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Insights into the differential removal of various red tide organisms using modified clay: Influence of biocellular properties and mechanical interactions
Zang, Xiaomiao1,2,3; Yu, Zhiming1,2,3,4; Song, Xiuxian1,2,3,4; Cao, Xihua1,2,3; Jiang, Kaiqin1,2,4
2024-09-01
发表期刊HARMFUL ALGAE
ISSN1568-9883
卷号138页码:10
通讯作者Yu, Zhiming([email protected])
摘要In recent years, red tides have increased worldwide in frequency, intensity, involving a higher number of causative species during the events. As the most commonly used method for control of red tides, modified clay (MC) was found to have differential ability to remove various red tide species. However, the underlying mechanisms have not yet been completely elucidated. In this study, the use of MC to remove three typical disaster-causing species, Aureococcus anophagefferens, Prorocentrum donghaiense and Heterosigma akashiwo, was investigated, and differential removal of these species was probed with insights into their biocellular properties and mechanical interactions. The results showed that removal efficiencies of the three species by MC decreased in the order P. donghaiense > A. anophagefferens > H. akashiwo, while the sedimentation rates decreased in the order H. akashiwo > P. donghaiense > A. anophagefferens. Analyses of the cell surface properties and redundancy analysis (RDA) revealed that the highest surface zeta potential of -5.32+0.39 mV made P. donghaiense the most easily removed species; the smallest cell size of 3.30+0.03 mu m facilitated the removal of A. anophagefferens; and the highest hydrophobicity with a H2O surface contact angle of 98.50+4.31 degrees made the removal of H. akashiwo difficult. X-ray photoelectron spectroscopy (XPS) data indicated that the electronegativity of P. donghaiense was caused by carboxyl groups and phosphodiester groups, and the hydrophobicity of H. akashiwo was associated with a high C-(C, H) content on the cell surface. According to the extended Derjaguin, Landau, Verwey, and Overbeek (ex-DLVO) theory calculation, differences in the interaction energies between MC and the three red tide species effectively explained their different sedimentation rates. In addition, the degree of oxidative damage caused by MC to the three red tide species differed, which also affected the removal of red tide organisms.
关键词Modified clay Red tide organism Flocculation Cell surface property Physiological activity
DOI10.1016/j.hal.2024.102695
收录类别SCI
语种英语
资助项目Natural Science Foundation of Shandong Province, China[ZR2021QD029]; National Natural Sci-ence Foundation of China[42306230]; Intergovernmental Innova-tion Cooperation Project of the Ministry of Science and Technology[2022YFE0136400]; National Natural Science Foundation of China[42276220]
WOS研究方向Marine & Freshwater Biology
WOS类目Marine & Freshwater Biology
WOS记录号WOS:001274861400001
出版者ELSEVIER
WOS关键词CELL-SURFACE ; AGGREGATION ; SIMULATIONS ; COAGULATION ; MITIGATION ; PARTICLES ; ADHESION ; BEHAVIOR ; ALGAE ; XPS
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被引频次:2[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.qdio.ac.cn/handle/337002/186106
专题海洋生态与环境科学重点实验室
通讯作者Yu, Zhiming
作者单位1.Chinese Acad Sci, Inst Oceanol, Key Lab Marine Ecol & Environm Sci, Qingdao 266071, Peoples R China
2.Qingdao Natl Lab Marine Sci & Technol, Funct Lab Marine Ecol & Environm Sci, Qingdao 266237, Peoples R China
3.Chinese Acad Sci, Ctr Ocean Mega Sci, Qingdao 266071, Peoples R China
4.Univ Chinese Acad Sci, Beijing 100049, Peoples R China
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Zang, Xiaomiao,Yu, Zhiming,Song, Xiuxian,et al. Insights into the differential removal of various red tide organisms using modified clay: Influence of biocellular properties and mechanical interactions[J]. HARMFUL ALGAE,2024,138:10.
APA Zang, Xiaomiao,Yu, Zhiming,Song, Xiuxian,Cao, Xihua,&Jiang, Kaiqin.(2024).Insights into the differential removal of various red tide organisms using modified clay: Influence of biocellular properties and mechanical interactions.HARMFUL ALGAE,138,10.
MLA Zang, Xiaomiao,et al."Insights into the differential removal of various red tide organisms using modified clay: Influence of biocellular properties and mechanical interactions".HARMFUL ALGAE 138(2024):10.
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