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Slow Pyrolysis as a Method for the Destruction of Japanese Wireweed, Sargassum muticum

机译:慢速热解作为销毁日本杂草(Sargassum muticum)的一种方法

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Japanese wireweed, Sargassum muticum is an invasive species to Great Britain, which might be controlled by harvesting it for energy and chemicals. Pyrolysis is the thermal decomposition of the organic components of dry biomass by heating in the absence of air. The distribution of matter between solid, liquid and syngas depends on the biomass and the pyrolysis temperature and time. Slow pyrolysis with lower temperatures (~ 400 o C) tends to produce more solid char. Pyrolysis char can be an effective soil ameliorant, a sequestration agent due to its stability or burned as a fuel. The research attempts to answer the question: Could slow pyrolysis be an energy efficient means for the destruction of Japanese wireweed and produce a potential product, biochar? A simple test rig was developed to establish the yield of biochar, biocrude and syngas from the slow pyrolysis of Sargassum muticum. An energy balance was calculated using compositional data from the analysis of the seaweed feedstock, higher heating values (HHV) from bomb-calorimetry and literature values. The energy required to heat 1 kg of dry seaweed by 400 o C for slow pyrolysis was estimated at 0.5 MJ. The HHV of syngas and biocrude produced from the pyrolysis totalled 2.9 MJ. There is, therefore, sufficient energy in the biocrude and syngas fractions produced by the pyrolysis of seaweed to power the process and produce useful biochar, but insufficient energy for drying.
机译:日本杂草(Sargassum muticum)是英国的一种入侵物种,可能通过收获它作为能源和化学药品来控制。热解是在没有空气的情况下通过加热使干燥生物质的有机成分热分解。物质在固体,液体和合成气之间的分布取决于生物质以及热解温度和时间。在较低的温度(约400 o C)下缓慢热解往往会产生更多的固体碳。热解炭可以是一种有效的土壤改良剂,由于其稳定性而可以作为螯合剂或作为燃料燃烧。这项研究试图回答这个问题:慢速热解能成为销毁日本杂草并产生潜在产物生物炭的节能手段吗?开发了一种简单的测试装置,以确定从鼠尾草的缓慢热解过程中产生的生物炭,生物粗品和合成气的产量。使用来自海藻原料分析的成分数据,来自炸弹量热法的较高热值(HHV)和文献值来计算能量平衡。将1 kg干燥海藻加热至400 o C进行缓慢热解所需的能量估计为0.5 MJ。热解产生的合成气和生物原油的HHV总计2.9 MJ。因此,由海藻热解产生的生物原油和合成气馏分中有足够的能量来驱动该工艺并产生有用的生物炭,但没有足够的能量用于干燥。

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