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首页> 外文期刊>Comptes Rendus Chimie >Co-Mg-Al oxides issued of hydrotalcite precursors for total oxidation of volatile organic compounds. Identification and toxicological impact of the by-products
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Co-Mg-Al oxides issued of hydrotalcite precursors for total oxidation of volatile organic compounds. Identification and toxicological impact of the by-products

机译:水滑石前驱体发出的Co-Mg-Al氧化物,用于挥发性有机化合物的完全氧化。副产物的鉴定和毒理学影响

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Catalysts based on Co-Mg-Al, which were used for the total oxidation of toluene, were synthesized by using the hydrotalcite pathway. The calcination allowed us to obtain various mixed oxide types (i.e. Co3O4, Co2AlO4 or CoAl2O4), presenting mesopores of about 8 nm and high specific surface areas. The solids were tested for the total oxidation of toluene and showed a total selectivity in CO2 and H2O for 100% of toluene conversion. However, studies using diffuse reflectance infrared "operando" and GC-MS allowed us to identify intermediary by-products stemming from the catalytic oxidation of toluene: benzene and small quantities of benzaldehyde, styrene and acetophenone. In order to contribute to the improvement of the current scientific knowledge on volatile organic compound (VOC) toxicity in humans, the lung toxicity of toluene, benzene or their association was determined by using a human epithelial lung cell model (i.e. L132 cell line). VOC cytotoxicity was studied with three complementary methods: the enzymatic activity of extracellular lactate dehydrogenase (LDH), the enzymatic activity of mitochondrial dehydrogenase (mDH), and the incorporation of 5-Bromodesoxyuridine (5-BrdU). Taken together, these results showed the occurrence of adverse effects, notably reported by significant increases in LDH activity in cell culture supernatants, 24 hours after L132 cell exposure not only to toluene alone or benzene alone, but also to their association. This original approach allowed us to integrate some toxicological parameters to help the choice of new-dedicated catalysts for the oxidative conversion of VOC.
机译:通过水滑石途径合成了基于Co-Mg-Al的催化剂,用于甲苯的全氧化。煅烧使我们可以获得各种混合氧化物类型(即Co3O4,Co2AlO4或CoAl2O4),具有约8 nm的中孔和高比表面积。测试了固体的甲苯总氧化,并显示了100%的甲苯转化率在CO2和H2O中的总选择性。但是,使用漫反射红外“操作数”和GC-MS进行的研究使我们能够鉴定出甲苯催化氧化产生的中间副产物:苯和少量苯甲醛,苯乙烯和苯乙酮。为了有助于改善有关挥发性有机化合物(VOC)对人的毒性的科学知识,通过使用人类上皮肺细胞模型(即L132细胞系)确定了甲苯,苯或它们的缔合的肺毒性。用三种互补的方法研究了VOC的细胞毒性:细胞外乳酸脱氢酶(LDH)的酶活性,线粒体脱氢酶(mDH)的酶活性以及5-Bromodesoxyuridine(5-BrdU)的掺入。综上,这些结果显示了不良反应的发生,特别是通过L132细胞暴露于L132细胞后24小时,不仅单独暴露于甲苯或单独暴露于苯,而且暴露于它们的缔合,LDH活性显着增加。这种原始方法使我们能够整合一些毒理学参数,以帮助选择用于VOC氧化转化的新型专用催化剂。

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