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Energy balance and greenhouse gas emissions of biodiesel production from oil derived from wastewater and wastewater sludge

机译:来自废水和废水污泥的石油生产生物柴油的能量平衡和温室气体排放

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It has been recognized that oils derived from microorganism and wastewater sludge are comparable replacements of traditional biodiesel production feedstock, which is energy intensive and costly. Energy balance and greenhouse gas (GHG) emissions are essential factors to assess the feasibility of the production. This study evaluated the energy balance and GHG emissions of biodiesel production from microbial and wastewater sludge oil. The results show that energy balance and GHG emissions of biodiesel produced from microbial oil are significantly impacted by the cultivation methods and carbon source. For phototrophic microorganism (microalgae), open pond system gives 3.6 GJ higher energy gain than photo bioreactor system in per tonne biodiesel produced. For heterotrophic microorganisms, the energy balance depends on the type of carbon source. Three carbon sources including starch, cellulose, and starch industry wastewater (SIW) used in this study showed that utilization of SIW as carbon source provided the most favorable energy balance. When oil extracted from municipal sludge is used for biodiesel production, the energy gain is up to 29.7 GJ per tonne biodiesel produced, which is higher than the energy gain per tonne of biodiesel produced from SIW cultivated microbes. GHG emissions study shows that biodiesel production from microbes or sludge oil is a net carbon dioxide capture process except when starch is used as raw material for microbial oil production, and the highest capture is around 40 tonnes carbon dioxide per tonne of biodiesel produced.
机译:已经认识到,源自微生物和废水污泥的油是传统生物柴油生产原料的可比替代物,传统生物柴油生产原料耗能且成本高。能量平衡和温室气体(GHG)排放是评估生产可行性的必要因素。这项研究评估了微生物和废水污泥油生产生物柴油的能量平衡和温室气体排放。结果表明,微生物油生产的生物柴油的能量平衡和温室气体排放受到栽培方法和碳源的显着影响。对于光养微生物(微藻),在生产的每吨生物柴油中,开放式池塘系统比光生物反应器系统提供3.6 GJ的更高能量获取。对于异养微生物,能量平衡取决于碳源的类型。本研究中使用的三种碳源包括淀粉,纤维素和淀粉工业废水(SIW),表明利用SIW作为碳源可提供最有利的能量平衡。当将从市政污泥中提取的油用于生物柴油生产时,每吨生产的生物柴油的能量增益高达29.7 GJ,高于从SIW栽培微生物生产的每吨生物柴油的能量增益。温室气体排放研究表明,用微生物或污泥油生产生物柴油是二氧化碳的净捕集过程,除非使用淀粉作为微生物油生产的原料,而最高捕集量是每生产一吨生物柴油约40吨二氧化碳。

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