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首页> 外文期刊>Chemosphere >Isotope dilution analysis of polychlorinated biphenyls (PCBs) in transformer oil and global commercial PCB formulations by high resolution gas chromatography-high resolution mass spectrometry
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Isotope dilution analysis of polychlorinated biphenyls (PCBs) in transformer oil and global commercial PCB formulations by high resolution gas chromatography-high resolution mass spectrometry

机译:高分辨率气相色谱-高分辨率质谱法分析变压器油和全球商用PCB配方中的多氯联苯(PCB)的同位素稀释

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Special polychlorinated biphenyls (PCBs) standards (native and isotope labeled) were analyzed by isotope dilution method using HRGC-HRMS. Multiple analysis of special PCBs standards by three different laboratories produced the relative response factors (RRFs) and relative standard deviations (RSDs %) was in the average of 0.979 and 3.86, respectively. Additionally, inter-laboratory analysis of various forms of transformer oil revealed the PCBs concentrations were in the following order; PCBs fortified transformer oil (940-1300 ng/g) > PCB polluted transformer oil (490680 ng/g) > chemically degraded-transformer oil (480-490 ng/g) and PCBs free oil (ND-17 ng/g). Chemical degradation resulted in an order of magnitude decrease in the PCB concentrations. Specifically, higher chlorinated PCBs degraded into lower chlorinated PCBs. Also, composition of PCBs have been determined in PCB formulations from Japan (Kanechlor), Germany (Clophen), USA (Aroclor), Russia (Sovol) and Poland (Chlorofen). Major PCBs (24-PCB congeners) contributed 54-67%, 55-68%, 16-69%, 71% and 72% in Kanechlor, Clophen, Aroclor, Sovol and Chlorofen, respectively to total PCBs. The homologue pattern of Kanechlor, Aroclor and Clophen in technical fromulation was similar (e.g., Kanechlor-300 resembled to those of Clophen A-30 and Aroclor-1242). Furthermore, congener-specific distributions of major PCBs/dioxin-like PCBs and toxic equivalency quantities (TEQ) were calculated. Based on our tentative assumption calculations, cumulative production of five different technical PCB formulations, WHO-TEQ emission was estimated to be approximately 16.05 tons. (c) 2005 Elsevier Ltd. All rights reserved.
机译:使用HRGC-HRMS通过同位素稀释法分析了特殊的多氯联苯(PCB)标准(天然和同位素标记)。由三个不同实验室对特殊PCBs标准进行的多次分析得出相对响应因子(RRF)和相对标准偏差(RSDs%)的平均值分别为0.979和3.86。此外,实验室对各种形式的变压器油的分析表明,PCBs的浓度按以下顺序排列: PCB强化的变压器油(940-1300 ng / g)> PCB污染的变压器油(490680 ng / g)>化学降解的变压器油(480-490 ng / g)和PCBs的游离油(ND-17 ng / g)。化学降解导致PCB浓度下降一个数量级。具体而言,较高氯化的PCB降解为较低氯化的PCB。另外,已经确定了来自日本(Kanechlor),德国(Clophen),美国(Aroclor),俄罗斯(Sovol)和波兰(Chlorofen)的PCB配方中的PCB组成。主要的多氯联苯(24种多氯联苯同源物)分别在五氯苯酚,克洛芬,阿罗克洛,索伏尔和氯绿芬中占54-67%,55-68%,16-69%,71%和72%。技术性制剂中Kanechlor,Aroclor和Clophen的同源模式相似(例如Kanechlor-300与Clophen A-30和Aroclor-1242相似)。此外,还计算了主要多氯联苯/类二恶英类多氯联苯的同类物分布和毒性当量(TEQ)。根据我们的暂定假设计算,五种不同的多氯联苯技术配方的累计生产,WHO-TEQ排放量估计约为16.05吨。 (c)2005 Elsevier Ltd.保留所有权利。

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