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Control of occupational exposure to phenol in industrial wastewater treatment plant of a petroleum refinery in Alexandria, Egypt: An intervention application case study

机译:埃及亚历山大炼油厂工业废水处理厂中苯酚的职业暴露控制:干预应用案例研究

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Phenol exposure is one of the hazards in the industrial wastewater treatment basin any refinery, additively interacts with hydrogen sulfide emitted from the wastewater basin. Consequently, its concentration should be greatly lower than its threshold limit value, The present study aimed at con oiling occupational exposure to phenol in the work environment of wastewater treatment plant in a refinery by reducing phenolic compounds in the industrial wastewater basin. This study was conducted on both laboratory and refinery scales. The first was completed by dividing each wastewater from the outlets of different refinery units into three portions; the first was analyzed for phenolic compounds.. The second and third were for laboratory scale charcoal and bacterial treatments. The two methods were compared regarding their simplicities, design, and removal efficiencies. Accordingly, bacterial treatment by continuous flow of sewage water containing Pseudomonas Aeruginosa was used for refinery scale treatment. Laboratory scale treatment of phenolic compounds revealed higher removal efficiency of charcoal [100,0(0,0) %] than of bacteria [99,9(0.013)%], The refinery scale bacterial treatment was [99.8(0 013) %] efficient Consequently, level of phenol in the work environment after refinery-scale treatment [0,069(0.802) mg/m(3)] was much lower than that before [5.700(26.050) mg/m(3)], with removal efficiency of [99,125(2.335) %]. From the present study, we can conclude that bacterial treatment of phenolic compounds in industrial wastewater of the wastewater treatment plant using continuous flow Of sewage water containing Pseudomonas Aeruginosa reduces he workers exposure to phenol.
机译:苯酚暴露是任何炼油厂工业废水处理池中的危害之一,它与废水池排放的硫化氢相互作用。因此,其浓度应大大低于其阈值极限值。本研究旨在通过减少工业废水池中的酚类化合物来控制炼油厂废水处理厂工作环境中苯酚的职业暴露。这项研究是在实验室规模和精炼规模上进行的。通过将来自不同精炼厂出口的每种废水分为三部分来完成第一阶段。第一个分析了酚类化合物。第二个和第三个分析了实验室规模的木炭和细菌处理。比较了这两种方法的简单性,设计和去除效率。因此,将含铜绿假单胞菌的污水通过连续流动的细菌处理用于精炼规模处理。实验室规模处理酚类化合物显示出比细菌[99,9(0.013)%]更高的木炭[100,0(0,0)%]去除效率,炼厂规模的细菌处理为[99.8(0.013)%]因此,精炼规模处理后[0,069(0.802)mg / m(3)]后工作环境中的苯酚水平大大低于[5.700(26.050)mg / m(3)]之前的水平,去除效率为[99,125(2.335)%]。从目前的研究中,我们可以得出结论,使用铜绿假单胞菌的连续流量对废水处理厂的工业废水中的酚类化合物进行细菌处理,可减少工人接触苯酚的风险。

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