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Interrelationships Between Flux, Membrane Properties, and Soil Water Transport in a Subsurface Pervaporation Irrigation System

机译:地下渗透灌溉系统中的助焊剂,膜特性和土壤水运输之间的相互关系

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Oil and natural gas-produced waters are by-products of energy development that present unique challenges to the energy industry and impacted landowners. Conventionally, produced waters are typically saline and therefore must be desalinated to some extent before beneficial reuse. Subsurface pervaporation irrigation combines desalination with beneficial reuse in the form of crop irrigation. This investigation studied factors governing water flux for two membranes, one polyether ester (PEE) and one cellulose triacetate (CTA), for use in subsurface pervaporation irrigation. Water flux was determined to be a function of membrane properties (thickness, hydrophilicity) and environmental variables (vapor pressure gradient, soil texture, soil clay content). Specific water fluxes ranged from a maximum of 6.77x10(-2) L/[m(2)center dot day center dot Pa] for CTA membranes to a minimum of 7.97x10(-3) L/[m(2)center dot day center dot Pa] for PEE membranes. Fluxes increased as water vapor pressure in the soil adjacent to the membrane decreased. Total soil water potential and its specific components, matric potential and osmotic potential, influenced flux. Clayey and peaty soils have a lower matric potential than sand for the same soil water content, which translated to a lower vapor pressure and hence higher flux for clayey/peaty soils.
机译:石油和天然气生产的水域是能源发展的副产品,对能源行业和受影响的土地所有者表示独特的挑战。通常,产生的水通常是盐水,因此必须在有益的重用之前在某种程度上脱盐。地下渗透灌溉灌溉与作物灌溉形式的益处理结合了脱盐。该研究研究了用于两个膜的水通量的因素,一种聚醚酯(PEE)和一种纤维素三乙酸(CTA),用于地下渗透灌溉。将水通量确定为膜性能(厚度,亲水性)和环境变量(蒸气压梯度,土壤粘土含量)的函数。用于CTA膜的最多6.77×10(-2)L / [M(2)中心点中心点PA]的特定水通量为最小值为7.97×10(-3)L / [M(2)中心点日间中心点PA]为PEE膜。随着膜附近的土壤中的水蒸气压力而增加,助熔剂增加。全土壤水势及其特定组成部分,型号和渗透潜力,影响助焊剂。粘土和泥质土壤具有比同一土壤含水量的砂潜力较低,其转化为较低的蒸气压,因此粘土/泥质土壤的助焊剂较高。

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