Bio-oil production by catalytic solvent liquefaction from a wild microalgae consortium

被引:0
作者
Oscar D. González-Gálvez
Isaac Nava Bravo
Rogelio Cuevas-García
Sharon B. Velásquez-Orta
Adam P. Harvey
Luis Cedeño Caero
María Teresa Orta Ledesma
机构
[1] Instituto de Energías Renovables,Coordinación de Ingeniería Ambiental, Instituto de Ingeniería
[2] UNAM,Unidad de Investigaciones en Catálisis (UNICAT), Departamento de Ingeniería Química, Facultad de Química
[3] Universidad Nacional Autónoma de México,School of Chemical Engineering
[4] Ciudad Universitaria,undefined
[5] Universidad Nacional Autónoma de México,undefined
[6] Ciudad Universitaria,undefined
[7] Newcastle University,undefined
来源
Biomass Conversion and Biorefinery | 2021年 / 11卷
关键词
Native microalgae biomass; Bio-oil; Catalytic solvent liquefaction; Zeolite HZSM-5; Tetralin;
D O I
暂无
中图分类号
学科分类号
摘要
Due to the increase in greenhouse gas emissions by combustion of fossil fuels, new alternatives for obtaining clean energy have been investigated. In this work, a wild microalgae consortium, grown in treated wastewater, was used to produce bio-oil by catalytic solvent liquefaction process. Tetralin and zeolite HZSM-5 (Si/Al = 80) were employed as a reaction medium and catalyst, respectively. The effect of H2 pressure and reaction time on biocrude yield, conversion of biomolecules, and the type of generated chemical compounds in the bio-oil were investigated, and reaction schemes were proposed. The best reaction condition was at 120 min and 760 psi, where a bio-oil yield of 51 wt% was obtained and high percentage of the original protein content was converted. The main type of compounds in the produced bio-oil were oxygenated (~ 50 chromatographic area %) and nitrogenated (~ 18 area %) compounds. H2 pressure is an important variable to process proteins, lipids, and simple carbohydrates. Despite the high protein content in the feedstock, a relatively low nitrogen content of 1.2–1.5 wt% was found in the resultant bio-oil, which has an estimated HHV of 32–33 MJ/kg.
引用
收藏
页码:2627 / 2639
页数:12
相关论文
共 259 条
[21]  
Jazrawi C(1997)Fractional pyrolysis of Cyanobacteria from water blooms over HZSM-5 for high quality bio-oil production Fuel 76 1043-334
[22]  
Montoya A(2016)Effect of reaction time and algae loading on water-soluble and insoluble biocrude fractions from hydrothermal liquefaction of algae ACS Sustain Chem Eng 4 4237-263
[23]  
Yuen A(2016)Comparative studies of thermochemical liquefaction characteristics of microalgae using different organic solvents Energy Convers Manag 117 326-115
[24]  
Cole AJ(2019)Liquefaction of micro-algae with iron catalyst Fuel 241 255-356
[25]  
Neveux N(2016)Role of hydrogen transfer during catalytic copyrolysis of lignin and tetralin over HZSM-5 and HY zeolite catalysts Biomass Bioenergy 95 109-333
[26]  
Paul NA(1956)Co-pyrolysis of microalgae and sewage sludge: biocrude assessment and char yield prediction Anal Chem 28 350-32
[27]  
De Nys R(2014)Bio-crude oil production using catalytic hydrothermal liquefaction (HTL) from native microalgae harvested by ozone-flotation Bioresour Technol 155 330-200
[28]  
Maschmeyer T(2016)Harvesting microalgae using ozoflotation releases surfactant proteins, facilitates biomass recovery and lipid extraction J Microbiol Methods 125 28-241
[29]  
Haynes BS(1978)Colorimetric method for determination of sugars and related substances Anal Biochem 86 193-353
[30]  
Thangalazhy-Gopakumar S(1987)Rapid quantification of microalgal lipids in aqueous medium by a simple colorimetric method Aquaculture 60 231-153