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A shock tube and laser absorption study of ignition delay times and OH reaction rates of ketones: 2-Butanone and 3-buten-2-one

机译:酮-2-丁酮和3-丁烯-2-酮的点火延迟时间和OH反应速率的冲击管和激光吸收研究

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摘要

Ketones are potential biofuel candidates and are also formed as intermediate products during the oxidation of large hydrocarbons or oxygenated fuels, such as alcohols and esters. This paper presents shock tube ignition delay times and OH reaction rates of 2-butanone (C_2H_5COCH_3) and 3-buten-2-one (C_2H_3COCH_3). Ignition delay measurements were carried out over temperatures of 1100-1400 K, pressures of 3-6.5 atm, and at equivalence ratios (Φ) of 0.5 and 1. Ignition delay times were monitored using two different techniques: pressure time history and OH absorption near 306 nm. The reaction rates of hydroxyl radicals (OH) with these two ketones were measured over the temperature range of 950-1400 K near 1.5 atm. The OH profiles were monitored by the narrow-line-width ring-dye laser absorption of the well-characterized R_1(5) line in the OH A-X (0,0) band near 306.69 nm. We found that the ignition delay times of 2-butanone and 3-buten-2-one mixtures scale with pressure as P~(-0.42) and P~(-0.52), respectively. The ignition delay times of 3-buten-2-one were longer than that of 2-butanone for stoichiometric mixtures, however, for lean mixtures (Φ = 0.5), 2-butanone had longer ignition delay times. The chemical kinetic mechanism of Serinyel et al. [1] over-predicted the ignition delay times of 2-butanone at all tested conditions, however, the discrepancies were smaller at higher pressures. The mechanism was updated with recent rate measurements to decrease discrepancy with the experimental data. A detailed chemistry for the oxidation of 3-buten-2-one was developed using rate estimation method and reasonable agreements were obtained with the measured ignition delay data. The measured reaction rate of 2-butanone with OH agreed well with the literature data, while we present the first high-temperature measurements for the reaction of OH with 3-buten-2-one. The following Arrhenius expressions are suggested over the temperature range of 950-1450 K: k_(C_2H_5COCH_3+OH) = 6.78 × 10~(13)exp(-2534/T)cm~3 mol~(-1) s~(-1) k_(C_2H_5COCH_3+OH)=4.17 × 10~(13)exp(-2350/T)cm~3 mol~(-1) s~(-1).
机译:酮是潜在的生物燃料候选物,在大型烃或含氧燃料(例如醇和酯)的氧化过程中,也可作为中间产物形成。本文介绍了2-丁酮(C_2H_5COCH_3)和3-丁烯-2-酮(C_2H_3COCH_3)的冲击管点火延迟时间和OH反应速率。在1100-1400 K的温度,3-6.5 atm的压力以及等当比(Φ)为0.5和1的条件下进行点火延迟测量。使用两种不同的技术监测点火延迟时间:压力时间历史和接近OH的吸收306纳米在950-1400 K的温度范围内(接近1.5个大气压)测量了羟基自由基(OH)与这两个酮的反应速率。通过在306.69 nm附近的OH A-X(0,0)波段中特征明确的R_1(5)线的窄线宽环形染料激光吸收来监测OH分布。我们发现2-丁酮和3-丁烯-2-一混合物的点火延迟时间随压力分别为P〜(-0.42)和P〜(-0.52)。对于化学计量混合物,3-丁烯-2-一的点火延迟时间长于2-丁酮,但是对于稀薄混合物(Φ= 0.5),2-丁酮的点火延迟时间更长。 Serinyel等人的化学动力学机理。 [1]在所有测试条件下都过高估计了2-丁酮的点火延迟时间,但是,在较高压力下,差异较小。该机制已通过最近的速率测量进行了更新,以减少与实验数据之间的差异。使用速率估计方法开发了用于氧化3-丁烯-2-一酮的详细化学方法,并与测得的点火延迟数据获得了合理的协议。实测的2-丁酮与OH的反应速率与文献数据吻合得很好,同时我们提出了OH与3-丁烯-2-酮反应的首次高温测量。在9500-1450 K的温度范围内建议以下Arrhenius表达式:k_(C_2H_5COCH_3 + OH)= 6.78×10〜(13)exp(-2534 / T)cm〜3 mol〜(-1)s〜(- 1)k_(C_2H_5COCH_3 + OH)= 4.17×10〜(13)exp(-2350 / T)cm〜3 mol〜(-1)s〜(-1)。

著录项

  • 来源
    《Combustion and Flame》 |2014年第3期|725-734|共10页
  • 作者单位

    Clean Combustion Research Center, Division of Physical Sciences and Engineering, King Abdullah University of Science and Technology (KAUST), Thuwal 23955, Saudi Arabia;

    Clean Combustion Research Center, Division of Physical Sciences and Engineering, King Abdullah University of Science and Technology (KAUST), Thuwal 23955, Saudi Arabia;

    Clean Combustion Research Center, Division of Physical Sciences and Engineering, King Abdullah University of Science and Technology (KAUST), Thuwal 23955, Saudi Arabia;

    Mechanical and Aerospace Engineering Department, University of Central Florida, Orlando, FL 32816, USA;

    Clean Combustion Research Center, Division of Physical Sciences and Engineering, King Abdullah University of Science and Technology (KAUST), Thuwal 23955, Saudi Arabia;

  • 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
  • 关键词

    Ketones; Ignition delay times; Shock tube; Reaction rates; Hydroxyl radical;

    机译:酮;点火延迟时间;避震管;反应速度;羟自由基;
  • 入库时间 2022-08-18 00:11:30

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