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Energy production, nutrient recovery and greenhouse gas emission potentials from integrated pig manure management systems

机译:集成猪粪管理系统的能源生产,养分回收和温室气体排放潜力

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Improper management of pig manure has resulted in environmental problems such as surface water eutrophication, ground water pollution, and greenhouse gas emissions. This study develops and compares 14 alternative manure management scenarios aiming at energy and nutrient extraction. The scenarios based on combinations of thermal pretreatment, anaerobic digestion, anaerobic co-digestion, liquid/solid separation, drying, incineration, and thermal gasification were compared with respect to their energy, nutrient and greenhouse gas balances. Both sole pig manure and pig manure mixed with other types of waste materials were considered. Data for the analyses were obtained from existing waste treatment facilities, experimental plants, laboratory measurements and literature. The assessment reveals that incineration combined with liquid/solid separation and drying of the solids is a promising management option yielding a high potential energy utilization rate and greenhouse gas savings. If maximum electricity production is desired, anaerobic digestion is advantageous as the biogas can be converted to electricity at high efficiency in a gas engine while allowing production of heat for operation of the digestion process. In conclusion, this study shows that the choice of technology has a strong influence on energy, nutrient and greenhouse gas balances. Thus, to get the most reliable results, it is important to consider the most representative (and up-to-date) technology combined with data representing the area or region in question.
机译:猪粪管理不当导致环境问题,例如地表水富营养化,地下水污染和温室气体排放。这项研究开发并比较了针对能量和养分提取的14种替代肥料管理方案。比较了基于热预处理,厌氧消化,厌氧共消化,液/固分离,干燥,焚烧和热气化的方案,并对其能量,养分和温室气体进行了平衡。猪粪和猪粪都与其他类型的废料混合在一起。分析数据来自现有的废物处理设施,实验工厂,实验室测量值和文献。评估显示,焚烧结合液/固分离和固体干燥是一种有前途的管理选择,可产生高的潜在能源利用率和节省温室气体。如果需要最大的发电量,则厌氧消化是有利的,因为可以在燃气发动机中将沼气高效地转化为电能,同时允许产生热量以进行消化过程。总之,这项研究表明技术的选择对能量,养分和温室气体的平衡有很大的影响。因此,为了获得最可靠的结果,重要的是要考虑最有代表性的(和最新的)技术与代表所讨论区域或区域的数据。

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