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针对海洋柴油溢油,采用破乳剂对油水快速分离进行了研究.分别对油水比、温度、破乳剂量及存在Ca2 、Mg2 的影响因素,进行了系列油水快速分离试验,并测定了破乳剂作用下乳液的界面张力.试验结果表明,柴油溢油形成的乳液稳定性较差,油水分离较容易,但分离后的水中含油量较高.加入聚醚类非离子型破乳剂FA、FB、FC和FD,可达到油水低温、快速分离的目的,且分离后的水中含油量较低.随着破乳剂浓度的增加,界面张力降低,当破乳剂浓度达到临界胶束浓度(CMC)时,界面张力最小,脱水效果最好.Ca2 、Mg2 对聚醚类非离子型破乳剂的影响很小. 相似文献
274.
Baseline study of methane emission from open digesting tanks of palm oil mill effluent treatment 总被引:1,自引:0,他引:1
Anthropogenic release of greenhouse gases, especially CO2 and CH4 has been recognized as one of the main causes of global warming. Several measures under the Kyoto Protocol 1997 have been drawn up to reduce the greenhouse gases emission. One of the measures is Clean Development Mechanisms (CDM) that was created to enable developed countries to cooperate with developing countries in emission reduction activities. In Malaysia, palm oil industry particularly from palm oil mill effluent (POME) anaerobic treatment has been identified as an important source of CH4. However, there is no study to quantify the actual CH4 emission from the commercial scale wastewater treatment facility. Hence, this paper shall address the CH4 emission from the open digesting tanks in Felda Serting Hilir Palm Oil Mill. CH4 emission pattern was recorded for 52 weeks from 3600 m3 open digesting tanks. The findings indicated that the CH4 content was between 13.5% and 49.0% which was lower than the value of 65% reported earlier. The biogas flow rate ranged between 0.8 l min−1 m−2 and 9.8 l min−1 m−2. Total CH4 emission per open digesting tank was 518.9 kg day−1. Relationships between CH4 emission and total carbon removal and POME discharged were also discussed. Fluctuation of biogas production was observed throughout the studies as a result of seasonal oil palm cropping, mill activities, variation of POME quality and quantity discharged from the mill. Thus only through long-term field measurement CH4 emission can be accurately estimated. 相似文献
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Vosyliene MZ Kazlauskiene N Joksas K 《Environmental science and pollution research international》2005,12(3):136-139
Background, Goal and Scope Cleaner CRYSTAL Simple Green (SG) was used for the cleanup of the oil spill in the Baltic Sea near Lithuania in 2001. No scientific data are available on the effects and consequences of its application for local aquatic life. The aim of this study was to determine and compare sublethal effects of a) solution SG; b) crude oil alone; c) SG in combination with oil on rainbow trout Oncorhynchus mykiss at different stages of its development in laboratory conditions.Methods Laboratory studies were performed on adult rainbow trout (4-day duration) and on yolk-sac larvae (25-day duration) evaluating their biological parameters. Concentrations of water-soluble and thin-dispersed fractions of petroleum hydrocarbons were measured using gas chromatography.Results and Discussion SG solution (0.5 mg/l) did not affect the survival of larvae and adult fish, and no significant changes were determined in respiratory parameters of the exposed larvae and adult fish. The most expressed alterations were found in morphological parameters (a decrease in the average body mass) of larvae and in haematological indices (a decrease in the leukocyte count) of adult fish at the end of the tests. Crude oil (1610 mg/l) did not affect the survival of adult fish during the 4-day exposure. An increase in larvae mortality rate (~ 36%) was recorded at the end of the tests. A significant decrease in the average body mass and heart rate of larvae as well as in gill ventilation frequency of larvae and adult fish were determined. SG combined with oil induced an increase in larval mortality  46% of individuals died at the end of the tests. No mortality was recorded in adult fish. The average body mass and heart rate of larvae were significantly decreased. Marked changes were also found in respiratory parameters (gill ventilation frequency of larvae and adult fish significantly decreased, while coughing rate increased). A 1-day, 2-day exposure of fish to SG combined with oil induced a significant decrease in the leukocyte count of adult fish, which was also determined at the end of the tests. The augmentation of adverse impact could be explained by the data obtained from our studies. When SG was added into dilution water with crude oil the concentration of petroleum hydrocarbons in the mixture increased 3 ~ 4.5 times after 24 h and 96 h, respectively. Conclusions The comparative study of the effects of crude oil alone, SG and SG combined with oil showed that their toxic effects on fish differed. Oil combined with SG was found to be more toxic to fish (larvae and adults) than SG alone and oil alone. Fish at early stages of development (yolk-sac larvae) were more sensitive to the effects of the compounds studied than adults.Recommendations and Outlook To diminish the negative impact of oil spill cleanup using chemicals on aquatic ecosystems, it is recommended to carry out more comprehensive studies of their effects and after-effects in laboratory conditions using a wide scale of local aquatic organisms. The selected species of the most sensitive aquatic organisms should include those which are unable to escape the impact of combined action of oil and cleaners. Special attention should be directed to the research of effects of these pollutants on studied organisms at their most sensitive stages of life (reproduction, hatching, early stages of development), as after-effects of exposure to pollutants may be observed in future generations. 相似文献
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目的 开发原料价廉易得、能实际应用的缓蚀剂。方法 以桐油为原料,水解后得到桐油酸,然后与二乙烯三胺经过酰胺化和环化反应,生成桐油咪唑啉缓蚀剂。在模拟现场环境的条件下对所合成的桐油咪唑啉缓蚀剂进行电化学测试和高温高压性能评价。利用量子化学计算对桐油咪唑啉缓蚀剂的分子动力学进行模拟,探讨其在Fe表面的吸附作用。结果 红外光谱显示,桐油水解后可生成桐油酸,最终合成物为桐油咪唑啉。电化学测试表明,随着桐油咪唑啉缓蚀剂添加量的增大,20#测试钢片的自腐蚀电位逐渐提高,腐蚀电流降低。高温高压模拟实验显示,加入油酸咪唑啉后,腐蚀速率明显降低,由0.3181 mm/a降到了0.0392 mm/a。量子化学计算表明,桐油咪唑啉分子中的咪唑啉环会平行吸附于铁表面,形成一层缓蚀剂膜。结论 价廉易得的桐油经水解后可得桐油酸,再与二乙烯三胺经过酰胺化和环化反应最终合成了桐油咪唑啉缓蚀剂。该缓蚀剂添加量越大,对20#钢片的缓蚀效果越好,呈现出了较好的缓蚀效果,其分子结构中的咪唑环能平行吸附于铁表面,属于抑制阳极型缓蚀剂。 相似文献
278.
为探究纳米乳化油原位修复硝酸盐污染地下水过程中产气对含水介质渗透性的影响,以硝酸盐为目标污染物,采用活性污泥滤液接种,分别以纳米乳化油、吐温80和司盘80为碳源开展硝酸盐降解批实验研究,探讨和评估硝酸盐降解及降解过程中的产气情况.结果显示,纳米乳化油、吐温80和司盘80均能促进硝氮的降解,在实验的100d内,共完成7个周期硝酸盐氮的有效去除,总去除率分别为79.5%、63.8%和68.8%.在硝酸盐氮降解过程中,受厌氧发酵和反硝化作用的影响,各反应体系中均有气体生成,只有活性污泥反应体系中主要产气成分是CO2,未加碳源和分别加3种碳源的4个反应体系(都添加活性污泥和硝酸盐)中主要产气成分是CO2、N2.其中,添加纳米乳化油的反应体系U型管产气量最大,为47.73mL;受碳源厌氧发酵的影响,添加司盘80反应体系总产气量最大,为205.34mL.纳米乳化油反应体系次之,吐温80反应体系最小.根据三氮的变化,结合纳米乳化油反应体系理论与实际产气对比显示,在纳米乳化油强化硝酸盐反硝化过程中,18.8%纳米乳化油厌氧发酵产生CO2,95.4%硝氮反硝化生成N2. 相似文献
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