Knappe Victoria, Paczkowski Sebastian, Robles Luis Alonso Diaz, Gonzales Alain, Pelz Stefan
Department of Forest Utilization & Biomass Fuels and Combustion, University of Applied Science Rottenburg.
Department of Forest Utilization & Biomass Fuels and Combustion, University of Applied Science Rottenburg;
J Vis Exp. 2019 May 19(147). doi: 10.3791/58970.
Biomass is a sustainable fuel, as its CO2 emissions are reintegrated in biomass growth. However, the inorganic precursors in the biomass cause a negative environmental impact and slag formation. The selected short rotation coppice (SRC) willow wood has a high ash content ( = 1.96%) and, therefore, a high content of emission and slag precursors. Therefore, the reduction of minerals from SRC willow wood by low temperature microwave assisted hydrothermal carbonization (MAHC) at 150 °C, 170 °C, and 185 °C is investigated. An advantage of MAHC over conventional reactors is an even temperature conductance in the reaction medium, as microwaves penetrate the whole reactor volume. This allows a better temperature control and a faster cooldown. Therefore, a succession of depolymerization, transformation and repolymerization reactions can be analyzed effectively. In this study, the analysis of the mass loss, ash content and composition, heating values and molar O/C and H/C ratios of the treated and untreated SCR willow wood showed that the mineral content of the MAHC coal was reduced and the heating value increased. The process water showed a decreasing pH and contained furfural and 5-methylfurfural. A process temperature of 170 °C showed the best combination of energy input and ash component reduction. The MAHC allows a better understanding of the hydrothermal carbonization process, while a large-scale industrial application is unlikely because of the high investment costs.
生物质是一种可持续燃料,因为其二氧化碳排放会在生物质生长过程中重新整合。然而,生物质中的无机前驱体会对环境产生负面影响并导致结渣。所选的短轮伐期矮林(SRC)柳树木材灰分含量高( = 1.96%),因此排放和结渣前驱体的含量也高。因此,研究了在150℃、170℃和185℃下通过低温微波辅助水热碳化(MAHC)减少SRC柳树木材中矿物质的方法。与传统反应器相比,MAHC的一个优点是反应介质中的温度传导均匀,因为微波能穿透整个反应器体积。这使得温度控制更好且冷却更快。因此,可以有效地分析一系列解聚、转化和再聚合反应。在本研究中,对经处理和未处理的SCR柳树木材的质量损失、灰分含量和组成、热值以及摩尔O/C和H/C比的分析表明,MAHC煤的矿物质含量降低,热值增加。工艺用水的pH值降低,且含有糠醛和5-甲基糠醛。170℃的工艺温度显示出能量输入和灰分成分减少的最佳组合。MAHC有助于更好地理解水热碳化过程,不过由于投资成本高,大规模工业应用不太可能实现。