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首页> 外文期刊>Theoretical foundations of chemical engineering >Bio-Foam Internals for Potential Water Treatment Units Adapted to Marine Applications: Hydrodynamic Study
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Bio-Foam Internals for Potential Water Treatment Units Adapted to Marine Applications: Hydrodynamic Study

机译:用于潜在水处理单元的生物泡沫内部适用于海洋应用:流体动力学研究

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Reliance on harmless and renewable resources to mitigate process environmental footprint has become increasingly important for the design and operation of sustainable processes. One challenge that is prevalent in marine water surface contamination concerns treatment and recovery from oil spills where efforts are needed to design emergency units adapted to marine conditions. Potential candidates are naturally-grown porous loofa (bio-foam) materials which can be integrated in floating units transportable to the contamination area. For this purpose, a hexapod platform motion simulator was employed to emulate sea-driven floating movements of a column packed with two loofa bio-foam packings (dense and open-cell samples) and operated in cocurrent gas-liquid upflow mode. The column hydrodynamic behaviour was monitored by means of capacitance wire mesh sensors and electrical capacitance tomography for various inclination and rolling parameters. In the case of dense bio-foam packing, the relatively even distribution of gas and liquid in the vertical bed tended to degrade as the bed tilted up to 15 degrees. Column rolling prompted fluid displacements in bed crosswise planes inducing notable amplitude oscillations of the local liquid saturation. Kerosene exhibited a strong foaming behavior with promotion of earlier inception of pulsing flow as a function of column inclination as compared to water.
机译:依赖对减轻过程的无害和可再生资源来缓解过程环境足迹对于可持续流程的设计和运营越来越重要。在海水表面污染中普遍存在的一个挑战涉及从漏油泄漏的治疗和恢复,以便设计适应海洋状况的急救单位。潜在的候选物是天然种植的多孔砂丝(生物泡沫)材料,其可以集成在污染区域可移动的浮动单元中。为此目的,采用六足平台运动模拟器来模拟填充柱的海驱浮动运动,其填充有两个砂质生物泡沫包装(致密和开放式电池样品),并在CoCurrent气液上流模式下操作。通过电容线网格传感器和电容断层扫描来监测柱流体动力学行为,用于各种倾斜和滚动参数。在致密的生物泡沫包装的情况下,随着床倾斜至15度的垂直床中的气体和液体的含量和液体的相对均匀分布。柱轧制升高的床中的流体位移横向平面诱导局部液体饱和度的显着幅度振荡。与水相比,煤油表现出强烈的发泡行为,促进脉冲流较早的脉动流动。

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