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Enhanced photodegradation of phenolic compounds by adding TiO_2 to soil in a rotary reactor

机译:通过在旋转反应器中向土壤中添加TiO_2来增强酚类化合物的光降解

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Photodegradation of pentachlorophenol (PCP) and p-nitrophenol (PNP) in soil was carried out in a designed rotary reactor, which can provide the soil particles with continually uniform irradiation, and on a series of thin soil layers. TiO_2, as a kind of environmental friendly photocatalyst, was introduced to the soil to enhance the processes. Compared with that on the soil layers, photodegradation of PCP at initial concentration of 60 mg/kg was improved dramatically in the rotary reactor no matter whether TiO_2 was added, with an increase of 3.0 times in the apparent first-order rate constants. The addition of 1 wt% TiO_2 furthered the improvement by 1.4 times. Without addition of TiO_2, PNP (initial concentration of 60 mg/kg) photodegradation rate in the rotary reactor was similar to that on the soil layers. When 1 wt% additional TiO_2 was added, PNP photodegradation was enhanced obviously, and the enhancement in the rotary reactor was 2 times of that on the soil layers, which may be attributed to the higher frequency of the contact between PNP on soil particles and the photocatalyst. The effect of soil pH and initial concentrations of the target compounds on the photodegradation in the rotary reactor was investigated. The order of the degradation rate at different soil pH was relative to the aggregation of soil particles during mixing in the rotary reactor. Photodegradation of PCP and PNP at different initial concentrations showed that addition of TiO_2 to enhance the photodegradation was more suitable for contaminated soil with higher concentration of PCP, while was effective for contaminated soil at each PNP concentration tested in our study.
机译:在设计的旋转反应器中对土壤中的五氯苯酚(PCP)和对硝基苯酚(PNP)进行光降解,该反应器可以在一系列薄的土壤层上为土壤颗粒提供连续均匀的照射。 TiO_2作为一种环境友好的光催化剂,被引入土壤中以增强其过程。与土壤层相比,无论是否加入TiO_2,旋转反应器中初始浓度为60 mg / kg时PCP的光降解都得到了显着改善,表观一级速率常数增加了3.0倍。 1重量%的TiO 2的添加使改进提高了1.4倍。在不添加TiO_2的情况下,旋转反应器中PNP(初始浓度为60 mg / kg)的光降解速率与土壤层相似。当添加1 wt%的TiO_2时,PNP的光降解显着增强,旋转反应器中的增强是土层的2倍,这可能是由于PNP在土壤颗粒上与PNP之间的接触频率更高。光催化剂。研究了土壤pH和目标化合物的初始浓度对旋转反应器中光降解的影响。在不同土壤pH值下降解速率的顺序与在旋转反应器中混合过程中土壤颗粒的聚集有关。在不同的初始浓度下PCP和PNP的光降解表明,添加TiO_2增强光降解更适合于PCP浓度较高的污染土壤,而在本研究中测试的每种PNP浓度下对污染土壤均有效。

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