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Implementation of a 150kva biomass gasifier system for community economic empowerment in South Africa

机译:为南非的社区经济赋权实施150kva生物质气化炉系统

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摘要

There is growing interest in research and development activities on biomass gasification technologies as an alternative to fossil fuels technologies. However not much has been done in terms of technology transfer, particularly in under-developed and developing countries such as South Africa. This is mainly because of the lack of resources such as funding. Most parts of the under-developed and developing countries fall within rural areas and semi-urban centers, which are endowed with biomass resources. South Africa has a number of sawmill operators who generate tons of biomass waste during processing of timber; the large proportion of this is burned in furnaces as a means for waste management while a very small proportion is collected and used by people in rural areas for cooking their food. The majority of people in rural areas of South Africa are either unemployed or cannot afford the current energy services. The main aim of this research was to establish the viability of electricity generation for community economic development through biomass gasification, specifically using the locally designed System Johansson Biomass Gasifier™ (SJBG), and to establish the efficiency of the gasifier and associated components with a view of developing strategies to enhance it. The study established the technical and economic feasibility of using the SJBG to generate low-cost electricity for community empowerment. The study also developed strategies to improve the particle collection efficiency of the cyclone. In addition to this, a low-cost gas and temperature monitoring system capable of monitoring gas and temperature at various points of the gasifier was developed. The system was built from three Non- Dispersive Infrared gas sensors, one Palladium/Nickel gas sensor and four type K thermocouples. The study also investigated the impact of fuel compartment condensates on gasifier conversion efficiency. This is an area that has not yet been well researched since much has been done on energy recovery using combined heat and power applications that do not utilize the energy in condensates because these are produced in the gasifier and drained with chemical energy stored in them. The study established that the condensates do not have a significant impact on efficiency.
机译:人们对生物质气化技术作为化石燃料技术的替代品的研究与开发活动越来越感兴趣。但是,在技术转让方面并没有做很多事情,特别是在诸如南非这样的不发达国家和发展中国家。这主要是由于缺乏资金等资源。欠发达和发展中国家的大部分地区都位于农村地区和半城市中心,那里拥有生物量资源。南非有许多锯木厂经营者,他们在木材加工过程中会产生大量的生物质废物。其中很大一部分在炉子中燃烧,作为废物管理的手段,而很小一部分则被农村地区的人们收集和用于烹饪食物。南非农村地区的大多数人失业或无法负担当前的能源服务。这项研究的主要目的是通过生物质气化来建立发电能力,以促进社区经济发展,特别是使用本地设计的系统约翰逊生物质气化炉™(SJBG),并建立气化炉和相关组件的效率,以期开发策略以增强它。该研究确定了使用SJBG产生低成本电力以增强社区能力的技术和经济可行性。该研究还开发了提高旋风分离器颗粒收集效率的策略。除此之外,还开发了一种低成本的气体和温度监测系统,该系统能够监测气化炉各个位置的气体和温度。该系统由三个非色散红外气体传感器,一个钯/镍气体传感器和四个K型热电偶组成。该研究还调查了燃料室冷凝物对气化炉转化效率的影响。这是一个尚未得到充分研究的领域,因为利用热电联产在能源回收方面做了大量工作,这些应用没有利用冷凝物中的能量,因为冷凝物是在气化炉中产生的,并利用储存在其中的化学能排出。研究确定冷凝水对效率没有重大影响。

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