...
首页> 外文期刊>Biofuels, bioproducts & biorefining: Biofpr >Succinic acid production derived from carbohydrates: An energy and greenhouse gas assessment of a platform chemical toward a bio-based economy
【24h】

Succinic acid production derived from carbohydrates: An energy and greenhouse gas assessment of a platform chemical toward a bio-based economy

机译:衍生自碳水化合物的琥珀酸生产:对生物基经济的平台化学品的能量和温室气体评估

获取原文
获取原文并翻译 | 示例
           

摘要

Bio-based succinic acid has the potential to become a platform chemical, i.e. a key building block for deriving both commodity and high-value chemicals, which makes it an attractive compound in a bio-based economy. A few companies and industrial consortia have begun to develop its industrial production on a large scale. A life cycle assessment of different bio-based succinic acid production processes, based on dextrose from corn, was performed to investigate their non-renewable energy use (NREU) and greenhouse gas (GHG) emissions, from cradle-to-factory gate in Europe. Three processes were studied, i.e. (i) low pH yeast fermentation with downstream processing (DSP) by direct crystallization, (ii) anaerobic fermentation to succinate salt at neutral pH (pH7) and subsequent DSP by electrodialysis, and (iii) a similar process producing ammonium sulfate as co-product in DSP. These processes are compared to the production of petrochemical maleic anhydride, succinic acid, and adipic acid. Low pH yeast fermentation to succinic acid with direct crystallization was found to have significantly lower GHG emissions and NREU, compared to other fermentation routes and three petrochemical routes. However, the disparity in GHG emissions between this process and the electrodialysis process becomes less prominent if one considers a cleaner electricity mix than the current European production mix. Moreover, this study highlights that the allocation approach in corn wet milling and the succinic acid plant location strongly influence the results. Overall, the results suggest that low pH yeast fermentation with direct crystallization is the most beneficial process to bio-based succinic acid from an environmental perspective. (c) 2013 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:基于生物的琥珀酸有可能成为平台化学品,即用于推导商品和高价值化学品的关键构建块,这使其成为生物的经济体中有吸引力的化合物。一些公司和工业联盟已经开始大规模发展其产业生产。基于玉米葡萄糖的不同生物基琥珀酸生产方法的生命周期评估进行了欧洲摇篮到工厂门的不可再生能源使用(NREU)和温室气体(GHG)排放量。研究了三种方法,即(i)通过直接结晶,(ii)厌氧发酵在中性pH(pH7)中的琥珀酸盐和随后的DSP,通过电渗析和(iii)和(iii)通过电渗析和(iii)类似的方法,以及(iii)类似的方法在DSP中生产硫酸铵作为副产物。将这些方法与石化马来酸酐,琥珀酸和己二酸的生产进行比较。与其他发酵途径和三条石化途径相比,发现低pH酵母发酵与直接结晶的琥珀酸和直接结晶的琥珀酸发酵。然而,如果将更清洁的电力混合比当前欧洲生产混合物考虑更清洁的电力混合,则在该过程与电渗析过程之间的温室气体排放中的差异变得不那么突出。此外,这项研究突出显示玉米湿磨和琥珀酸植物位置的分配方法强烈影响结果。总的来说,结果表明,具有直接结晶的低pH酵母发酵是来自环境视角的生物基琥珀酸最有益的方法。 (c)2013化学工业协会和约翰瓦利和儿子有限公司

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号