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从厌氧消化的奶牛废水中释放磷,以生产鸟粪石肥料。

Releasing phosphorus from calcium for struvite fertilizer production from anaerobically digested dairy effluent.

机构信息

Department of Biological Systems Engineering, Washington State University, Pullman, WA 99164-6120, USA.

出版信息

Water Environ Res. 2010 Jan;82(1):34-42. doi: 10.2175/106143009x425924.

Abstract

Being a non-renewable resource and a source of potential water pollution, phosphorus could be recovered from animal manure in the form of struvite (MgNH4PO4.6H2O) to be used as a slow-release fertilizer. It was found recently that the majority of phosphorus in anaerobically digested dairy effluent is tied up in a fine suspended calcium-phosphate solid, thus becoming unavailable for struvite formation. Acidification and use of a chelating agent were investigated for converting the calcium-associated phosphorus in the digested effluent to dissolved phosphate ions, so that struvite can be produced. The results demonstrated that the phosphorus in the effluent was released into the solution by lowering the pH. In addition, the phosphorus concentration in the solution increased significantly with increased ethylenediaminetetraacetic acid (EDTA) concentration, as EDTA has a high stability constant with calcium. Most of the phosphorus (91%) was released into the solution after adding EDTA. Further, the freed phosphorus ion precipitated out as struvite provided that sufficient magnesium ions (Mg2+) were present in the solution. Furthermore, the phase structure of the solid precipitate obtained from the EDTA treatment matched well with standard struvite, based on the data from X-ray diffraction analysis. These results provide methods for altering the forms of phosphorus for the design and application of phosphorus-removal technologies for dairy wastewater management.

摘要

作为一种不可再生资源和潜在水污染的源头,磷可以从动物粪便中以鸟粪石(MgNH4PO4·6H2O)的形式回收,用作缓释肥料。最近发现,厌氧消化乳制品废水中的大部分磷与细小的悬浮磷酸钙固体结合在一起,因此无法形成鸟粪石。本研究采用酸化和螯合剂处理的方法,将消化废水中与钙结合的磷转化为溶解态的磷酸盐离子,从而可以生产鸟粪石。结果表明,通过降低 pH 值可以将废水中的磷释放到溶液中。此外,随着乙二胺四乙酸(EDTA)浓度的增加,溶液中的磷浓度显著增加,因为 EDTA 与钙具有很高的稳定常数。添加 EDTA 后,大部分磷(91%)被释放到溶液中。此外,如果溶液中存在足够的镁离子(Mg2+),则游离的磷离子会沉淀出来形成鸟粪石。此外,根据 X 射线衍射分析的数据,从 EDTA 处理中获得的固体沉淀物的相结构与标准鸟粪石非常吻合。这些结果为改变磷的形态提供了方法,可用于设计和应用乳制品废水管理中的除磷技术。

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