首页> 外文期刊>Energy & fuels >Development and Evaluation of a Novel Method for Determining Absorbent Composition in Aqueous Ammonia-Based CO_2 and SO_3~(2-) and SO_4~(2-) Loaded Capture Process Solutions via FT-IR Spectroscopy
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Development and Evaluation of a Novel Method for Determining Absorbent Composition in Aqueous Ammonia-Based CO_2 and SO_3~(2-) and SO_4~(2-) Loaded Capture Process Solutions via FT-IR Spectroscopy

机译:FT-IR光谱法测定氨水基CO_2和SO_3〜(2-)和SO_4〜(2-)负载捕获过程溶液中吸收剂成分的新方法的开发和评估

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摘要

CO, capture using aqueous ammonia is a potentially attractive option for emissions reductions from energy production and industrial processes. From an operational perspective, the capture absorbent must be monitored continuously to maintain the maximum efficiency of the capture process. In practice the composition of the absorbent is typically evaluated offline and retrospectively via wet chemistry methods, delaying any necessary variations to the process conditions to maintain maximum efficiency. Online absorbent monitoring methods incorporating spectroscopy via Raman or Fourier transform infrared (FT-IR) are attractive options due to their rapid response times and flexibility of the resulting output to be incorporated directly into process control packages. The present study outlines an evaluation of the FT-IR spectroscopic technique with analysis via partial least squares regression (PLSR) for a range of dilute to concentrated aqueous ammonia absorbents from similar to 0.3-6.0 M and over a range of CO2 loadings from similar to 0.0-0.6 mol CO2/mol NH3. The water concentration in the samples ranges from, similar to 35.2-55.2 M. The effect of interfering SOx species on the FT-IR method has been evaluated by incorporating dissolved SO32- and SO42- components into the solutions from 0.0-1.5 M. The analysis results in accurate concentrations for all analytes. The robustness of the analysis results has been evaluated and discussed. Additionally, FT-IR spectroscopy with PLSR was compared with conventional titration methods for a selected series of mixed NH3/CO2 standard solutions and a series of liquid samples from a bench-scale CO2 absorption process. At low concentrations where the total NH3 concentration is less than 4.0 M and the total CO2 concentration is less than 1.5 M, both the combined PLSR with FT-IR method and the conventional potentiometric titration methods were suitable for the evaluation of the liquid compositions. However, at concentrations out of the low concentration range, the combined PLSR and FT-IR method was proven to have a robustness and accuracy greater than those of the conventional potentiometric titration methods. Therefore, given the simplicity and rapid turnaround of FT-IR spectroscopy in combination with PLSR, we consider this to be a superior and flexible technique for monitoring of CO2 loaded aqueous ammonia solutions.
机译:使用氨水捕集二氧化碳是减少能源生产和工业过程排放的潜在诱人选择。从操作的角度来看,必须连续监测捕获吸收剂,以保持捕获过程的最大效率。在实践中,通常通过湿化学方法离线和回顾性地评估吸收剂的组成,从而延迟了对工艺条件的任何必要变化以保持最大效率。通过拉曼光谱或傅立叶变换红外光谱(FT-IR)结合光谱的在线吸收剂监测方法是有吸引力的选择,因为它们具有快速的响应时间和灵活的结果输出,可直接整合到过程控制包中。本研究概述了FT-IR光谱技术的评估,并通过偏最小二乘回归(PLSR)进行了分析,其范围为从0.3到6.0 M的稀氨水到浓氨水吸收剂,以及从到0.0-0.6摩尔CO2 /摩尔NH3。样品中的水浓度范围约为35.2-55.2M。已通过将溶解的SO32-和SO42-组分混入溶液中0.0-1.5M来评估干扰SOx物质对FT-IR方法的影响。分析得出所有分析物的准确浓度。分析结果的鲁棒性已经过评估和讨论。此外,使用PLSR的FT-IR光谱与常规滴定方法进行了比较,以用于一系列选定的NH3 / CO2混合标准溶液和来自台式CO2吸收过程的一系列液体样品。在总NH3浓度小于4.0 M且CO2总浓度小于1.5 M的低浓度下,结合了FT-IR方法和常规电位滴定方法的PLSR均适用于评估液体组合物。但是,在低浓度范围之外的浓度下,PLSR和FT-IR组合方法已被证明具有比常规电位滴定方法更高的鲁棒性和准确性。因此,鉴于FT-IR光谱技术与PLSR结合使用的简便性和快速周转性,我们认为这是一种监测CO2负载氨水溶液的卓越而灵活的技术。

著录项

  • 来源
    《Energy & fuels》 |2018年第8期|8563-8570|共8页
  • 作者单位

    CSIRO Energy, 10 Murray Dwyer Circuit, Mayfield West, NSW 2304, Australia;

    CSIRO Energy, 10 Murray Dwyer Circuit, Mayfield West, NSW 2304, Australia;

    CSIRO Energy, 10 Murray Dwyer Circuit, Mayfield West, NSW 2304, Australia;

    CSIRO Energy, 10 Murray Dwyer Circuit, Mayfield West, NSW 2304, Australia;

    Univ Newcastle, Sch Environm & Life Sci, Dept Chem, Callaghan, NSW 2308, Australia;

    Univ Newcastle, Sch Environm & Life Sci, Dept Chem, Callaghan, NSW 2308, Australia;

    CSIRO Energy, 10 Murray Dwyer Circuit, Mayfield West, NSW 2304, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 00:39:12

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