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Feasibility of coupling anaerobic digestion and struvite precipitation in the same reactor: Evaluation of different magnesium sources

机译:在同一反应器中进行厌氧消化和鸟粪石沉淀耦合的可行性:评估不同镁源

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The feasibility of coupling anaerobic digestion and struvite precipitation in the same reactor was evaluated to enhance manure anaerobic digestion methane yields through ammonia inhibition mitigation. Five different magnesium sources were tested as a struvite (ammonia sequestration agent) precursor, i.e. MgCl2, Mg(OH)(2), two industrial by-products rich in MgO but with different reactivity, and a stabilizing agent. The latter was formulated in advance with the low reactivity industrial by-product and phosphoric acid. The effect of each magnesium source on anaerobic digestion as well as its struvite precipitation capacity was evaluated through biomethane potential tests. Results indicated that all magnesium sources were able to reduce ammonia concentration to different extents. However, the stabilizing agent was the unique magnesium source that did not inhibit the anaerobic digestion process. The avoidance of adding a phosphate source directly into the digester medium and the high newberyite content were the advantages of the stabilizing agent over the other magnesium sources. Finally, a series of experiments indicated that if anaerobic digestion and struvite precipitation are combined in a single reactor, stabilizing agent Addition should be carried out through several small additions rather than few large additions. (C) 2015 Elsevier B.V. All rights reserved.
机译:评估了在同一反应器中进行厌氧消化和鸟粪石沉淀耦合的可行性,以通过减轻氨气的抑制作用来提高粪便厌氧消化的甲烷产率。测试了五种不同的镁源作为鸟粪石(氨螯合剂)的前体,即MgCl2,Mg(OH)(2),两种富含MgO但具有不同反应性的工业副产品和稳定剂。后者预先与低反应性工业副产物和磷酸一起配制。通过生物甲烷潜力测试评估了每种镁源对厌氧消化的影响及其鸟粪石的沉淀能力。结果表明,所有镁源均能够不同程度地降低氨浓度。但是,稳定剂是唯一的镁源,不会抑制厌氧消化过程。与其他镁源相比,稳定剂的优势在于避免了将磷酸盐源直接添加到消化介质中以及高钙长石含量的优点。最后,一系列实验表明,如果厌氧消化和鸟粪石沉淀在单个反应器中结合使用,则稳定剂的添加应通过少量添加而不是少量较大添加来进行。 (C)2015 Elsevier B.V.保留所有权利。

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