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Biomass resources and biofuels potential for the production of transportation fuels in Nigeria

机译:尼日利亚生产运输燃料的生物质资源和生物燃料潜力

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摘要

Solid biomass and waste are major sources of energy. They account for about 80% of total primary energy consumed in Nigeria. This paper assesses the biomass resources (agricultural, forest, urban, and other wastes) available in Nigeria and the potential for biofuel production from first, second, third and fourth generation biomass feedstocks. It reviews the scope of biomass conversion technologies tested within the country and the reports on the technology readiness level of each. Currently, most of the emerging biofuels projects in Nigeria utilize first generation biomass feedstock for biofuel production and are typically located many miles away from the petroleum refineries infrastructures. These feedstocks are predominantly food crops and thus in competition with food production. With significant availability of non-food biomass resources, particularly in the Niger Delta region of Nigeria, and the petroleum refineries located in the same area, it is pertinent to consider expanding use of the petroleum refinery׳s infrastructure to co-process non-food biomass into bio-intermediate oil for blending with petroleum. This not only addresses the potential food versus fuel conflict challenging biofuel production in Nigeria, but also reduces the cost of setting up new bio-refineries thus eliminating the transportation of ethanol to existing petroleum refineries for blending. In view of this, it is recommended that further research be carried out to assess the feasibility of upgrading existing refineries in Nigeria to co-process bio-based fuels and petroleum products thus achieving the targets set by the Nigeria Energy Commission for biofuel production in the country.
机译:固体生物质和废物是主要的能源。它们约占尼日利亚一次能源消费总量的80%。本文评估了尼日利亚可获得的生物质资源(农业,森林,城市和其他废物),以及第一,第二,第三和第四代生物质原料产生生物燃料的潜力。它审查了该国测试的生物质转化技术的范围以及每种技术的技术准备水平报告。当前,尼日利亚大多数新兴的生物燃料项目都使用第一代生物质原料来生产生物燃料,并且通常位于距炼油厂基础设施数英里的地方。这些原料主要是粮食作物,因此与粮食生产竞争。由于非粮食生物质资源的可利用性特别是在尼日利亚的尼日尔三角洲地区以及位于同一地区的炼油厂,因此有必要考虑扩大利用炼油厂的基础设施来共加工非粮食生物质转化为生物中间体油,与石油混合。这不仅解决了潜在的食品与燃料冲突,挑战了尼日利亚的生物燃料生产,而且降低了建立新的生物精炼厂的成本,从而消除了将乙醇运输到现有的石油精炼厂进行混合的过程。有鉴于此,建议进行进一步的研究,以评估升级尼日利亚现有炼油厂以共同处理生物基燃料和石油产品的可行性,从而实现尼日利亚能源委员会设定的目标。国家。

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