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Sequential electrodialytic recovery of phosphorus from low-temperature gasification ashes of chemically precipitated sewage sludge

机译:化学沉淀污泥低温气化灰磷的顺序电渗量回收

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摘要

Phosphorus recycling from secondary materials like sewage sludge ashes offers an alternative to mining of phosphates from primary resources and a mean to counteract the current phosphorous rock depletion concern. A separation of P from the bulk ash is normally required, due to its low plant availability and the presence of heavy metals. Previously, more than 80% of P was recovered from incineration sewage sludge ashes using a two-compartment electrodialytic cell. In contrast, the recovery was below 30% for ashes from low-temperature gasification using the same setup. The low recovery was due to a high presence of Al- and Fe(III)-P bindings. In the present study, an electrodialytic process combining sequentially a pair of two-compartment cells allowed a recovery of up to 70% of phosphorus from these ashes. The use of a second cell, where the ash was suspended in an alkaline solution, allowed the P solubilisation from aluminium and ferric phosphates. In addition, P was separated from most metals as they became insoluble under the prevailing chemical environment. The obtained ratio of Al, Fe, Mg and most heavy metals to P was comparable to wet process phosphoric acid. Therefore, this sequential process was found to be suitable to recycle P and potentially use it in the production of common fertilizers like diammonium phosphate.
机译:诸如污水污泥灰等二级材料的磷再循环提供了从初级资源开采磷酸盐的替代方案,并且抵消当前的磷岩耗尽问题。由于其低植物可用性和重金属存在,通常需要对来自散装灰的P分离。以前,使用双室电渗量,从焚烧污水污泥灰烬中回收了超过80%的P.相比之下,使用相同的设置,恢复低于低温气化的灰烬低于30%。较低的恢复是由于Al-and Fe(III)-P结合的高存在。在本研究中,依次组合的电渗析一对两室细胞组合允许从这些灰烬中回收高达70%的磷。使用灰烬悬浮在碱性溶液中的第二细胞,允许来自铝和磷酸盐的P溶解。此外,P与大多数金属分开,因为它们在普遍的化学环境下变得不溶性。获得的Al,Fe,Mg和最重金属的比例与湿法磷酸相当。因此,发现该顺序方法适合于回收P并潜在地使用它在磷酸二铵等常见肥料的生产中。

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