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首页> 外文期刊>Water Science and Technology >Accelerated anaerobic release of K, Mg and P from surplus activated sludge for element recovery and struvite formation inhibition
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Accelerated anaerobic release of K, Mg and P from surplus activated sludge for element recovery and struvite formation inhibition

机译:从剩余活性污泥中加速厌氧释放K,Mg和P.元件回收和斯特鲁维矿床形成抑制作用

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Accelerated release of potassium (K), magnesium (Mg) and phosphorus (P) from surplus activated sludge (SAS) was investigated to develop a new system for the recovery of the elements. Anaerobic cultivation of SAS during 24 h released 78% of K and about 50% of Mg and P from SAS more effectively compared to aerobic cultivation (K: 40%, Mg: 15%, P: 15%). Furthermore, the addition of sodium acetate as an organic carbon source remarkably accelerated the release of K, Mg and P from SAS under anaerobic condition. However, no increase in the maximum release efficiencies was observed. The elements released from SAS could be transferred to separate liquid with the existing mechanical thickener and be recovered as MgKPO4 by some additional process. Furthermore, the removal of the elements from SAS would inhibit the formation of struvite causing the blockage of sludge transport pipe after anaerobic digestion process of thickened sludge.
机译:研究了来自剩余活性污泥(SAS)的钾(K),镁(Mg)和磷(P)的加速释放,以开发用于恢复元素的新系统。 与有氧培养相比,24小时内培养SAS的SAS释放78%的K和大约50%的MG和P,比较(K:40%,MG:15%,P:15%)。 此外,添加乙酸钠作为有机碳源,显着加速了厌氧条件下的SAS的K,Mg和P的释放。 但是,未观察到最大释放效率的增加。 从SAS释放的元素可以转移到与现有的机械增稠剂分开的液体,并通过一些额外的方法将作为MGKPO4作为MGKPO4回收。 此外,从SAS中除去元素将抑制斯特鲁维特的形成,导致污泥污泥厌氧消化过程后污泥输送管堵塞。

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