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Experimental and and numerical analysis on impacts of significant factors on carbon dioxide absorption efficiency in the carbon solidification process

机译:碳凝固过程中重要因素对二氧化碳吸收效率影响的实验与数值分析

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摘要

Onboard carbon capture and storage is an excellent solution to reduce the greenhouse gas emissions from shipping. This paper focuses on the absorption process and CO2 gas flow rate, the geometry of absorption tank and the concentration of absorption solution are key factors affecting the absorption efficiency. This paper will illustrate the experimental results of the impacts of these factors on the CO2 absorption efficiency. Meanwhile, results from CFD simulations of effects of the key factors on CO2 absorption rates will be presented in this paper. Pressure distributions, solution concentration and velocity of CO2 gas and solution are derived from the simulations. The results of the simulations provide fundamentals and insight understanding of the design of a proto-type demonstration system onboard a case ship. In addition to the key factors, the effect of atmosphere temperature was simulated and analyzed. Comparisons between the experiment and simulation have been conducted and the results have shown a good agreement. Optimized values of the factors are obtained from the comparisons and analyses. The numerical simulations of temperature effects on CO2 absorption rate and optimized temperature for the absorption process are also presented in the paper. (C) 2015 Elsevier Ltd. All rights reserved.
机译:车载碳捕获和存储是减少运输中温室气体排放的极佳解决方案。本文重点研究吸收过程和CO2气体流量,吸收罐的几何形状和吸收溶液的浓度是影响吸收效率的关键因素。本文将说明这些因素对CO2吸收效率的影响的实验结果。同时,本文将介绍关键因素对CO2吸收率影响的CFD模拟结果。通过模拟得出压力分布,溶液浓度以及CO2气体和溶液的速度。仿真结果为案例船上的原型演示系统的设计提供了基础知识和洞察力。除了关键因素外,还模拟和分析了大气温度的影响。实验和仿真之间进行了比较,结果显示出很好的一致性。通过比较和分析获得因素的最佳值。本文还给出了温度对CO 2吸收速率和吸收过程最优化温度的影响的数值模拟。 (C)2015 Elsevier Ltd.保留所有权利。

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