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采用响应面优化碳结构在线催化的气相色谱-串联质谱法检测再生浆中的痕量氯污染物

Detection of trace chlorine pollutants in recycled pulp using gas chromatography-tandem mass spectrometry with response surface-optimized carbon structure online catalysis.

作者信息

Zhang Zihao, Xiao Qian, Jiang Zhongming, Zheng Jianguo, Mai Xiaoxia, Liu Yingfeng, Li Quanzhong

机构信息

Institute of Industrial Raw Material Inspection, Guangzhou Customs District Technology Center, Guangzhou, China.

出版信息

Rapid Commun Mass Spectrom. 2023 Sep 15;37(17):e9591. doi: 10.1002/rcm.9591.

Abstract

RATIONALE

Chlorinated aromatics and alkanes are widely used for their flame retardancy, but they need to be monitored when used in recycled pulp. This paper reports the use of palladium acetate/activated carbon (Pa/Ac) activated by nitric acid as an online catalyst to determine chlorinated aromatics and chlorinated alkanes in recycled paper products using gas chromatography-tandem mass spectrometry (GC-MS/MS), which significantly improves the sensitivity of the method and remarkably lowers the detection limits.

METHODS

The Pa/Ac catalyst was prepared using a self-made catalytic device and used as key to the online catalytic conversion of target chlorinated aromatic hydrocarbons and chlorinated alkanes for GC-MS/MS analysis. The response surface model was used to optimize catalytic conditions. Then GC-MS/MS in the multireaction monitoring mode with online catalysis was applied for the analysis of polychlorinated biphenyls, polychlorinated terphenyls, polychlorinated naphthalene, and chlorinated paraffins (CP) in recycled paper products.

RESULTS

Compared with traditional methods, the Pa/Ac catalyst can transform chlorinated aromatic hydrocarbons into aromatic hydrocarbons through dechlorination hydrogenation, thus lowering the detection limit of the GC-MS/MS method significantly. It can transform paraffin chloride into the corresponding alkane to better distinguish short-chain, medium-chain, or long-chain CPs. Online catalytic conversion significantly improved the sensitivity and reproducibility (88.7%-113.1%) of the method. Tissue samples with various concentration levels of chlorinated aromatics and chlorinated alkanes were tested. The linearity range of the reduced target compounds in the reduction product solution was 0.02-1.00 μg/ml (R  > 0.995). The quantitative detection limit was 0.03-0.05 μg/kg, and relative standard deviation was less than 6.9%.

CONCLUSION

This study was the first to introduce the Pa/Ac catalytic device as an online catalytic unit in the determination of chlorinated aromatics and chlorinated alkanes using the GC-MS/MS method. The target compounds were converted into alkanes and aromatic hydrocarbons with unchanged carbon structures, and the method could achieve a low detection limit with no need for high-end methods such as GC-chemical ionization ion source (CI)-MS or high-resolution mass spectrometry. These methods are suitable for the determination of chlorine pollutants in recycled paper and its raw materials.

摘要

原理

氯化芳烃和烷烃因其阻燃性而被广泛使用,但在再生纸浆中使用时需要进行监测。本文报道了使用经硝酸活化的醋酸钯/活性炭(Pa/Ac)作为在线催化剂,采用气相色谱-串联质谱(GC-MS/MS)测定再生纸制品中的氯化芳烃和氯化烷烃,该方法显著提高了灵敏度并大幅降低了检测限。

方法

使用自制催化装置制备Pa/Ac催化剂,并将其作为在线催化转化目标氯化芳烃和氯化烷烃以进行GC-MS/MS分析的关键。采用响应面模型优化催化条件。然后将在线催化的多反应监测模式下的GC-MS/MS应用于再生纸制品中多氯联苯、多氯三联苯、多氯萘和氯化石蜡(CP)的分析。

结果

与传统方法相比,Pa/Ac催化剂可通过脱氯氢化将氯化芳烃转化为芳烃,从而显著降低GC-MS/MS方法的检测限。它可将氯化石蜡转化为相应的烷烃,以更好地区分短链、中链或长链CP。在线催化转化显著提高了该方法的灵敏度和重现性(88.7%-113.1%)。对含有不同浓度水平氯化芳烃和氯化烷烃的组织样本进行了测试。还原产物溶液中目标化合物还原后的线性范围为0.02-1.00μg/ml(R>0.995)。定量检测限为0.03-0.05μg/kg,相对标准偏差小于6.9%。

结论

本研究首次将Pa/Ac催化装置作为在线催化单元引入到采用GC-MS/MS方法测定氯化芳烃和氯化烷烃中。目标化合物被转化为碳结构不变的烷烃和芳烃,该方法无需GC-化学电离离子源(CI)-MS或高分辨率质谱等高精尖方法即可实现低检测限。这些方法适用于再生纸及其原料中氯污染物的测定。

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