苯酚在Fe(III)、Mn(IV)、Ti(IV)和针铁矿氧化物上的湿式氧化。

G. Baruah, Linton Hazarika, K. K. Shah, K. Bhattacharyya
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引用次数: 0

摘要

苯酚及其衍生物存在于水体中是由于工业、农业和生活活动中被污染的废水排放到水体中。制药、石油化工、煤炭加工业等各行业向水体排放酚类化合物。苯酚和取代苯酚对人体有很大的毒性。以实验室合成的针铁矿和商品Fe2O3、TiO2和MnO2为催化剂,在存在和不存在H2O2的情况下,在常温下对水中苯酚进行了氧化破坏。反应在100ml锥形烧瓶中进行。将反应物(苯酚和H2O2)与催化剂按一定比例混合后,盖上瓶盖,在300 K恒温的水浴摇床(NSW,印度)中搅拌一段预定的时间。结果已被表征的百分比破坏的酚。当反应物与h2o2的摩尔比由1:1增加到1:20时,催化剂针铁矿的破坏率为15.8% ~ 23.5%,催化剂负载为0.2 gL-1。除Fe2O3外,随着反应时间的增加,苯酚的总转化率随反应时间的增加而平稳增加,反应时间在60 min后不继续进行。有趣的是,催化剂MnO2在没有H2O2的情况下,即在湿空气氧化中,苯酚的氧化转化率在相同负荷下达到94.4%。还发现,在没有H2O2的情况下,MnO2 + TiO2的1:1混合物在催化剂负载≥6 gL-1时转化率为100%。发现苯酚在室温下可完全氧化为无害的终产物。为此,无论反应混合物中是否存在H2O2, MnO2都是最活跃的催化剂。Fe2O3、针铁矿和TiO2三种氧化物只有在H2O2存在下才能表现得更好。
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Wet air oxidation of phenol on oxides of Fe(III), Mn(IV), Ti(IV) and Goethite.
Phenol and its derivatives exist in water bodies due to the discharge of polluted wastewater from industrial, agricultural, and domestic activities into water bodies. Various industries like pharmaceutical, petrochemical and coal processing industries discharge phenolic compounds into water bodies. Phenol and substituted phenols are quite toxic to humans. Oxidative destruction of phenol in water were carried out at ambient temperature by using laboratory-synthesized goethite and commercial Fe2O3, TiO2, and MnO2 as catalysts in the presence and in the absence of H2O2. The reactions were carried out in a batch reactor in 100 mL conical flasks. After mixing the reactants (Phenol and H2O2) and the catalyst in appropriate amounts, the flasks were capped and the contents were agitated in a water bath shaker (NSW, India) at a constant temperature of 300 K for a predetermined time interval. The results have been characterized in terms of percentage destruction of the Phenol. The catalyst Goethite was able to bring about 15.8 to 23.5% destruction as the reactant-H2O2 mole ratio was increased from 1:1 to 1:20 with a fixed catalyst load of 0.2 gL-1. The total conversion of phenol increases smoothly with an increase in the reaction time from 60 to 300 min in all cases except Fe2O3, in which case the reaction does not advance after 60 min. Interestingly, the catalyst MnO2, brings about 94.4 % oxidative conversion of phenol with the same loading in the absence of H2O2, i.e., in wet air oxidation. It is also found that 1:1 mixture of MnO2 + TiO2 gives 100 % conversion for a catalyst load of ≥ 6 gL-1 in absence of H2O2. It is found that phenol could be completely oxidized to harmless end products at room temperature. For this purpose, MnO2 has been found to be the most active catalyst among the ones tested whether H2O2 is present or not in the reaction mixture. The three oxides Fe2O3, goethite and TiO2 can perform better only in the presence of H2O2.
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