排序方式: 共有40条查询结果,搜索用时 31 毫秒
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以剪切乳化机为主体,设计、加工了一套采油污水室内再现配置装置,探讨了含油量、剪切强度(与流量同比变化,下同)等不同配置条件下的再现采油污水粒度分布、乳化度、Zeta电位和粘度等性能参数以及乳化机前后的压力损失.结果表明,该采油污水再现配置装置,能满足不同性质采油污水的配置要求,剪切乳化机的压力损失随着剪切强度的增大而明显升高,而随含油量增大没有明显的变化趋势,呈现出基本稳定的状态.较大的剪切强度创造了湍流流体条件,强化了分散相颗粒之间的碰撞聚结行为,因而再现采油污水的乳化度随剪切强度增大而降低,这种降低的程度又受含油量的影响:低含油量时剪切强度的影响明显,高含油量时这种影响逐渐减弱并趋于平缓.鉴于高含油量时趋于形成大粒径油珠,再现采油污水的乳化度随含油量增大而呈现略微的下降趋势,这种下降趋势的程度同时受剪切强度的影响:低剪切强度时含油量的影响较为明显,而高剪切强度时的剪切条件削弱了含油量的影响.Zeta电位随着剪切强度增大而不断增大,使得分散相颗粒带电绝对值降低,乳化体系有脱稳的趋势,导致颗粒间的碰撞聚结机会变大,与乳化度降低的趋势相吻合.剪切强度和含油量对再现采油污水粘度的影响不大. 相似文献
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A laboratory-scale bioreactor with polyethylene semi-soft packing was constructed and utilized to determine the efficlency of sulfide biotransformation to sulfur under various operating parameters. Sodium sulfide dissolved in tap water was pumped into the bioreactor as sulfide for biological desulfurization. The sulfide, sulfur and sulfate-S in the effluent and the sulfide purged as gas-phase HzS were determined to investigate the effects of operating parameters, such as pH, DO, hydraulic retention time (HRT), temperature and salinity, on the sulfide oxidation products. The activity of bacteria was highest at pH 7.8-8.2. The maximal sulfide removal load was 7.25 kg/(m^3·day), with a 322.07 mg/L influent sulfide concentration and 4.80 mg/L DO. The increase of DO value corresponds to a decrease in the sulfur yield. The reactor had the highest sulfide removal load and sulfur yield at 2.55 mg/L DO. HRT had little effect on desulfurization efficiency when the sulfide removal load was kept constant. The most effective desulfurization temperature was 33℃. The sulfide removal load decreased from 2.85 to 0.51 kg/(m^3.day) with increasing salinity from 0.5% to 2.5% (m/m). 相似文献
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Ling Zhu Jiaqing Chen Yan Liu Rongmei Geng Junjie Yu 《Journal of Loss Prevention in the Process Industries》2012,25(6):916-922
This paper presents the findings from a study on the evaporation process of 93 RON (research octane number) unleaded gasoline. The parameters measured in the experiment included the weight, the RVP (Reid vapor pressure) and the viscosity of gasoline, the concentration of NMHC (non-methane total hydrocarbon) in the oil vapor and the concentration of the main vapor constituent. Results showed that the parameters changed significantly as evaporation processed. The weight loss reached 86.36% after 300 days and presented a logarithmic curve with time. The RVP decreased from 38 kPa to 9.6 kPa. The viscosity of gasoline increased from 8.6 × 10?4 Pa s to 1.51 × 10?3 Pa s. All the concentrations of NMHC and the main constituent of vapor decreased in varying amounts. Most of the changes might be attributed to the evaporation of volatile hydrocarbons. 相似文献
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紫外光消毒法是一种重要的污水深度处理方法,消毒器内部辐射强度的分布情况、微生物的停留时间及其运动轨迹对灭菌效果起着至关重要的作用。本文首次在国内系统介绍了采用计算流体动力学(CFD)手段对紫外光消毒器进行数值模拟研究的理论基础和技术路线,指出辐射强度的计算和停留时间的确定是其中的关键。以特定结构的紫外光消毒器为对象,对其内部流场进行了模拟计算,讨论了挡板位置不同所引起的消毒器内部速度场的变化情况;应用离散坐标辐射模型(DO)对紫外光辐射强度分布进行了模拟,同时加入离散粒子模型(DPM)来模拟消毒器内微生物的停留时长和运动轨迹,为最终计算微生物所受紫外光辐射剂量奠定了坚实的基础。 相似文献
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采用改进的好氧-厌氧方法处理苯胺废水,研究了各个操作变量梯度包括苯胺浓度、硝基苯浓度等对苯胺废水处理的影响,并加入硝基苯作为影响参数。实验结果表明,各个变量均在不同程度上影响苯胺废水的处理。经过厌氧-好氧处理后,COD降到200 mg/L以下;提高苯胺浓度时,COD值增大;进水TOC浓度为167.80 mg/L,去除率为79.6%;加入硝基苯与苯胺的降解具有协同作用。在厌氧温度35~40℃,好氧温度28~32℃条件下,进水COD在4 000~6 000 mg/L,苯胺浓度180~250 mg/L左右,处理后出水COD值达到200~500 mg/L,苯胺4.5~6.5 mg/L左右,去除率约85%以上。出水水质可达到《污水综合排放标准(》GB 8978-1996)的排放标准。 相似文献