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Innovative Optical-Sensing Technology for the Online Fouling Characterization of Silicon Carbide Membranes during the Treatment of Oily Water

机译:创新的光学传感技术用于处理含油水时碳化硅膜的在线结垢特性

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摘要

The oil and gas industry generates a large volume of contaminated water (produced water) which must be processed to recover oil before discharge. Here, we evaluated the performance and fouling behavior of commercial ceramic silicon carbide membranes in the treatment of oily wastewaters. In this context, microfiltration and ultrafiltration ceramic membranes were used for the separation of oil during the treatment of tank dewatering produced water and oily model solutions, respectively. We also tested a new online oil-in-water sensor (OMD-32) based on the principle of light scattering for the continuous measurement of oil concentrations in order to optimize the main filtration process parameters that determine membrane performance: the transmembrane pressure and cross-flow velocity. Using the OMD-32 sensor, the oil content of the feed, concentrate and permeate streams was measured continuously and fell within the range 0.0–200 parts per million (ppm) with a resolution of 1.0 ppm. The ceramic membranes achieved an oil-recovery efficiency of up to 98% with less than 1.0 ppm residual oil in the permeate stream, meeting environmental regulations for discharge in most areas.
机译:石油和天然气工业会产生大量的污水(产出水),必须对其进行处理才能在排放之前回收石油。在这里,我们评估了工业陶瓷碳化硅膜在含油废水处理中的性能和结垢行为。在这种情况下,微滤和超滤陶瓷膜分别用于在罐式脱水生产水和油性模型溶液的处理过程中分离油。我们还基于光散射原理测试了一种新的在线水包油传感器(OMD-32),用于连续测量油浓度,以优化确定膜性能的主要过滤工艺参数:跨膜压力和交叉-流速。使用OMD-32传感器,可以连续测量进料,浓缩液和渗透液中的油含量,其范围为百万分之0.0-200(ppm),分辨率为1.0 ppm。陶瓷膜的产油效率高达98%,而渗透物流中的残留油少于1.0 ppm,符合大多数地区排放的环境法规。

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