Effects of a Cyclone Dimensions on Quality of Syngas Produced with a Wood-fired Biomass Gasifier

Nzihou Jean Fidele, Hamidou Salou, Segda Bila Gerard, Ouattara Frederic, Compaore Hamidou
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 In a previous work, we designed and fabricated a downdraft biomass gasifier with a relatively big cyclone and filtration units. Produced syngas was full of moisture and carbon dioxyde (CO2) when the gasifier was feed with wood, but moisture content was lesser with charcoal. Therefore further work should be carried out in order to use low density wood itself from agricultural, furniture makers or sawmill wastes.
 We compared different cyclone separator design methods, adopted the Lapple’s cutt of model and found that to obtain good removal efficiency of unwanted particles, it is better to work with small cyclones. The new cyclone that we built allowed us on the one hand to reduce the humidity of the synthesis gas obtained, and on the other hand to reduce the quantity of tars in the liquid collected at the bottom of the cyclone. These improvements have led to the production of cleaner and better fuel syngas.","PeriodicalId":499811,"journal":{"name":"Journal of Energy Research and Reviews","volume":"2 6","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-10-25","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Energy Research and Reviews","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.9734/jenrr/2023/v15i3312","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

Charcoal gasification was widely used during the second World War to deal with petroleum scarcity. When petroleum was again available after the war, gasification was neglected afterwards. However, fossils resources are know as non-renewable and there are several reseach carried out all over the world to develop renewable sources of energy. Under that scope gasifiers are of great interest in the developing countries for developing individual or decentralised sources of energy. Even in developed countries, several research and implementation of gasification units are in progress. In a previous work, we designed and fabricated a downdraft biomass gasifier with a relatively big cyclone and filtration units. Produced syngas was full of moisture and carbon dioxyde (CO2) when the gasifier was feed with wood, but moisture content was lesser with charcoal. Therefore further work should be carried out in order to use low density wood itself from agricultural, furniture makers or sawmill wastes. We compared different cyclone separator design methods, adopted the Lapple’s cutt of model and found that to obtain good removal efficiency of unwanted particles, it is better to work with small cyclones. The new cyclone that we built allowed us on the one hand to reduce the humidity of the synthesis gas obtained, and on the other hand to reduce the quantity of tars in the liquid collected at the bottom of the cyclone. These improvements have led to the production of cleaner and better fuel syngas.
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旋流器尺寸对木质生物质气化炉合成气质量的影响
木炭气化在第二次世界大战期间被广泛用于解决石油短缺问题。战争结束后,当石油再次可用时,气化就被忽视了。然而,化石资源被认为是不可再生的,世界各地都在进行一些研究来开发可再生能源。在这个范围内,气化炉对发展中国家发展单独的或分散的能源具有极大的兴趣。即使在发达国家,也有一些气化装置的研究和实施正在进行中。 在之前的工作中,我们设计并制造了一个具有较大旋风和过滤装置的下吸式生物质气化炉。当气化炉以木材为原料时,产生的合成气充满水分和二氧化碳(CO2),但木炭的水分含量较少。因此,为了使用来自农业、家具制造商或锯木厂废料的低密度木材本身,应该开展进一步的工作。我们比较了不同的旋风分离器设计方法,采用了模型的Lapple切割,发现要获得良好的有害颗粒去除效率,最好使用小型旋风分离器。我们建造的新旋风使我们一方面可以降低合成气体的湿度,另一方面可以减少在旋风底部收集的液体中的焦油量。这些改进导致了更清洁、更好的燃料合成气的生产。
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