首页> 外文OA文献 >Energy-efficient routes for the production of gasoline from biogas and pyrolysis oil—process design and life-cycle assessment
【2h】

Energy-efficient routes for the production of gasoline from biogas and pyrolysis oil—process design and life-cycle assessment

机译:由沼气和热解油生产汽油的节能途径—工艺设计和生命周期评估

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Two novel routes for the production of gasoline from pyrolysis oil (from timber pine) and biogas (from ley grass) are simulated, followed by a cradle-to-gate life-cycle assessment of the two production routes. The main aim of this work is to conduct a holistic evaluation of the proposed routes and benchmark them against the conventional route of producing gasoline from natural gas. A previously commercialized method of synthesizing gasoline involves conversion of natural gas to syngas, which is further converted to methanol, and then as a last step, the methanol is converted to gasoline. In the new proposed routes, the syngas production step is different; syngas is produced from a mixture of pyrolysis oil and biogas in the following two ways: (i) autothermal reforming of pyrolysis oil and biogas, in which there are two reactions in one reactor (ATR) and (ii) steam reforming of pyrolysis oil and catalytic partial oxidation of biogas, in which there are separated but thermally coupled reactions and reactors (CR). The other two steps to produce methanol from syngas, and gasoline from methanol, remain the same. The purpose of this simulation is to have an ex-ante comparison of the performance of the new routes against a reference, in terms of energy and sustainability. Thus, at this stage of simulations, nonrigorous, equilibrium-based models have been used for reactors, which will give the best case conversions for each step. For the conventional production route, conversion and yield data available in the literature have been used, wherever available.The results of the process design showed that the second method (separate, but thermally coupled reforming) has a carbon efficiency of 0.53, compared to the conventional route (0.48), as well as the first route (0.40). The life-cycle assessment results revealed that the newly proposed processes have a clear advantage over the conventional process in some categories, particularly the global warming potential and primary energy demand; but there are also some in which the conventional route fares better, such as the human toxicity potential and the categories related to land-use change such as biotic production potential and the groundwater resistance indicator. The results confirmed that even though using biomass such as timber pine as raw material does result in reduced greenhouse gas emissions, the activities associated with biomass, such as cultivation and harvesting, contribute to the environmental footprint, particularly the land use change categories. This gives an impetus to investigate the potential of agricultural, forest, or even food waste, which would be likely to have a substantially lower impact on the environment. Moreover, it could be seen that the source of electricity used in the process has a major impact on the environmental performance.
机译:模拟了从热解油(木材松木)和沼气(利利草)生产汽油的两条新颖路线,然后对这两种生产路线从摇篮到大门的生命周期进行了评估。这项工作的主要目的是对提议的路线进行全面评估,并将其与以天然气为原料的常规路线进行基准比较。先前商业化的合成汽油的方法包括将天然气转化为合成气,再将其转化为甲醇,然后作为最后一步,将甲醇转化为汽油。在新提议的路线中,合成气的生产步骤有所不同;合成气由热解油和沼气的混合物通过以下两种方式生产:(i)热解油和沼气的自动热重整,其中一个反应器(ATR)中有两个反应,(ii)热解油的蒸汽重整和沼气的催化部分氧化,其中存在分离但热耦合的反应器和反应器(CR)。从合成气生产甲醇和从甲醇生产汽油的其他两个步骤保持不变。该模拟的目的是就能源和可持续性方面对新路线的性能与参考进行事前比较。因此,在模拟的这一阶段,已将非严格的,基于平衡的模型用于反应器,这将为每个步骤提供最佳的案例转换。对于常规生产路线,无论何时可用,都使用文献中可用的转化率和产率数据。工艺设计的结果表明,第二种方法(分离但热耦合重整)的碳效率为0.53传统路线(0.48)以及第一条路线(0.40)。生命周期评估结果表明,在某些类别中,特别是全球变暖潜能和一次能源需求,新提议的过程比常规过程具有明显优势。但也有一些传统路线的情况更好,例如对人类的毒性潜力以及与土地利用变化有关的类别,例如生物生产潜力和耐地下水指标。结果证实,即使使用诸如松木等生物质作为原料确实可以减少温室气体排放,但与生物质有关的活动(例如耕种和收获)仍会影响环境足迹,尤其是土地用途的变化类别。这为调查农业,森林,甚至食物浪费的潜力提供了动力,而这可能对环境的影响要小得多。此外,可以看出该过程中使用的电源对环境绩效有重大影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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