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新型 Fe-C 微电解填料在含油污水治理中的制备与研究。

Preparation and study of a new type of Fe-C microelectrolysis filler in oil-bearing ballast water treatment.

机构信息

School of Naval Architecture and Mechanical-electrical Engineering, Zhejiang Ocean University, Zhoushan, 316022, People's Republic of China.

College of Marine Science and Technology, Zhejiang Ocean University, Zhoushan, 316022, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2019 Apr;26(11):10673-10684. doi: 10.1007/s11356-019-04480-z. Epub 2019 Feb 18.

Abstract

In the transportation of petroleum, large amount of oil polluted water will be produced, and the oil polluted water pumping into ocean will destroy ocean environment. To address oil-bearing ballast water, we fabricated a novel type of Fe-C microelectrolysis filler by using magnet powder, coconut shell biochar powder, bentonite, ammonium oxalate, and nickel powder. The COD and oil content removal efficiencies of 100 g/L oily wastewater were approximately 79.82% and 91.68%, respectively, after 100 min treatment at the following conditions: Fe-C mass ratio, 5:1; bentonite content, 20%; calcination temperature, 900 °C; calcination time, 2 h; ammonium oxalate content, 1.5%; and amount of nickel addition, 6.78%. The characteristics of the Fe-C microelectrolysis filler were analyzed. The surface structure of the filler was loose and porous, and its pores were developed. The Brunauer-Emmett-Teller (BET) surface area reached 49.4667 m g. A microelectrolysis filler is mainly mesoporous and contains large pores. Its average pore size is 2.6942 nm. Meanwhile, the results of our XRD analysis showed that some fillers were metal oxides, and most of them were simple metal substances.

摘要

在石油运输过程中,会产生大量含油污水,这些含油污水被排入海洋会破坏海洋环境。为了解决含油压载水问题,我们采用磁铁粉、椰壳生物炭粉、膨润土、草酸铵和镍粉,制备了一种新型的 Fe-C 微电解填料。在以下条件下处理 100g/L 含油废水 100min 后,COD 和油含量的去除率分别约为 79.82%和 91.68%:Fe-C 质量比为 5:1;膨润土含量为 20%;煅烧温度为 900°C;煅烧时间为 2h;草酸铵含量为 1.5%;镍的添加量为 6.78%。分析了 Fe-C 微电解填料的特性。该填料的表面结构疏松多孔,孔发达。BET 比表面积达到 49.4667m²/g。微电解填料主要为中孔,含有大孔,平均孔径为 2.6942nm。同时,XRD 分析结果表明,部分填料为金属氧化物,大部分为简单金属物质。

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