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首页> 外文期刊>International Journal of Sustainable and Green Energy >A closed drum carboniser for converting ligno-cellulosic residues to biochar pellets: A Nigerian study
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A closed drum carboniser for converting ligno-cellulosic residues to biochar pellets: A Nigerian study

机译:尼日利亚研究发现,封闭式鼓式碳化器可将木质纤维素残留物转化为生物炭颗粒

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摘要

This paper describes an innovative technology that provides an alternative to management of wastes arising from grass cuttings, weeds and agro-forestry residues that are usually discarded unattended. These wastes are now converted into biochar pellets using a newly designed carboniser which is highly economical and can generate employment opportunities to peri-urban and rural low income populations. We used simple spent oil drum with an attached chimney and cassava based starch or clay (e.g. kaolin) as binder to make pellets from the burnt raw materials. This process does not require any moving parts, electricity or any additional fuel to convert the waste into charcoal pellets. We have field tested the carboniser with elephant grass (Pennistum purpureum) as feedstock. Technical performance was evaluated using parameters such as Production Capacity Ratio (PCR), Reliability Ratio (RR) and Efficiency Ratio (ER). Samples of elephant grass, biochar pellets and the ash produced after the biochar used for cooking were analysed for selected chemical characteristics (viz. sulphur, carbon, hydrogen, potassium and calorific value), using standard laboratory procedures. The results obtained gave production capacity and efficiency ratio of 83%; actual production capacity of 25 kg/hour; which is 100% reliable. The differences in the chemical parameters for the three samples were significant. Potassium, carbon and calorific values were observed in increasing order: ash < elephant grass < biochar. Biochar gave lowest values of hydrogen (12.36±0.01%) and sulphur (0.67±0.0%) contents while elephant grass contained highest values of these elements (13.28±.02% and 1.38±0.00%, respectively). This technology will benefit less educated rural and peri-urban populations to develop a small scale or medium scale entrepreneurship with low financial inputs and minimal skills and the product is a good cooking fuel and environment friendly with less or no smoke.
机译:本文介绍了一种创新技术,该技术可替代管理通常因无人看管而丢弃的草屑,杂草和农林业残留产生的废物。现在,使用新设计的碳化器将这些废物转化为生物炭颗粒,该碳化器具有很高的经济效益,可以为城郊和农村低收入人群创造就业机会。我们使用了简单的废油桶,并在其上连接了烟囱和木薯淀粉或粘土(例如高岭土)作为粘合剂,从燃烧的原料中制成颗粒。此过程不需要任何移动部件,电力或任何其他燃料即可将废物转化为木炭颗粒。我们已经用大象草(Pennistum purpureum)作为原料对碳化器进行了现场测试。使用生产能力比(PCR),可靠性比(RR)和效率比(ER)等参数评估技术性能。使用标准的实验室程序,分析了大象草,生物炭颗粒和用于烹饪的生物炭后产生的灰分的样品的选定化学特性(即硫,碳,氢,钾和热值)。获得的结果使生产能力和效率比为83%;实际生产能力为25公斤/小时;这是100%可靠的。三个样品的化学参数差异很大。钾,碳和热值按升序排列:灰分<象草<生物炭。生物炭的氢含量最低(12.36±0.01%),硫含量最低(0.67±0.0%),而象草中这些元素的含量最高(分别为13.28±0.02%和1.38±0.00%)。这项技术将使受教育程度较低的农村和城市郊区的人们受益,以发展具有低财务投入和最低技能的中小型企业,该产品是一种良好的烹饪燃料,对环境友好,烟少或无烟。

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