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Generation of endocrine disruptor compounds during ozone treatment of tannery wastewater confirmed by biological effect analysis and substance specific analysis

机译:生物效应分析和物质特异性分析证实了制革废水臭氧处理过程中内分泌干扰物的产生

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Ozone (O-3) with its high oxidation potential was used to degrade or eliminate pollutants contained in tannery wastewater when applying different pHs and quantities of O-3. Our objective was a chemical degradation by O-3 to achieve an enhancement of biodegradability, with a parallel decrease in toxicity. Conventional analyses and bioassays beside substance specific analyses were performed to clear-up the behaviour of wastewater content from tanning process. The results demonstrate that the dominant organic pollutants were chemically degraded by oxidation as the chemical and biochemical oxygen demand (COD and BOD) prove, while changes in carbon content monitored by total or dissolved organic carbon content (TOC or DOC) were only marginal. Vibrio fischeri and Daphnia magna toxicity testing performed in parallel proved a decrease in toxicity after O-3-treatment, while the estrogenic activity determined by enzyme-linked receptor assay (ELRA), however, proved an increase of endocrine disruptor compounds (EDC). Results could be explained by substance-specific analyses using gas chromatography (GC-MS) and liquid chromatography/mass spectrometry (LC-MS). From GC-MS analysis the elimination of non-polar compounds could be recognized, whereas the oxidative conversion led to an increase of EDC compounds, which qualitatively could be identified by LC-MS as nonylphenol ethoxylate (NPEO) degradation products: short chain NPEOs, nonylphenol carboxylates (NPECs) and nonylphenol (NP).
机译:当使用不同的pH和数量的O-3时,具有高氧化潜能的臭氧(O-3)用于降解或消除制革废水中所含污染物。我们的目标是通过O-3进行化学降解,以增强生物降解性,同时降低毒性。除了进行物质特异性分析外,还进行了常规分析和生物分析,以清除制革过程中废水含量的行为。结果表明,随着化学和生化需氧量(COD和BOD)的证明,主要的有机污染物被氧化化学降解,而通过总有机碳含量或溶解有机碳含量(TOC或DOC)监测的碳含量变化仅很小。并行进行的费氏弧菌和大型蚤的毒性测试证明了O-3-处理后毒性降低,而酶联受体测定法(ELRA)确定的雌激素活性却证明内分泌干扰物(EDC)增加。结果可以通过使用气相色谱(GC-MS)和液相色谱/质谱(LC-MS)进行的特定物质分析来解释。根据GC-MS分析,可以识别出非极性化合物的消除,而氧化转化导致EDC化合物的增加,LC-MS定性地将其鉴定为壬基酚乙氧基化物(NPEO)降解产物:短链NPEO,壬基酚羧酸盐(NPEC)和壬基酚(NP)。

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