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Stove Performance and Emission Characteristics in Residential Wood Log and Pellet Combustion, Part 1: Pellet Stoves

机译:家用原木和颗粒燃烧炉的性能和排放特性,第1部分:颗粒炉

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摘要

Stove performance, characteristics, and quantities of gaseous and paniculate emissions were determined for two different pellet stoves, varying fuel load, pellet diameter, and chimney draft. This approach aimed at covering variations in emissions from stoves in use today. The extensive measurement campaign included CO, NO_x, organic gaseous carbon, volatile organic compounds (VOCs), polycyclic aromatic hydrocarbons (PAHs), total paniculate matter (PM_(tol)) as well as particle mass and number concentrations, size distributions, and inorganic composition. At high load, most emissions were similar. For stove B, operating at high residual oxygen and solely with primary air, the emissions of PM,,,, and particle numbers were higher while the particles were smaller. Lowering the fuel load, the emissions of CO and hydrocarbons increased dramatically for stove A. which operated continuously also at lower fuel loads. On the other hand for stove B, which had intermittent operation at lower fuel loads, the emissions of hydrocarbons increased only slightly lowering the fuel load, while CO emissions increased sharply, due to high emissions at the end of the combustion cycle. Beside methane, dominating VOCs were ethene, acetylene, and benzene and the emissions of VOC varied in the range 1.1 -42 mg/MJ_(fuel). PAH emissions (2-340 μg/MJ_(fuel)) were generally dominated by phenanthrene. fluoranthene and pyrene. The PM_(tot) values (15-45 mg/MJ_(fuel)) were in all cases dominated by fine particles with mass median diameters in the range 100-200 nm, peak mobility diameters of 50-85 nm, and number concentrations in the range 4 × 10~(13) to 3 × 10~(14) particles/MJ_(fuel). During high load conditions, the paniculate matter was totally dominated by inorganic particles at 15-25 mg/MJ_(fuel) consisting of potassium, sodium, sulfur, and chlorine, in the form of K_2SO_4. K_3Na(SO_4)_2, and KCl. The study shows that differences in operation and modulation principles for the tested pellet stoves, relevant for appliances in use today, will affect the performance and emissions significantly, although with lower scattering in the present study compared to compiled literature data.
机译:针对两个不同的颗粒炉,确定了不同的燃料负载,颗粒直径和烟囱通风量,确定了炉子的性能,特性以及气体和颗粒物排放量。该方法旨在涵盖当今使用的火炉排放物的变化。广泛的测量活动包括CO,NO_x,有机气态碳,挥发性有机化合物(VOC),多环芳烃(PAH),总颗粒物(PM_(tol))以及颗粒质量和数量浓度,尺寸分布以及无机物组成。在高负荷下,大多数排放是相似的。对于在高残留氧气且仅在一次空气下运行的炉具B,PM 、、和颗粒数量的排放较高,而颗粒较小。降低燃料负荷,炉具A的CO和碳氢化合物排放量急剧增加,该炉具在较低燃料负荷下也连续运行。另一方面,对于在较低燃料负荷下可间歇运行的炉具B,由于燃烧循环结束时的高排放量,碳氢化合物的排放仅略微降低了燃料负荷而增加,而CO排放量则急剧增加。除甲烷外,主要的挥发性有机化合物为乙烯,乙炔和苯,挥发性有机化合物的排放在1.1 -42 mg / MJ_(燃料)范围内变化。 PAH排放量(2-340μg/ MJ_(燃料))通常以菲为主。荧蒽和pyr。在所有情况下,PM_(tot)值(15-45 mg / MJ_(燃料))都由质量中值直径在100-200 nm范围内,峰迁移率直径在50-85 nm范围内,范围是4×10〜(13)到3×10〜(14)个粒子/ MJ_(燃料)。在高负荷条件下,颗粒状物质完全以15-25 mg / MJ_(燃料)的无机颗粒占主导地位,该燃料由钾,钠,硫和氯组成,形式为K_2SO_4。 K_3Na(SO_4)_2和KCl。研究表明,与目前使用的器具有关的,经过测试的颗粒炉的操作和调制原理上的差异将显着影响性能和排放,尽管与汇编的文献数据相比,本研究中的散射较低。

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  • 来源
    《Energy & fuels》 |2011年第janaafeba期|p.307-314|共8页
  • 作者单位

    Energy Technology and Thermal Process Chemistry, Umed University, SE-901 87 Umea, Sweden;

    Energy Technology Centre,Box 726, SE-941 28 Pilea. Sweden,Division of Energy Engineering, Luled Technical University, SE-987 78 Lulea, Sweden;

    Department of Analytical Chemistry. Arrhenius Laboratory, Stockholm University, SE-106 91 Stockholm, Sweden;

    Department of Analytical Chemistry. Arrhenius Laboratory, Stockholm University, SE-106 91 Stockholm, Sweden;

    Energy Technology and Thermal Process Chemistry, Umed University, SE-901 87 Umea, Sweden;

  • 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
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