Investigation of the potential of greenhouse post-harvest wastes for bioenergy production and utilization for heating and carbon dioxide application

B. Şen
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Abstract

In this study, raw biomass feedstock characterization of greenhouse post-harvest residues of tomato, pepper, and eggplant has been investigated using the wastes of stem and leaves as a source of energy gained from palletization. The characterization was compared to both sawdust and the relevant ISO and EU pellet standards. The proximate and ultimate analyses results of all the tested feedstock materials have proven to be successful candidates for pelletizing and combustion process. The bulk density of tomato, pepper, and eggplant pellets were found to be 568 kg/m3, 575 kg/m3, 589 kg/m3, respectively, and the higher heating values of these produces were found to be 17.25 MJ/kg, 17.45 MJ/kg, and 17.80 MJ/kg, respectively. Based on the results, it is possible to generate 10 tons of waste per hectare capable of producing almost 50 MWh of heating energy. Furthermore, this waste could generate more than 6.5 tons of CO2 per hectare. The study results suggest that the heating energy potential and the amount of CO2 emitted could be used in greenhouses to support photosynthesis during low temperature and low solar radiation periods.
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调查温室收获后废弃物用于生物能源生产和加热利用和二氧化碳应用的潜力
在本研究中,研究了番茄、辣椒和茄子温室收获后残留物的原料生物质原料特性,利用茎和叶的废物作为托盘化获得的能量来源。将表征与木屑和相关的ISO和欧盟颗粒标准进行了比较。所有测试原料的近似和最终分析结果已被证明是制球和燃烧过程的成功候选材料。番茄、辣椒和茄子颗粒的容重分别为568 kg/m3、575 kg/m3和589 kg/m3,这些产品的较高热值分别为17.25 MJ/kg、17.45 MJ/kg和17.80 MJ/kg。根据研究结果,每公顷有可能产生10吨废物,产生近50兆瓦时的热能。此外,这种废物每公顷可能产生超过6.5吨的二氧化碳。研究结果表明,在低温和低太阳辐射时期,温室的加热能量潜力和二氧化碳排放量可以用来支持光合作用。
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