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Removal of Low Concentrated Cadmium Ions Using Fixed-bed Sulfate-Reducing Bioreactor with FS Carrier

机译:使用固定床硫酸盐还原生物反应器和FS载体去除低浓度的镉离子

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Recovery of heavy metal ions from their low concentrated water is developed using the activity of sulfate-reducing bacteria immobilized on a fibrous slag (FS), which was employed as both bio-carrier and particle collector medium. An up-flow type bioreactor was composed of FS packed column, where sulfate-reducing bacteria (SRB) was immobilized at a lower part. In this process, sulfate ion (SO_4~(2-)) in the liquid is biologically converted to hydrogen sulfide (H_2S), which reacts with metal ionic species to produce ultrafine metal sulfide particles. Subsequently, formed particles are collected onto the FS surface in the upper part of the reactor, thereby accumulating heavy metals ions as their sulfides precipitates. In the continuous treatment of water contaminated with 6 mg/l of cadmium, almost complete removal was carried out throughout the operating period, approximately 30 days. Cadmium sulfide precipitates gradually accumulated on the FS bed, and finally total amount of cadmium sulfide recovered reached 27.3 mg per unit gram of FS. The experimental result indicated that the proposed bioreactor, Sulfate-Reducing Bioreactor with Fibrous Slag carrier (SRB-FS), served as an efficient heavy metal recovery column with the aid of SRB.
机译:利用固定在纤维渣(FS)上的硫酸盐还原细菌的活性,可以从低浓度的水中回收重金属离子,该细菌既用作生物载体,又用作颗粒收集器介质。上流式生物反应器由FS填充柱组成,其中硫酸盐还原菌(SRB)固定在下部。在此过程中,液体中的硫酸根离子(SO_4〜(2-))被生物转化为硫化氢(H_2S),该硫化氢与金属离子物质反应生成超细金属硫化物颗粒。随后,将形成的颗粒收集到反应器上部的FS表面上,从而随着重金属离子的硫化物沉淀而积累。在连续处理被6 mg / l镉污染的水的过程中,整个操作过程(约30天)几乎全部去除。硫化镉沉淀物逐渐积累在FS床上,最终回收的硫化镉总量达到每单位克FS 27.3 mg。实验结果表明,所提出的生物反应器,带有纤维渣载体的硫酸盐还原生物反应器(SRB-FS)在SRB的帮助下可作为一种有效的重金属回收塔。

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