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Application of a systematic methodology for sustainable carbon dioxide utilization process design

机译:应用可持续二氧化碳利用过程设计的系统方法

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摘要

As concerns about the environment are growing, new efforts are needed to achieve more sustainable processes. One such environmental concern is global warming, which is primarily caused by the greenhouse effect or the increase in concentration of greenhouse gases [1]. The most significant greenhouse gases are carbon dioxide, methane and nitrous oxide, of which carbon dioxide is the highest constituent at 82%. Furthermore, the amount of carbon dioxide emissions is growing with time. These trends make it evident that there is a need for methods to reduce these greenhouse gases emissions. While there are two methods of reducing carbon dioxide emissions, carbon capture and storage (CCS) and carbon capture and utilization (CCU), CCU is considered promising as it makes further use of the carbon dioxide as a solvent, raw material, and reagent to produce valuable products [1]. Using such utilization processes, the emissions can be reduced as they are being utilized and profit can be obtained, or the cost of operation for the carbon dioxide treatment can be returned, through this utilization process.In order to systematically reduce such emissions, carbon capture and utilization is considered rather than carbon capture and storage. To achieve this a methodology is developed to design sustainable carbon dioxide utilization processes. First, the information on the possible utilization alternatives is collected, including the economic potential of the process and the carbon dioxide emissions. The carbon dioxide emissions can be classified as direct and indirect emissions in a chemical process. The net carbon dioxide is determined for the utilization processes as the indirect carbon dioxide emissions minus the carbon dioxide utilized. Processes that presents zero or negative net carbon dioxide emission are desired in order to reduce the carbon dioxide emissions. Using this estimated preliminary evaluation, the top processes, with the most negative carbon dioxide emission are investigated by rigorous detailed simulation to evaluate the net carbon dioxide emissions. Once the base case design is established and evaluated, targeted improvements are made by exploiting opportunities, for example, optimization, heat integration and improved design decisions so that more sustainable and lower net carbon dioxide emission alternatives are obtained.This method is applied to various processes where carbon dioxide is used as raw material. First, the process data are collected and compared. The economic feasibility is evaluated. From this, five processes are selected and analyzed in detail: the production of dimethyl carbonate, succinic acid, propylene carbonate, dimethyl ethylene and methanol. Not all the studied processes could be designed for zero or negative net carbon dioxide emission. Propylene carbonate production is found to have a negative net carbon dioxide, where, implementing targeted process improvements minmized the net carbon dioxide emission to -0.389 kg of carbon dioxide per kg of propylene carbonate. On the other hand, for succinic acid production, even after targeted improvements, the net carbon dioxide remained positive, even though compared to the existing industrial processes there is a relative reduction of upto 85%.What this study shows is that for meaningful net carbon dioxide reduction, the carbon dioxide utilization processes need to be selected very carefully to obtain the best results. However, the opportunity to potentially reduce the net carbon dioxide emissions for the production of some bulk chemicals with carbon dioxide as feedstock exists.
机译:随着人们对环境的关注日益增加,需要做出新的努力来实现更可持续的过程。这种环境问题之一就是全球变暖,它主要是由温室效应或温室气体浓度增加引起的[1]。最重要的温室气体是二氧化碳,甲烷和一氧化二氮,其中二氧化碳含量最高,为82%。此外,二氧化碳排放量随着时间增长。这些趋势表明,需要减少这些温室气体排放的方法。虽然有两种减少二氧化碳排放的方法,即碳捕集与封存(CCS)和碳捕集与利用(CCU),但由于CCU进一步利用了二氧化碳作为溶剂,原料和试剂,因此被认为很有前途。生产有价值的产品[1]。使用这种利用过程,可以通过利用过程减少排放,并获得利润,或者可以返还二氧化碳处理的运营成本。为了系统地减少这种排放,碳捕集而不是碳捕获和储存,而是考虑利用。为此,开发了一种方法来设计可持续的二氧化碳利用过程。首先,收集有关可能的利用替代品的信息,包括该工艺的经济潜力和二氧化碳排放量。在化学过程中,二氧化碳排放可分为直接排放和间接排放。确定净二氧化碳用于利用过程,即间接二氧化碳排放量减去所利用的二氧化碳。为了减少二氧化碳排放,期望呈现零或负的二氧化碳净排放的方法。使用此估计的初步评估,通过严格的详细模拟研究二氧化碳排放量最大的顶部过程,以评估净二氧化碳排放量。一旦建立并评估了基础案例设计,就可以通过利用机会来进行有针对性的改进,例如优化,热集成和改进的设计决策,从而获得更具可持续性和更低的净二氧化碳排放替代方案。该方法适用于各种过程以二氧化碳为原料的地方首先,收集并比较过程数据。评估经济可行性。由此,选择并详细分析了五个过程:碳酸二甲酯,琥珀酸,碳酸亚丙酯,二甲基乙烯和甲醇的生产。并非所有研究过程都可以设计为零或负的净二氧化碳排放量。发现碳酸丙烯酯的生产产生的净净二氧化碳为负,在其中进行有针对性的工艺改进可将净二氧化碳排放量降至每公斤碳酸亚丙酯为-0.389千克二氧化碳。另一方面,就琥珀酸生产而言,即使经过有针对性的改进,其净二氧化碳仍保持正值,即使与现有的工业过程相比,二氧化碳的相对减少量高达85%。本研究表明,有意义的净碳为了减少二氧化碳排放量,需要非常仔细地选择二氧化碳利用工艺以获得最佳结果。但是,存在以二氧化碳为原料生产某些散装化学品的潜在减少二氧化碳净排放的机会。

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