Calcium Alginate Core-Shell Liquid Beads Encapsulated with Microalgae for Wastewater Treatment

被引:0
|
作者
Tran, Du Tuan [1 ]
Nguyen, Nhat-Khuong [1 ]
Yadav, Ajeet Singh [1 ]
Chuang, Ann [2 ]
Burford, Michele [2 ]
Galogahi, Fariba Malekpour [1 ]
Sreejith, Kamalalayam Rajan [1 ]
Nguyen, Nam-Trung [1 ]
机构
[1] Griffith Univ, Queensland Micro & Nanotechnol Ctr, 170 Kessels Rd, Nathan, Qld 4111, Australia
[2] Griffith Univ, Australian Rivers Inst, 170 Kessels Rd, Nathan, Qld 4111, Australia
来源
基金
澳大利亚研究理事会;
关键词
calcium alginate; core-shell beads; mechanical stability; microalgae; nutrient removal; structural stability; wastewater treatment; PHYSICOCHEMICAL PROPERTIES; CHLORELLA-VULGARIS; CAPSULES; PHOSPHORUS; REMOVAL; GENERATION; GROWTH; CELLS;
D O I
10.1002/aesr.202400112
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Liquid beads are core-shell particles with a liquid core and a solid shell. Calcium alginate liquid beads have been emerging as a promising platform for cell encapsulation. These beads have demonstrated their capability of encapsulating and culturing a wide range of human cells for tissue engineering. However, a significant research gap remains in the application of alginate liquid beads for encapsulating photosynthetic microorganisms. Herein, fast-growing microalgae strain Chlorella vulgaris is encapsulated into calcium alginate liquid beads to facilitate the removal of nutrients from wastewater, minimizing the risk of eutrophication. Liquid bead-microalgae systems are prepared, using different calcium ion concentrations as crosslinking ions. It has been thoroughly characterized for their morphologies, cell growth patterns, nutrient removal capabilities, and overall stability throughout the wastewater treatment process, with upflow anaerobic sludge blanket effluent as the wastewater model. The results indicate that the liquid bead-microalgae system with the highest calcium ion concentration (5%) performs more efficiently, exhibiting a well-formed crosslinking structure, leading to rapid cell growth with the highest cell density and the most effective removal of nutrients. The findings from this study provide valuable insights for future optimization and upscaling efforts in wastewater treatment systems based on calcium alginate liquid beads. .Chlorella vulgaris microalgae are encapsulated into calcium alginate core-shell liquid beads to enhance tertiary nutrient removal from wastewater. The experimental results reveal that the liquid bead system with a 5% concentration of calcium ions exhibits superior cell growth, effective nutrient removal, and exceptional stabilities. These insights inform future optimization of wastewater treatment using calcium alginate liquid beads.image (c) 2024 WILEY-VCH GmbH
引用
收藏
页数:11
相关论文
共 50 条
  • [31] Exploring the role of the thick and dense calcium alginate shell on the anti-digestibility mechanism of corn starch/carboxymethyl cellulose/ calcium alginate liquid-core beads prepared by reverse spherification
    Zou, Jinling
    Zhang, Kangning
    Li, Weixian
    Qin, Yang
    Sun, Qingjie
    Ji, Na
    Xie, Fengwei
    FOOD HYDROCOLLOIDS, 2024, 156
  • [32] Cytotoxicity of core-shell polystyrene magnetic beads and related mechanisms
    Wang, Li Li
    Zhang, Kun
    Xiong, Chun Yang
    Ge, Zi Gang
    MOLECULAR & CELLULAR TOXICOLOGY, 2012, 8 (03) : 217 - 227
  • [33] Cytotoxicity of core-shell polystyrene magnetic beads and related mechanisms
    Li Li Wang
    Kun Zhang
    Chun Yang Xiong
    Zi Gang Ge
    Molecular & Cellular Toxicology, 2012, 8 : 217 - 227
  • [34] Calcium alginate beads coated with chitosan: Effect of the structure of encapsulated materials on their release
    Huguet, ML
    Dellacherie, E
    PROCESS BIOCHEMISTRY, 1996, 31 (08) : 745 - 751
  • [35] Core-Shell Beads as Microreactors for Phylogrouping ofE. coliStrains
    Gorgannezhad, Lena
    Sreejith, Kamalalayam Rajan
    Christie, Melody
    Jin, Jing
    Ooi, Chin Hong
    Katouli, Mohammad
    Stratton, Helen
    Nguyen, Nam-Trung
    MICROMACHINES, 2020, 11 (08)
  • [36] A core-shell structured alginate hydrogel beads with tunable thickness of carboxymethyl cellulose coating for pH responsive drug delivery
    Yan, Mingzhu
    Chen, Tiantian
    Zhang, Shuping
    Lu, Ting
    Sun, Ximeng
    JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 2021, 32 (06) : 763 - 778
  • [37] Synthesis of Porous Glass Beads and Core-Shell Beads for the Separation of Chiral Anesthetic Gases
    Muenzner, Maximilian
    Dornberg, Gregor
    Kuester, Christian
    Enke, Dirk
    CHEMIE INGENIEUR TECHNIK, 2016, 88 (11) : 1761 - 1769
  • [38] Shell dominated molecular packing in dendrimer encapsulated 'core-shell' molecular wires
    Wang, Hong
    Tan, Lin
    Wang, Le-Jia
    Yin, Fen-Fen
    Shi, Zi-Fa
    Zhang, Hao-Li
    Cao, Xiao-Ping
    CHEMICAL PHYSICS LETTERS, 2008, 461 (4-6) : 271 - 275
  • [39] Mechanically stable core-shell cellulose nanofibril/sodium alginate hydrogel beads with superior cu(II) removal capacity
    Chen, Kaihuang
    Qin, Famei
    Fang, Zhiqiang
    Li, Guanhui
    Zhou, Jie
    Qiu, Xueqing
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2022, 222 : 1353 - 1363
  • [40] Magnetite graphene oxide encapsulated in alginate beads for remediation of heavy metals contaminated wastewater
    Huong, Chi
    Dwivedi, Amarendra
    Le, Thao
    Seo, Sung-Hee
    Kim, Eun-Ji
    Chang, Yoon-Seok
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 253