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Base-catalysed decomposition of polychlorinated biphenyls in transformer oils by mixture of sodium hydroxide glycerol and iron

机译:氢氧化钠甘油和铁的混合物碱催化分解变压器油中的多氯联苯

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摘要

In this research, a method based on base-catalysed decomposition (BCD) was developed using sodium hydroxide and glycerol for dechlorination of transformer oils with low levels of polychlorinated biphenyls (PCBs). PCB removal and dechlorination efficiencies were measured by gas chromatography and the silver nitrate titration method, respectively. PCB dechlorination and removal efficiencies after 4 h at 250°C and in the presence of iron were 97.4% and 99.8%, respectively. However, in the absence of iron the same efficiencies were calculated to be 79.4 and 99.7%, respectively. The dielectric loss factor of oil refined at 250°C was 0.0064 and did not meet the required standards to be reused in the transformers. However, that refined at 200°C satisfied the standards with acceptable conversion rates. Use of iron, besides increasing conversion rates, changed the mechanism of the reaction from nucleophilic substitution to a combination of hydrodechlorination and nucleophilic substitution. In the presence of iron, highly chlorinated PCBs were converted to less chlorinated PCBs, and this caused the concentration of less chlorinated PCBs to reach a peak and then decline thereafter. The production of PCB 36 confirmed this. However, in the absence of iron particles, all changes in the PCB concentration curves were downward.
机译:在这项研究中,开发了一种基于碱催化分解(BCD)的方法,该方法使用氢氧化钠和甘油对低含量的多氯联苯(PCB)的变压器油进行脱氯。分别通过气相色谱法和硝酸银滴定法测量PCB的去除效率和脱氯效率。在250°C和铁存在下4小时后,PCB的脱氯和去除效率分别为97.4%和99.8%。然而,在没有铁的情况下,相同的效率分别计算为79.4和99.7%。在250°C下精炼的油的介电损耗因子为0.0064,不符合在变压器中重复使用的要求标准。但是,在200°C下精炼的产品达到了可接受的转化率标准。铁的使用除了提高转化率外,还使反应机理从亲核取代变为加氢脱氯和亲核取代的结合。在铁的存在下,高度氯化的PCB被转化为氯化程度较低的PCB,这导致氯化程度较低的PCB的浓度达到峰值,然后下降。 PCB 36的生产证实了这一点。但是,在没有铁颗粒的情况下,PCB浓度曲线的所有变化都是向下的。

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