PRODUCTION AND CHARACTERIZATION OF HYDROTHERMALLY PROCESSRD SOLID BIOENERGY FROM AN INVASIVE SPECIES

Md. Azharul Islam, Ishrat Jerin, M. Islam, Partho Protim Das, Zhongchuang Liu, B. H. Hameed
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Abstract

Invasive alien species (IAS) are one of the most serious environmental concerns for native biodiversity, as they can alter how the ecosystem functions through species homogenization. Invasive species can affect human health, disrupt ecosystem process, economic damage to agriculture. The conversion of invasive species through hydrothermal carbonization process can reduce the negative impact of invasive species. The objective of this study was to produce and characterize hydrochar as solid bio-energy derived from the invasive species Sphagneticola trilobata (ISST), an invasive plant species, specifically through hydrothermal carbonization. This technology can convert invasive species into biofuel by reducing their negative impact on the environment. The effect of different factors, namely temperature and reaction time towards the hydrochar yield (%) was optimized by central composite design (CCD) using statistical response surface methodology (RSM). Here the optimized conditions for hydrochar production have been identified. The optimized temperature was 180.31 °C and the time was 2.23 hours. The best yield of the hydrochar was 51.54%. To verify the hydrochar as an energy material, the physicochemical, structural and morphological properties were found using SEM, FTIR, TGA, elemental and proximate analysis. The calorific value of hydrochar increased from the calorific value of 13.41 MJ/Kg of Sphagneticola trilobata biomass to 17.03 MJ/Kg. The amounts of sulfur (S) and ash reduced dramatically. Moreover, a greater carbon content was present in the green biomass than oxygen content. Consequently, it is an advantageous technology for improving the characteristics of biomass of invasive species to hydrochar as fuel for energy generation.
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从一种入侵物种中生产和表征水热加工固体生物能源
外来入侵物种(IAS)是本地生物多样性最严重的环境问题之一,因为它们会通过物种同质化改变生态系统的功能。外来入侵物种会影响人类健康,破坏生态系统进程,对农业造成经济损失。通过热液碳化过程转化入侵物种可以减少入侵物种的负面影响。本研究的目的是通过热液碳化法,从入侵物种 Sphagneticola trilobata(ISST)(一种入侵植物物种)中提取水炭作为固体生物能源,并对水炭的特性进行分析。该技术可将入侵物种转化为生物燃料,减少其对环境的负面影响。利用统计响应面方法(RSM),通过中央复合设计(CCD)对不同因素(即温度和反应时间)对水炭产量(%)的影响进行了优化。在此确定了生产水炭的优化条件。优化温度为 180.31 °C,时间为 2.23 小时。水炭的最佳产量为 51.54%。为了验证水煤炭作为一种能源材料,使用扫描电镜、傅立叶变换红外光谱、热重分析、元素分析和近似分析对其物理化学、结构和形态特性进行了研究。水炭的热值从 Sphagneticola trilobata 生物质的 13.41 MJ/Kg 增加到 17.03 MJ/Kg。硫(S)和灰分的含量大幅减少。此外,绿色生物质中的碳含量高于氧含量。因此,将入侵物种的生物质改良成水炭作为能源生产的燃料是一项有利的技术。
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