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Environmental impacts concerning the addition of trace metals in the process of biogas production from anaerobic digestion of slurry

机译:污泥厌氧消化沼气过程中添加微量金属对环境的影响

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The use of trace metals as additives to the biogas production process to increase the biogas yield has been identified as a very common approach. Such additives can biostimulate the methanogenic bacteria to increase the biogas and methane production from the anaerobic digestion (AD) of livestock manure. The environmental impact of using the trace elements as manure additives still not evaluated. The objective of this paper is to conduct a comparative environmental impact evaluation of manure treatment with different trace elements for biogas production. The trace metals under evaluation were in the form of the chlorides of nickel (Ni), cobalt (Co) and iron (Fe) which were used as additives to the anaerobic digestion of livestock manure. The results were shown in the form of the specific impacts on global warming and greenhouse gas (GHG) emissions mitigation of producing and utilizing biogas as a bioenergy source. The results of this investigation show that the use of 1 g/m(3) cobalt chloride (CoCl2) causes the lowest greenhouse gas emissions among all other evaluated trace metals which were calculated on the basis of CO2-equivalent. An important observation is that the greenhouse gas emissions from the electricity generated using biogas produced without any additives, i.e. without trace metals, were the highest among all other variants/scenarios. (C) 2019 Elsevier Ltd. All rights reserved.
机译:使用微量金属作为沼气生产过程的添加剂来增加沼气产量已被确认为一种非常普遍的方法。此类添加剂可以生物刺激产甲烷细菌,以增加牲畜粪便厌氧消化(AD)产生的沼气和甲烷。仍未评估使用微量元素作为肥料添加剂对环境的影响。本文的目的是对沼气生产中使用不同微量元素的粪肥处理进行比较的环境影响评估。评估中的痕量金属为镍(Ni),钴(Co)和铁(Fe)的氯化物形式,它们被用作厌氧消化牲畜粪便的添加剂。结果以减少和减少沼气作为生物能源的全球变暖和温室气体排放的形式显示。这项调查的结果表明,使用1 g / m(3)氯化钴(CoCl2)可以使所有其他评估的痕量金属(以二氧化碳当量为基础)的温室气体排放量最低。一个重要的观察结果是,在所有其他变体/方案中,使用不含任何添加剂(即不含痕量金属)的沼气所产生的电力所产生的温室气体排放量最高。 (C)2019 Elsevier Ltd.保留所有权利。

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