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Mineralogical controls on phosphorus recovery from wastewaters

机译:废水中磷回收的矿物学控制

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摘要

The removal of phosphorus from wastewaters is becoming very common, to meet water quality targets, and avoid environmental problems related to eutrophication. At the same time, agricultural application of P-rich sewage biosolids is diminishing for reasons of logistics and of public pressure. as a result P from wastewaters is ultimately disposed of in landfills. Over the long term, phosphate ore reserves will become depleted. Recycling of P from wastewaters may thus be a realistic prospect if scientific and technical issues can be resolved. At the centre of the scientific problems lie considerations about optimizing phosphate precipitation as Ca phosphates. A number of Ca phosphate minerals exist, although by far the most common of these is hydroxylapatite. Precipitation kinetic considerations, however, suggest that other Ca phosphates (such as brushite, octacalcium phosphate, whitlockite, monetite or amorphous Ca phosphate) may initially precipitate, and later recrystallize into the most stable hydroxylapatite. This article reviews the complex precipitation mineralogy, chemistry and kinetics of Ca phosphates.
机译:为了达到水质目标并避免与富营养化有关的环境问题,从废水中去除磷变得非常普遍。同时,由于物流和公共压力的原因,富含磷的污水生物固体在农业上的应用正在减少。结果,废水中的P最终被丢弃在垃圾填埋场中。从长远来看,磷矿石储量将枯竭。如果可以解决科学和技术问题,则从废水中回收磷可能是一个现实的前景。科学问题的中心在于优化磷酸盐沉淀(如磷酸钙)的考虑。存在许多磷酸钙矿物,尽管到目前为止最常见的是羟磷灰石。但是,考虑到沉淀动力学的考虑,其他磷酸钙(如透钙磷石,八钙磷酸钙,辉锰矿,褐铁矿或无定形磷酸钙)可能会先沉淀,然后重结晶为最稳定的羟基磷灰石。本文综述了磷酸钙的复杂沉淀矿物学,化学和动力学。

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