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通过强化氨去除实现奶牛粪便的厌氧消化。

Anaerobic digestion of dairy manure with enhanced ammonia removal.

作者信息

Uludag-Demirer S, Demirer G N, Frear C, Chen S

机构信息

Department of Industrial Engineering, Cankaya University, 06530 Ankara, Turkey.

出版信息

J Environ Manage. 2008 Jan;86(1):193-200. doi: 10.1016/j.jenvman.2006.12.002. Epub 2007 Jan 25.

Abstract

Poor ammonia-nitrogen removal in methanogenic anaerobic reactors digesting animal manure has been reported as an important disadvantage of anaerobic digestion (AD) in several studies. Development of anaerobic processes that are capable of producing reduced ammonia-nitrogen levels in their effluent is one of the areas where further research must be pursued if AD technology is to be made more effective and economically advantageous. One approach to removing ammonia from anaerobically digested effluents is the forced precipitation of magnesium ammonium phosphate hexahydrate (MgNH4PO4 x 6H2O), commonly called struvite. Struvite is a valuable plant nutrient source for nitrogen and phosphorus since it releases them slowly and has non-burning features because of its low solubility in water. This study investigated coupling AD and controlled struvite precipitation in the same reactor to minimize the nitrogen removal costs and possibly increase the performance of the AD by reducing the ammonia concentration which has an adverse effect on anaerobic bacteria. The results indicated that up to 19% extra COD and almost 11% extra NH3 removals were achieved relative to a control by adding 1750 mg/L of MgCl2 x 6H2O to the anaerobic reactor.

摘要

多项研究报告指出,在处理动物粪便的产甲烷厌氧反应器中,氨氮去除效果不佳是厌氧消化(AD)的一个重要缺点。如果要使AD技术更有效且在经济上更具优势,那么开发能够降低其流出物中氨氮含量的厌氧工艺是必须进一步研究的领域之一。从厌氧消化流出物中去除氨的一种方法是强制沉淀六水合磷酸镁铵(MgNH4PO4·6H2O),通常称为鸟粪石。鸟粪石是一种宝贵的植物氮磷营养源,因为它能缓慢释放氮和磷,且因其在水中的低溶解度而具有不易燃烧的特性。本研究调查了在同一反应器中耦合AD与受控鸟粪石沉淀,以尽量降低氮去除成本,并可能通过降低对厌氧细菌有不利影响的氨浓度来提高AD的性能。结果表明,相对于对照,通过向厌氧反应器中添加1750 mg/L的六水合氯化镁,COD去除率提高了19%,氨去除率提高了近11%。

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