Effects of Fe3O4 nanoparticle fabrication and surface modification on Chlorella sp. harvesting efficiency

被引:41
作者
Liu, Peirui [1 ,2 ]
Wang, Ting [1 ]
Yang, Ziyu [3 ]
Hong, Yu [1 ]
Xie, Xing [2 ]
Hou, Yanglong [3 ]
机构
[1] Beijing Forestry Univ, Beijing Key Lab Source Control Technol Water Poll, Beijing 100083, Peoples R China
[2] Georgia Inst Technol, Sch Civil & Environm Engn, Atlanta, GA 30332 USA
[3] Peking Univ, Coll Engn, Dept Mat Sci & Engn, Beijing 100871, Peoples R China
关键词
Oleaginous microalgae harvesting; Fe3O4 magnetic nanoparticles; Fabrication; Surface modification; MAGNETIC FLOCCULANT; HIGH-GRADIENT; FRESH-WATER; MICROALGAE; BIOMASS; NANOCOMPOSITES; EXTRACTION; REMOVAL; ALGAE;
D O I
10.1016/j.scitotenv.2019.135286
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Harvesting is a critical step in microalgae-based biodiesel production. Oleaginous microalgae harvesting by magnetic nanomaterials has gained attention because of the advantages of higher efficiency, lower cost, and convenient operation. In the present study, Fe3O4 magnetic nanoparticles (MNPs) were fabricated using two different methods (chemical coprecipitation and thermal decomposition), modified with amino acid using three different approaches (ultrasonic, long-time mixing, and "one-step" approaches), and utilized for oleaginous microalgae Chlorella sp. HQ harvesting. The results showed that the Fe3O4 MNPs synthesized by the chemical coprecipitation method achieved superior performance when considering both harvesting efficiency and fabrication cost. For the amino-acid modification, the one-step approach outcompeted the other approaches. At a dosage of 200 mg/L, the optimized Fe3O4@Arginine MNPs could achieve a harvesting efficiency of 95% with a low cost of only 347 USD/t of harvested algal biomass. Both the amino-acid content on the NPs and the number of amino groups in the amino acid molecules played a role in improving the harvesting performance. (C) 2019 Elsevier B.V. All rights reserved.
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页数:8
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共 38 条
  • [1] Study of polyacrylamide grafted starch based algal flocculation towards applications in algal biomass harvesting
    Banerjee, Chiranjib
    Gupta, Pratibha
    Mishra, Sumit
    Sen, Gautam
    Shukla, Pratyoosh
    Bandopadhyay, Rajib
    [J]. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2012, 51 (04) : 456 - 461
  • [2] Harvesting Chlorella species using magnetic iron oxide nanoparticles
    Bharte, Supriya
    Desai, Krutika
    [J]. PHYCOLOGICAL RESEARCH, 2019, 67 (02) : 128 - 133
  • [3] Harvesting fresh water and marine algae by magnetic separation: Screening of separation parameters and high gradient magnetic filtration
    Cerff, Martin
    Morweiser, Michael
    Dillschneider, Robert
    Michel, Aymee
    Menzel, Katharina
    Posten, Clemens
    [J]. BIORESOURCE TECHNOLOGY, 2012, 118 : 289 - 295
  • [4] A comparative study between fungal pellet- and spore-assisted microalgae harvesting methods for algae bioflocculation
    Chen, Jie
    Leng, Lijian
    Ye, Chensong
    Lu, Qian
    Addy, Min
    Wang, Jinghan
    Liu, Jin
    Chen, Paul
    Ruan, Roger
    Zhou, Wenguang
    [J]. BIORESOURCE TECHNOLOGY, 2018, 259 : 181 - 190
  • [5] Life cycle evaluation of microalgae biofuels production: Effect of cultivation system on energy, carbon emission and cost balance analysis
    Dasan, Yaleeni Kanna
    Lam, Man Kee
    Yusup, Suzana
    Lim, Jun Wei
    Lee, Keat Teong
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2019, 688 : 112 - 128
  • [6] Techno-economic analysis of autotrophic microalgae for fuel production
    Davis, Ryan
    Aden, Andy
    Pienkos, Philip T.
    [J]. APPLIED ENERGY, 2011, 88 (10) : 3524 - 3531
  • [7] Bare Iron Oxide Nanoparticles for Magnetic Harvesting of Microalgae: From Interaction Behavior to Process Realization
    Fraga-Garcia, Paula
    Kubbutat, Peter
    Brammen, Markus
    Schwaminger, Sebastian
    Berensmeier, Sonja
    [J]. NANOMATERIALS, 2018, 8 (05):
  • [8] Simultaneous nutrient removal and biomass/lipid production by Chlorella sp in seafood processing wastewater
    Gao, Feng
    Peng, Yuan-Yuan
    Li, Chen
    Yang, Guo-Jing
    Deng, Yi-Bing
    Xue, Bin
    Guo, Yuan-Ming
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2018, 640 : 943 - 953
  • [9] Effective harvesting of microalgae: Comparison of different polymeric flocculants
    Gerchman, Yoram
    Vasker, Barak
    Tavasi, Mordechai
    Mishael, Yael
    Kinel-Tahan, Yael
    Yehoshua, Yaron
    [J]. BIORESOURCE TECHNOLOGY, 2017, 228 : 141 - 146
  • [10] Magnetic Fe3O4-polyethyleneimine nanocomposites for efficient harvesting of Chlorella zofingiensis, Chlorella vulgaris, Chlorella sorokiniana, Chlorella ellipsoidea and Botryococcus braunii
    Gerulova, Kristina
    Bartosova, Alica
    Blinova, Lenka
    Bartova, Katarina
    Domankova, Maria
    Garaiova, Zuzana
    Palcut, Marian
    [J]. ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS, 2018, 33 : 165 - 172