共查询到18条相似文献,搜索用时 156 毫秒
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石油石化废水中酚含量高,限制了汽提净化水回用效率,需进行脱酚处理。文章采用煤油、span-80、液体石蜡、磷酸三丁酯和NaOH构建乳化液膜,探究其对酸性水汽提净化水的脱酚效率。运用以响应面法(RSM)为依据的Box-Behnken设计,以span-80投加量、液体石蜡投加量、油/内比(油相与NaOH之比)和制乳转速为影响因素,建立了汽提净化水中苯酚去除率的二次回归预测模型,并优化了处理条件。结果表明,液体石蜡投加量对苯酚去除率的影响最为显著,其次是span-80投加量。通过RSM分析得到汽提净化水脱酚的最佳实验条件为:span-80投加量2%(质量百分比),液体石蜡投加量15%(体积百分比),油内比1?1,制乳转速6 000 r/min,此时苯酚去除率达到98.65%。萃取分离后的液膜易于破乳,破乳率达到98.33%,且回收油可循环利用,从而大大节约成本实现资源化。 相似文献
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开展实验室模拟苯酚废水的二氧化钛光催化氧化实验。结果表明:在苯酚废水曝气量为0~3L/min的条件下,随着曝气量的增大,COD去除率先增大后减小;初始浓度不变,光照时间为1h的条件下, 调节pH值在3~11,苯酚废水COD去除率随着pH值的增大而减小,当pH值为11时, COD去除率又开始增 大,酸性条件比碱性条件下COD去除率高;随着二氧化钛投加量的增加,COD去除率增大,当二氧化钛投加量 为10g/L时,COD去除率反而降低,二氧化钛最佳投加量为3g/L;随着苯酚废水初始浓度由75mg/L增加至300mg/L,COD去除率由78.2%降低到58.1%;反应温度的改变对COD和TOC的去除率没有影响。 相似文献
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为脱除焦化废水中的酚,本文研究了新型化学破乳法液膜脱酚的工艺,确定了搅拌塔操作条件,并实际应用于焦化厂含酚废水的处理中,结果表明该工艺具有良好的脱酚效果。 相似文献
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《中国环境管理干部学院学报》2016,(5)
试验针对某冷轧带钢公司的废乳化液,研究了聚合硫酸铁(PFS)、聚合氯化铝(PAC)、硫酸铁[Fe_2(SO_4)_3·7H_2O]、硫酸亚铁(FeSO_4·7H_2O)对废乳化液的混凝-上浮影响。实验结果表明,4种混凝剂对破乳效果均较好,综合考虑絮体状态、处理效果及成本,确定硫酸亚铁为本试验的最佳药剂。试验温度为实验季节水温,温度为20℃左右。最佳试验条件为:硫酸亚铁投加量为4 g/L,PAM投加量为0.04 g/L,pH=8,此时COD去除率为95.2%,油去除率为96.7%。 相似文献
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《四川环境》2018,(5)
以苯酚为目标污染物配制模拟石化废水,采用化学共沉淀法将铁氧化物负载在粉末活性炭上以提高粉末活性炭与处理水的分离效果,研究磁性活性炭(FPAC)催化臭氧氧化系统对目标污染物的处理效果。考察了臭氧流量、初始p H和磁性活性炭投加量对处理效果的影响以及磁性活性炭在多次使用后的稳定性。并对磁性活性炭进行SEM、EDX、BET以及BJH分析。结果表明:铁氧化物被成功的负载在粉末活性炭上,磁性活性炭在10min之内完全与处理水分离。在25℃,苯酚初始浓度为200mg/L、初始p H为9时、磁性活性炭投加量为3g/L和臭氧流量为0. 8L/min的条件下反应30min,催化系统的苯酚去除率为99. 80%。磁性活性炭重复使用6次后,对苯酚的去除率仍可达到98. 87%。 相似文献
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Electrocoagulation with aluminum electrodes was used to treat the vegetable oil refinery wastewater (VORW) in a batch reactor. The effects of operating parameters such as pH, current density, PAC (poly aluminum chloride) dosage and Na(2)SO(4) dosage on the removal of organics and COD removal efficiency have been investigated. It has been shown that the removal efficiency of COD increased with the increasing applied current density and increasing PAC and Na(2)SO(4) dosage and the most effective removal capacity was achieved at the pH 7. The results indicate that electrocoagulation is very efficient and able to achieve 98.9% COD removal in 90 min at 35 mAcm(-2) with a specific electrical energy consumption of 42 kWh(kgCOD(removed))(-1). The effluent was very clear and its quality exceeded the direct discharge standard. 相似文献
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This study aims to investigate the treatment of paper mill effluents using electrocoagulation. Removal of lignin, phenol, chemical oxygen demand (COD) and biological oxygen demand (BOD) from paper mill effluents was investigated at various current intensities by using different electrodes (Al and Fe) and at various electrolysis times (1.0, 2.5, 5.0 and 7.5min). It was observed that the experiments carried out at 12V, an electrolysis time of 2min and a current intensity of 77.13mA were sufficient for the removal of these pollutants with each electrode. The removal capacities of the process using an Al electrode were 80% of lignin, 98% of phenol, 70% of BOD, and 75% of COD after 7.5min. Using an Fe electrode the removal capacities were 92%, 93%, 80% and 55%, respectively. In addition, it was found that removal of lignin, phenol, BOD and COD increased with increasing current intensity. In the experiments carried out at different current intensities, higher removal can be explained through a decrease in intra-resistance of solution and consequently an increase at the transfer speed of organic species to electrodes. It was also found that Al electrode performs higher efficiency than Fe electrode except for COD removal. However, the time required for removal of BOD was more than that of COD. The results suggest that electrocoagulation could be considered as an effective alternative to paper mill effluents treatment. 相似文献
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A/O~2法在炼油污水处理中的应用 总被引:3,自引:0,他引:3
为探索A/O2(厌氧Anaerobic/好氧Oxic/好氧Oxic)法在处理炼油污水中的应用,进行了A/O2法中型试验,验证NH3-N容积负荷与去除率之间的关系,以及溶解氧、含油量对处理效果的影响等几项内容。A/O2法应用于炼油污水的处理是可行的,对COD、NH3-N、油、酚、SS等有很好的处理效果。将A/O2法应用于济南炼油厂,各构筑物运转正常,处理效果很好,完全达到国家排放标准。A/O2用来处理炼油污水,工艺可行、技术先进、经济合理,不仅对COD、氨氮去除率高,对其它排放指标去除率都很高。实践证明A/O2法用来处理炼油污水是完全可行的,济南炼厂污水处理的成功经验值得推广。 相似文献
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采用将脱硫废液与炼油废水按比例混合之后对其进行处理的方法,通过批式试验,考查混合废液的BOD5/COD指标及其COD、NH3-N、S2-的去除率。筛选合适的混合液配比,分别对500︰1和800︰1的混合废液进行了模型试验,分析了COD去除效果。结果表明:800︰1的混合废液在10d之后,出水COD为134mg/L,达到了《污水综合排放标准》(GB8978—1996)二级标准要求。最终确定炼油废水与脱硫废液混合的合适比例应不低于800︰1。 相似文献
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以稠油区块含油污泥为研究对象,确定了一种化学清洗方法,使稠油含油污泥清洗后油类含量≤2%。研究了化学清洗过程中固液比、搅拌速度、搅拌时间、加热温度等工艺技术参数对化学清洗效果的影响。通过化学清洗性能评价表明,采用两段化学清洗对稠油含油污泥中油类组分清洗效果最优,其中第一段清洗最优参数为实验温度80℃;固液比1∶4;药剂投加量为SH3.2%,SC 0.8%;搅拌速度250 r/min;搅拌时间30 min。第二段清洗最优参数为实验温度60℃;固液比1∶4,;药剂投加量为EP1.0%,三乙醇胺油酸皂1.0%,SE 1.5%;搅拌速度150 r/min;搅拌时间90 min。 相似文献