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dc.contributor.authorGuo, C
dc.contributor.authorGuo, L
dc.contributor.authorBass, Sarah
dc.contributor.authorManning, Andrew
dc.contributor.authorJin, Z
dc.contributor.authorZhou, Y
dc.date.accessioned2023-11-16T23:53:12Z
dc.date.available2023-11-16T23:53:12Z
dc.date.issued2023-11
dc.identifier.issn0301-4797
dc.identifier.issn1095-8630
dc.identifier.other118576
dc.identifier.urihttps://pearl.plymouth.ac.uk/handle/10026.1/21654
dc.description.abstract

Organic matter has long been understood to affect fine sediment flocculation, yet the specific effects of different types of organic matter remain only partially understood. To address this knowledge gap, laboratory tank experiments were conducted in fresh water to investigate the sensitivity of kaolinite flocculation to varying organic matter species and contents. Three species of organic matter (xanthan gum, guar gum and humic acid) were investigated at varying concentrations. Results revealed a significant enhancement in kaolinite flocculation when organic polymers (xanthan gum and guar gum) were introduced. In contrast, the addition of humic acid had minimal influence on aggregation and floc structure. Notably, the nonionic polymer guar gum demonstrated greater efficacy in promoting the development of floc size compared to the anionic polymer, xanthan gum. We observed non-linear trends in the evolution of mean floc size (Dm) and boundary fractal dimension (Np) with increasing ratios of organic polymer concentration to kaolinite concentration. Initially, increasing polymer content facilitated the formation of larger and more fractal flocs. However, beyond a certain threshold, further increases in polymer content hindered flocculation and even led to the break-up of macro-flocs, resulting in the formation of more spherical and compact flocs. We further quantified the co-relationships between floc Np and Dm and found that larger Np values corresponded to larger Dm. These findings highlight the significant impact of organic matter species and concentrations on floc size, shape and structure, and shed light on the complex dynamics of fine sediment and associated nutrients and contaminants in fluvial systems.

dc.format.extent118576-118576
dc.format.mediumPrint-Electronic
dc.languageen
dc.publisherElsevier BV
dc.subjectSediment flocculation
dc.subjectOrganic matter
dc.subjectFloc size
dc.subjectFloc structure
dc.titleOn the role of organic matter composition in fresh-water kaolinite flocculation
dc.typeJournal Article
plymouth.author-urlhttps://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=WOS:001041855500001&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=11bb513d99f797142bcfeffcc58ea008
plymouth.volume345
plymouth.publication-statusPublished
plymouth.journalJournal of Environmental Management
dc.identifier.doi10.1016/j.jenvman.2023.118576
plymouth.organisational-group|Plymouth
plymouth.organisational-group|Plymouth|Research Groups
plymouth.organisational-group|Plymouth|Faculty of Science and Engineering
plymouth.organisational-group|Plymouth|Faculty of Science and Engineering|School of Biological and Marine Sciences
plymouth.organisational-group|Plymouth|Research Groups|Marine Institute
plymouth.organisational-group|Plymouth|REF 2021 Researchers by UoA
plymouth.organisational-group|Plymouth|Users by role
plymouth.organisational-group|Plymouth|Users by role|Academics
plymouth.organisational-group|Plymouth|REF 2021 Researchers by UoA|UoA07 Earth Systems and Environmental Sciences
plymouth.organisational-group|Plymouth|REF 2028 Researchers by UoA
plymouth.organisational-group|Plymouth|REF 2028 Researchers by UoA|UoA07 Earth Systems and Environmental Sciences
dc.publisher.placeEngland
dcterms.dateAccepted2023-07-02
dc.date.updated2023-11-16T23:53:07Z
dc.rights.embargodate2025-07-05
dc.identifier.eissn1095-8630
rioxxterms.versionofrecord10.1016/j.jenvman.2023.118576


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