsorbent to NPEOs. Therefore, PUF can either be used as a stand-alone adsorbent to NPEOs or as an immobilizing agent for Trametes versicolor through which a highly efficient biodegradation of these potentially harmful compounds can be achieved. The findings can be of importance in the search for alternative methods to remove NPEOs in process effluents.
壬基酚聚氧乙烯醚(NPEOs)因具有内分泌干扰特性已在欧盟被禁用。在一项概念验证研究中,包括连续反应器实验室规模实验,使用聚氨酯泡沫(PUF)固定化彩绒革盖菌来降低酸性营养液中这些化合物的浓度水平,时间为 18 天。生物降解和吸附被确定为主要的去除原理。在一个实验装置中,通过仅生物降解即可实现 90%的去除率,该实验装置中包括 NPEO 饱和玻璃和 PUF 表面,达到了稳定状态。鉴定出含有单乙氧基和双乙氧基壬基酚、壬基酚(NP1EO、NP2EO、NP)和壬基酚聚氧乙烯羧酸酯(NPECs)的生物转化产物。通过摇瓶实验确定 PUF 的最大静态 NPEO 吸附容量为 106 mg g,并通过 Langmuir 等温线方程对吸附进行了描述。通过连续反应器实验确定的相应最大动态吸附容量为 100 mg g。这些发现表明 PUF 是 NPEOs 的优良吸附剂。因此,PUF 可以用作 NPEOs 的独立吸附剂,也可以用作彩绒革盖菌的固定化剂,通过这种方式可以实现这些潜在有害化合物的高效生物降解。这些发现对于寻找替代方法来去除工艺废水中的 NPEOs 可能具有重要意义。