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基于生物质密度、气化行为、气流比和设计的气化炉灶参数分析

Parametric Analysis of a Gasification-Based Cookstove as a Function of Biomass Density, Gasification Behavior, Airflow Ratio, and Design.

作者信息

Gutiérrez Jonatan, Chica Edwin Lenin, Pérez Juan F

机构信息

Grupo de Manejo Eficiente de la Energía-GIMEL, Facultad de Ingeniería, Universidad de Antioquia, Calle 67, No. 53-108, Medellín 050010, Colombia.

Grupo Energía Alternativa-GEA, Facultad de Ingeniería, Universidad de Antioquia, Calle 67, No. 53-108, Medellín 050010, Colombia.

出版信息

ACS Omega. 2022 Feb 24;7(9):7481-7498. doi: 10.1021/acsomega.1c05137. eCollection 2022 Mar 8.

Abstract

The energy performance and emissions (carbon monoxide and total suspended particulate matter) of a biomass gasification-based cookstove under a modified water boiling test (WBT 4.2.3 protocol) were characterized here. The controllable process parameters analyzed were the biomass bulk density (pellets-WP and chips-WCH) and the combustion-air/gasification-air ratio (2.8, 3.0, and 3.2). Moreover, a design parameter of the cookstove was analyzed through two combustion chamber designs (combustion chambers 1 and 2). The cookstove was characterized in detail considering the complete cookstove (control volume 1), the combustion chamber (control volume 2), and the gasification process (control volume 3). The cookstove reached an average efficiency of 25.2% for pellets and 24.1% for chips. The best behavior for the cookstove was achieved when pellets were used, which is attributed to their higher bulk density and to the fact that during their gasification process, the biochar yield was 12% higher, while the biomass consumption decreased by 16% compared to the chips. The carbon monoxide specific emissions were 2.78 g/MJ for pellets and 2.75 g/MJ for chips. On average, the cookstove released total suspended particulate matter between 74.11 and 122.70 mg/MJ. The cookstove low emissions are ascribed to the proper combustion air flow and the combustion chamber design, which favored the mixing between producer gas and combustion air.

摘要

在此对基于生物质气化的炉灶在改良的水煮试验(WBT 4.2.3协议)下的能源性能和排放物(一氧化碳和总悬浮颗粒物)进行了表征。分析的可控工艺参数为生物质堆积密度(颗粒-WP和木屑-WCH)以及燃烧空气/气化空气比(2.8、3.0和3.2)。此外,通过两种燃烧室设计(燃烧室1和燃烧室2)对炉灶的一个设计参数进行了分析。从整个炉灶(控制体积1)、燃烧室(控制体积2)和气化过程(控制体积3)的角度对该炉灶进行了详细表征。该炉灶使用颗粒时的平均效率为25.2%,使用木屑时为24.1%。使用颗粒时炉灶的性能最佳,这归因于其较高的堆积密度以及在气化过程中生物炭产量高出12%,同时与木屑相比生物质消耗量降低了16%。颗粒的一氧化碳特定排放量为2.78克/兆焦,木屑为2.75克/兆焦。该炉灶平均释放的总悬浮颗粒物在74.11至122.70毫克/兆焦之间。该炉灶的低排放归因于适当的燃烧空气流量和燃烧室设计,这有利于发生炉煤气与燃烧空气之间的混合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f026/8908516/6eec047b49e0/ao1c05137_0002.jpg

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