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Effects of Three Types of Oil Dispersants on Biodegradation of Dispersed Crude Oil in Water Surrounding Two Persian Gulf Provinces

机译:三种类型的油分散剂对波斯湾两个省周围水中分散油的生物降解的影响

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摘要

Objective. To determine the most effective and biodegradable dispersant of spilled oil in water surrounding two Persian Gulf provinces. Methods. This study compared the effects of three dispersants, Pars 1, Pars 2, and Gamlen OD4000 on removal of oil in two Persian Gulf provinces' water. Overall, 16 stations were selected. Using the Well method, the growth rate of isolated bacteria and fungi was identified. To specify the growth rate of microorganisms and their usage of oil in the presence of the above-mentioned dispersants, as exclusive sources of carbon, the bacteria were grown in culture medium for 28 days at 120 rpm, 30°C, and their optical density was measured by spectrophotometry. Then, we tested biological oxygen demand (BOD) and chemical oxygen demand (COD) in microorganisms. Results. The highest growth rate was documented for the growth of microorganisms on either Pars 1 or Pars 2 dispersants or their mixtures with oil. However, the culture having microorganisms grown on Pars 1 had higher BOD and COD than the other two dispersants (9200 and 16800 versus 500 and 960, P < 0.05). Mixture of oil and Pars 2 as well as oil and Pars 1 dispersants showed the highest BODs and CODs, respectively. In the Bahregan province, microorganisms grown on Pars 2 had maximum amount of BOD and COD in comparison with Pars 1 and Gamlen dispersants (7100 and 15200 versus 6000 and 10560, P < 0.05). Conclusion. Pars 1 and Pars 2 were the most effective dispersants with highest degradability comparing Gamlen. In each region, the most suitable compound for removing oil spill from offshores with least secondary contamination should be investigated.
机译:目的。确定溢油在波斯湾两个省周围的水中的最有效和可生物降解的分散剂。方法。这项研究比较了三种分散剂Pars 1,Pars 2和Gamlen OD4000对去除波斯湾两个省水中的油的影响。总共选择了16个电台。使用Well方法,确定了分离的细菌和真菌的生长速率。为了确定在上述分散剂存在下微生物的生长速率及其在油中的使用,作为唯一的碳源,将细菌在120 rpm,30°C的培养基中培养28天,并测定其光密度用分光光度法测定。然后,我们测试了微生物中的生物需氧量(BOD)和化学需氧量(COD)。结果。在Pars 1或Pars 2分散剂或它们与油的混合物上,微生物的生长速度最高。但是,具有在Pars 1上生长的微生物的培养物的BOD和COD高于其他两种分散剂(9200和16800与500和960,P <0.05)。油和Pars 2的混合物以及油和Pars 1的分散剂分别显示出最高的BOD和COD。在Bahregan省,与Pars 1和Gamlen分散剂相比,​​在Pars 2上生长的微生物的BOD和COD量最大(7100和15200对6000和10560,P <0.05)。结论。与Gamlen相比,Pars 1和Pars 2是最有效的分散剂,具有最高的可降解性。在每个地区,都应研究最合适的化合物,以消除次生污染最少的海上溢油。

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