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Energy Production Through Gasification of Waste Biomass in Punjab Region

机译:通过旁遮普地区废物生物量气化能源生产

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This paper presents useful energy (gas and power) production from the three waste biomass (dried grass, leaves, and dead branches) through gasification technology. These waste biomasses were collected in the Indian Institute of Technology Ropar, Punjab and air-dried. The feasibility of the studied biomass for thermochemical conversion process in a downdraft biomass gasifier has been investigated by characterization of biomass. The average higher heating values based on the ultimate and proximate analysis correlation were evaluated as 15.58 MJ/kg for dried grass, 17.075 MJ/kg for leaves and 15.785 MJ/kg for dead branches. The performance of downdraft biomass gasifier has been investigated in terms of calorific valve (3.52 MJ/m~3 for dried grass, 5.14 MJ/m~3 for leaves and 4.15 MJ/m~3 for dead branches) and cold gas efficiency (50.83%, for dried grass, 64.72% for leaves and 59.15% for dead branches). The results show that these waste biomass are a reliable source for energy production through gasification technology having dual benefits of easy waste management and low-cost power production.
机译:本文通过气化技术提出了从三个废物生物量(干草,叶子和死区)的有用能量(天然气和动力)生产。这些废物生物量被收集在印度工业罗博尔,旁遮普邦和风干燥。通过对生物质的表征研究了下式生物量气化器中研究生物质在降下的生物量气化器中的可行性。基于最终和近似分析相关性的平均加热值被评估为干草的15.58mJ / kg,叶子17.075mJ / kg,死枝为15.785 mj / kg。在热阀(干草3.52mJ / m〜3方面,研究了下滑生物量气化器的性能,为叶子5.14mJ / m〜3,死枝为4.15mJ / m〜3)和冷气效率(50.83 %,对于干草,叶子64.72%,死亡分支的59.15%)。结果表明,这些废物生物量是通过气化技术能源生产的可靠来源,具有易于废物管理和低成本电力生产的双重效益。

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