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AMMONOX:Ammonia for enhancing biogas yield and reducing NOx. Optimisation of Aqueous Ammonia Treatment

机译:ammONOX:用于提高沼气产量和减少氮氧化物的氨。氨水处理的优化

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摘要

Laboratory experiments have shown that Aqueous Ammonia Soaking (AAS) is a very promising treatment for increasing the methane yield of the solid fraction of manure (fibers). AMMONOX is a new concept based on the sustainable use of ammonia for enhancing biogas production at biogas plants digesting manure. The proposed process is based on an optimized AAS treatment of manure fibers in combination with an efficient ammonia recovery step. The enhancement of biogas production is achieved by enriching manure with AAS-treated fibers or other lignocellulosic residues while the ammonia recovered can be used for fulfilling the needs of the treatment. Furthermore, excess of ammonia could be produced when ammonia is recovered from both the treated fibers and the digester effluent, which could be used for the reduction of NOx when the biogas produced is used for electricity generation by gas engines.In this study, the importance of different factors affecting the performance of AAS of digested manure fibers was investigated in order to conclude on the variables to optimize. Principal Component Analysis of the experimental data obtained so far was used for a preliminary analysis of effects. The temperature and the ammonia concentration during AAS were pointed out as the most influencing variables in terms of methane yield under the conditions tested. Further experiments should be conducted in order to investigate the effect of AAS duration at lower values than the ones tested (lower than 24 hours) and for assessing the importance of the solids to liquid ratio in the treatment mixture.
机译:实验室实验表明,氨水浸泡(AAS)是提高肥料中固体部分(纤维)甲烷产量的非常有前途的处理方法。 AMMONOX是基于氨的可持续利用的新概念,可用于提高消化粪便的沼气厂的沼气产量。所提出的过程基于优化的AAS处理粪肥纤维并结合有效的氨回收步骤。通过用AAS处理过的纤维或其他木质纤维素残留物富集粪肥,同时回收的氨气可用于满足处理需求,从而实现沼气产量的增加。此外,当从处理过的纤维和消化池废水中回收氨时,可能会产生过量的氨,当产生的沼气用于燃气发动机发电时,可用于减少NOx。研究了影响消化粪肥纤维AAS性能的不同因素,以得出优化变量。到目前为止获得的实验数据的主成分分析用于效果的初步分析。指出在测试条件下,AAS期间的温度和氨浓度是影响甲烷产率的最大影响变量。为了研究AAS持续时间在低于测试值(低于24小时)时的效果,并评估处理混合物中固液比的重要性,应该进行进一步的实验。

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