A simple modeling approach for characteristics analysis of hydrothermal liquefaction products from low-lipid aquatic plants
Autor: | Shuqing Guo, Yangyang Han, Xiangyuan Dong, Caixia Zhu, Zhezhe Wang |
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Rok vydání: | 2017 |
Předmět: |
Energy recovery
Waste management 020209 energy Severity factor Energy Engineering and Power Technology chemistry.chemical_element Biomass 02 engineering and technology 010501 environmental sciences Raw material 01 natural sciences Industrial and Manufacturing Engineering Hydrothermal liquefaction chemistry Chemical engineering Yield (chemistry) 0202 electrical engineering electronic engineering information engineering Char Carbon 0105 earth and related environmental sciences |
Zdroj: | Applied Thermal Engineering. 125:394-400 |
ISSN: | 1359-4311 |
DOI: | 10.1016/j.applthermaleng.2017.07.042 |
Popis: | Hydrothermal liquefaction (HTL) product distributions highly depend on reaction temperature and holding time. This paper provided a new method to establish the isothermal model on the relationship between HTL product characteristics and severity factor (combined temperature and time). The results showed that the yields of the HTL bio-oil and aqueous-phase product presented strong correlations with reaction severity and could be modeled by Lorentz (or Gaussian) function, while the HTL solid char decreased gradually with increase of reaction severity, and could be modeled by the Dose-response function. All the mean adj. R2 values of the models were greater than 0.89. The H/C, O/C ratio, dry ash-free carbon recovery (energy recovery) could be described by Bi-Dose-response, Dose-response, Dose-response, and Lonrentz models, respectively. Low biomass/water ratio resulted in achieving the maximum bio-oil yield at low reaction severity. High bio-oil yield could be produced with low-ash feedstock. The maximum dry ash-free carbon recovery and energy recovery of Desmodesmus sp. (Dsp), Cyanobacteria sp. (Csp), Bacillariophyta sp. (Bsp), and Duckweed (Dw) dependeded less on the carbohydrate composition. The newly established models of the HTL yields provide a promising method for predicting the product characteristics, simulating, designing, and optimizing the HTL system. |
Databáze: | OpenAIRE |
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