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磷和铁化学在从废水中回收磷中的相关性:综述。

The Relevance of Phosphorus and Iron Chemistry to the Recovery of Phosphorus from Wastewater: A Review.

机构信息

†Wetsus, European Centre Of Excellence for Sustainable Water Technology, Oostergoweg 7, 8911 MA Leeuwarden, The Netherlands.

‡Dept. Biotechnology, Delft University of Technology, Julianalaan 67, 2628 BC Delft, The Netherlands.

出版信息

Environ Sci Technol. 2015 Aug 18;49(16):9400-14. doi: 10.1021/acs.est.5b00150. Epub 2015 May 26.

Abstract

The addition of iron is a convenient way for removing phosphorus from wastewater, but this is often considered to limit phosphorus recovery. Struvite precipitation is currently used to recover phosphorus, and this approach has attracted much interest. However, it requires the use of enhanced biological phosphorus removal (EBPR). EBPR is not yet widely applied and the recovery potential is low. Other phosphorus recovery methods, including sludge application to agricultural land or recovering phosphorus from sludge ash, also have limitations. Energy-producing wastewater treatment plants increasingly rely on phosphorus removal using iron, but the problem (as in current processes) is the subsequent recovery of phosphorus from the iron. In contrast, phosphorus is efficiently mobilized from iron by natural processes in sediments and soils. Iron-phosphorus chemistry is diverse, and many parameters influence the binding and release of phosphorus, including redox conditions, pH, presence of organic substances, and particle morphology. We suggest that the current poor understanding of iron and phosphorus chemistry in wastewater systems is preventing processes being developed to recover phosphorus from iron-phosphorus rich wastes like municipal wastewater sludge. Parameters that affect phosphorus recovery are reviewed here, and methods are suggested for manipulating iron-phosphorus chemistry in wastewater treatment processes to allow phosphorus to be recovered.

摘要

添加铁是去除废水中磷的一种便捷方法,但这通常被认为会限制磷的回收。目前,人们采用鸟粪石沉淀法来回收磷,这种方法引起了广泛关注。然而,它需要使用强化生物除磷(EBPR)。EBPR 尚未得到广泛应用,且回收潜力较低。其他磷回收方法,包括将污泥应用于农业用地或从污泥灰分中回收磷,也存在局限性。产能源废水处理厂越来越依赖于使用铁去除磷,但问题(与当前工艺一样)是随后从铁中回收磷。相比之下,磷会通过沉积物和土壤中的自然过程从铁中被有效释放。铁-磷化学性质多样,许多参数都会影响磷的结合和释放,包括氧化还原条件、pH 值、有机物的存在以及颗粒形态。我们认为,目前对废水系统中铁和磷化学性质的理解不足,阻碍了从富含铁-磷的废物(如城市污水污泥)中回收磷的工艺的开发。本文回顾了影响磷回收的参数,并提出了在废水处理工艺中操纵铁-磷化学性质的方法,以实现磷的回收。

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