Computer-Aided Exergy Evaluation of Hydrothermal Liquefaction for Biocrude Production from Nannochloropsis sp.

被引:0
|
作者
Ziba Borazjani
Reza Azin
Shahriar Osfouri
Markus Lehner
Markus Ellersdorfer
机构
[1] Persian Gulf University,Department of Chemical Engineering, Faculty of Petroleum, Gas, and Petrochemical Engineering
[2] Persian Gulf University,Department of Petroleum Engineering, Faculty of Petroleum, Gas, and Petrochemical Engineering
[3] Montan University,Chair of Process Technology and Industrial Environment Protection
[4] Montan University,Department of Environmental and Energy Process Engineering, Chair of Process Technology and Industrial Environmental Protection
来源
BioEnergy Research | 2022年 / 15卷
关键词
Thermochemical process; Exergy analysis; Process simulation; Algae;
D O I
暂无
中图分类号
学科分类号
摘要
Biomass (especially algae) is a renewable energy source that can be a great alternative to fossil fuels. Wet algal biomass converts into products such as solid, aqueous, and gaseous phases as well as biocrude in hydrothermal liquefaction (HTL). The aim of this work was to provide detailed exergy analyses of the production of biocrude from Nannochloropsis sp. by HTL. Physical and chemical exergy of the HTL products, exergy losses, exergy efficiency, and exergy distribution of the HTL process were determined in this research. The highest exergy loss and the lowest efficiency values obtained for the heat exchanger were 65,856.83 MJ/hr and 66.64%, respectively, which was mainly caused by the irreversibility of the heat transfer process. Moreover, the HTL reactor had high efficiency (99.9%) due to the complex reactions that occurred at high temperature and pressure. Also, the optimum operating conditions of the reactor were obtained at 350 °C and 20 MPa by using sensitivity analysis. The high overall exergy efficiency of the process (94.93%) indicated that HTL was the most effective process for the conversion of algae. In addition, the exergy recovery values of the overall exergy input values in the HTL process for biocrude, as well as the aqueous, solid, and gas phases, were nearly 74.88%, 18.42%, 0.86%, and 0.76%, respectively. Exergy assessment provides beneficial information for improving the thermodynamic performance of the HTL system.
引用
收藏
页码:141 / 153
页数:12
相关论文
共 50 条
  • [31] Catalytic hydrothermal liquefaction of Scenedesmus sp. biomass integrated with dark-fermentation: biocrude and low-carbon fuel production in a biorefinery approach†
    Kopperi, Harishankar
    Katakojwala, Ranaprathap
    Mohan, S. Venkata
    Sustainable Energy and Fuels, 2022, 6 (06): : 1499 - 1511
  • [32] Hydrothermal liquefaction for sludge-to-energy conversion: An evaluation of biocrude production and management of waste streams
    Liu, Huan
    Basar, Ibrahim Alper
    Eskicioglu, Cigdem
    ENERGY, 2023, 281
  • [33] Biocrude production from orange (Citrus reticulata) peel by hydrothermal liquefaction and process optimization
    Divyabharathi, R.
    Subramanian, P.
    BIOMASS CONVERSION AND BIOREFINERY, 2022, 12 (01) : 183 - 194
  • [34] PROCESS-DEVELOPMENT - FROM EXERGY ANALYSIS TO COMPUTER-AIDED OPTIMIZATION
    STREICH, M
    KISTENMACHER, H
    MOHR, V
    CHEMIE INGENIEUR TECHNIK, 1991, 63 (04) : 329 - 335
  • [35] Influence of Fe/HZSM-5 catalyst on elemental distribution and product properties during hydrothermal liquefaction of Nannochloropsis sp.
    Liu, Ziyun
    Li, Hao
    Zeng, Jianli
    Liu, Minsheng
    Zhang, Yuanhui
    Liu, Zhidan
    ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS, 2018, 35 : 1 - 9
  • [36] Influence of process conditions on pretreatment of microalgae for protein extraction and production of biocrude during hydrothermal liquefaction of pretreated Tetraselmis sp
    Eboibi, B. E.
    Lewis, D. M.
    Ashman, P. J.
    Chinnasamy, S.
    RSC ADVANCES, 2015, 5 (26) : 20193 - 20207
  • [37] A combined fermentation and ethanol-assisted liquefaction process to produce biofuel from Nannochloropsis sp.
    Rahman, Quazi Mahzabin
    Zhang, Bo
    Wang, Lijun
    Joseph, Gail
    Shahbazi, Abolghasem
    FUEL, 2019, 238 : 159 - 165
  • [38] Effects of Potassium Phosphates and Other Additives on Biocrude Production and Composition from Hydrothermal Liquefaction of Pectin and Chitin
    Ding, Xin
    Subramanya, Seshasayee Mahadevan
    Wang, Yuqi
    Savage, Phillip E.
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2021, 60 (24) : 8642 - 8648
  • [39] Simultaneous production of biocrude oil and recovery of nutrients and metals from human feces via hydrothermal liquefaction
    Lu, Jianwen
    Zhang, Jiaren
    Zhu, Zhangbing
    Zhang, Yuanhui
    Zhao, Yu
    Li, Ruirui
    Watson, Jamison
    Li, Baoming
    Liu, Zhidan
    ENERGY CONVERSION AND MANAGEMENT, 2017, 134 : 340 - 346
  • [40] Microalgae as a sustainable energy source: Growth and lipids production of Nitzschia sp., Nannochloropsis sp., and Tetraselmis sp. from Mediterranean seawater
    Kholssi, Rajaa
    Riouchi, Ouassila
    Douhri, Hikmat
    Debdoubi, Abderahmane
    BIOCATALYSIS AND AGRICULTURAL BIOTECHNOLOGY, 2023, 50