Wetlands in Brazil, Potential Source of Energy Biomass? Evaluating the Produced Cyperus Giganteu Pruning Material

Eliane Cristina Braga Martins Goncalves, F. J. Moura, Marcos Alexandre Teixeira
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Abstract

The objective of this study was the fully characterization of the pruning wastes from macrophyte Cyperus giganteus from tertiary sewage treatment of Wastewater Treatment Plant, Ponte dos Leites, located in Araruama, RJ, Brazil. Such analyses aimed at the systematic evaluation of the feasibility of using the pruning material as an energy input. To reach the objectives, the macrophytes were submitted to experimental analyses of their physical properties (Specific density: 0.44-0.77 g.cm -3 , Bulk density: 0.08-0.09 g.cm -3 , among others characteristics), chemical and immediate analysis, and thermal analysis. The results of thermal behavior characterized the biomass as a viable energy source (High Heat Value 14-16 MJ.kg -1 ). Focused in its pre-treatment for energy use, C. giganteus different samples fractions analyses confirmed that the molecular structures of the macrophyte (Lignin: 17.32-26.83 wt%, Cellulose: 27.84-32.65 wt%, Hemicellulose: 30.09-31.46 wt%; depending on the part of the plant) affect the mechanisms of thermal decomposition. Pyrolysis processing yields vary from 83.43 to 75.91%. This shows the effectiveness of the technique adopted in the transformation of the analyzed vegetal residues into raw materials for energy generation, evidencing the energy potential of the biomass and, confirming the use of these as raw materials in thermo-conversion processes.
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巴西湿地:生物质能源的潜在来源?生产的巨柏剪枝材料的评价
本研究的目的是对位于巴西RJ州Araruama的Ponte dos Leites污水处理厂三级污水处理产生的大型植物巨莎草(Cyperus giganteus)修剪废弃物进行全面表征。这种分析旨在系统地评价使用修剪材料作为能量输入的可行性。为了达到目的,对这些大型植物进行了物理特性(比密度:0.44-0.77 g.cm -3,容重:0.08-0.09 g.cm -3等特性)、化学分析、即时分析和热分析的实验分析。热行为结果表明生物质是一种可行的能源(高热值14-16 MJ)。Kg -1)。重点对其进行能量利用前处理,通过对不同样品组分的分析,证实了该大型植物的分子结构(木质素:17.32 ~ 26.83 wt%,纤维素:27.84 ~ 32.65 wt%,半纤维素:30.09 ~ 31.46 wt%;取决于植物的部分)影响热分解的机制。热解过程产率从83.43 ~ 75.91%不等。这表明了将分析的植物残留物转化为能源生产原料所采用的技术的有效性,证明了生物质的能源潜力,并确认了在热转化过程中使用这些作为原材料。
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