首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Treatment of oily wastewater produced by washing of gasoline reserving tanks using self-made and commercial nanofiltration membranes
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Treatment of oily wastewater produced by washing of gasoline reserving tanks using self-made and commercial nanofiltration membranes

机译:使用自制的商用纳滤膜处理汽油储罐冲洗产生的含油废水

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摘要

The oily wastewater is generated by various oil and petroleum industries. The discharge of oily wastewater into the natural environment creates a major ecological problem throughout the world. In this work, the effect of application of self-made and commercial nanoflltration membranes was evaluated for treating of oily wastewater. The wastewater was pre-treated by the microfiltration membrane. During the various nanoflltration experiments, the permeated flux was found between 20 and 265 kg m~(-2) h~(-1). The different applied pressures were 5, 10, 15 and 20 bar, and also different temperatures were 20, 30 and 40 °C. The results demonstrated that the chemical oxygen demand (COD) and electrical conductivity (EC) were considerably decreased even more than 10 times lower than initial value in raw and pre-treated feeds. In addition, the permeate flux was increased with increase in applied pressure and temperature. The usage of pre-treatment can also noticeably enhance the efficiency of nanoflltration membrane and wastewater treatment. The response surface analysis was used to achieve the optimum conditions.
机译:含油废水是由各种石油和石油工业产生的。将含油废水排放到自然环境中,在世界范围内造成了主要的生态问题。在这项工作中,评估了自制和商用纳米滤膜在处理含油废水中的效果。用微滤膜对废水进行预处理。在各种纳米过滤实验中,发现渗透通量在20至265 kg m〜(-2)h〜(-1)之间。不同的施加压力为5、10、15和20 bar,不同的温度为20、30和40°C。结果表明,原料和预处理饲料的化学需氧量(COD)和电导率(EC)大大降低,甚至比初始值低10倍以上。另外,渗透通量随着施加压力和温度的增加而增加。预处理的使用还可以显着提高纳滤膜和废水处理的效率。响应面分析用于获得最佳条件。

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