首页> 外文期刊>The Science of the Total Environment >Removal of nonylphenol polyethoxylates by adsorption on polyurethane foam and biodegradation using immobilized Trametes versicolor
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Removal of nonylphenol polyethoxylates by adsorption on polyurethane foam and biodegradation using immobilized Trametes versicolor

机译:通过对聚氨酯泡沫和生物降解的吸附除去壬基酚聚乙烯氧化氢化物,使用固定的Trametes Versicolor

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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~(-1), 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~(-1). 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.
机译:由于它们的内分泌破坏性质,在欧盟中禁止壬基酚聚乙烯(NPEOS)。在包括连续反应器实验室规模实验的概念研究的证据中,聚氨酯泡沫(PUF)-immobilized Trametes Versicolor用于在18天的时间内以酸性营养溶液中这些化合物的浓度水平降低。将生物降解和吸附被确定为主要的去除原理。通过在实验装置中单独生物降解来实现90%的去除,其中发生稳态条件,包括NPEO饱和玻璃和PUF表面。暂时鉴定含有单乙氧基化壬基酚,壬基酚(NP1E,NP2EO,NP)和壬基酚(NP1E,NP2EO,NP)和壬基酚聚乙烯羧酸盐(NPEC)的生物转化产物。将PUF的最大静态NPEO吸附容量(用Erlenmeyer烧瓶实验测定)计算为106mg g〜(-1),并通过Langmuir等温线方程描述了吸附。相应的最大动态吸附容量(通过连续反应器实验确定)为100mg g〜(-1)。这些发现表明PUF是NPEOS的优异吸附剂。因此,PUF可以用作NPEOS的独立吸附剂,或者作为TRAMETS Versicolor的固定剂,可以实现这些潜在有害化合物的高效生物降解。研究结果可以在寻找替代方法中以​​在工艺流出物中删除NPEOS的替代方法。

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