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Harnessing the composition of dissolved organic matter in lagoon sediment in association with rare earth elements using fluorescence and UV–visible absorption spectroscopy

  • Philomina Onyedikachi Peter
  • , Binessi Edouard Ifon
  • , François Nkinahamira
  • , Kayode Hassan Lasisi
  • , Jiangwei Li
  • , Anyi Hu
  • , Chang Ping Yu
  • Chinese Academy of Sciences
  • University of the Chinese Academy of Sciences
  • Harbin Institute of Technology Shenzhen

Research output: Contribution to journalArticlepeer-review

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Abstract

Dissolved Organic Matter (DOM) plays a pivotal role in influencing metal binding and mobility within lagoon sediments. However, there exists a gap in understanding the compositional alterations of DOM concerning Rare Earth Elements (REEs) across varying pollution gradients. This study aimed to characterize DOM and examine its relationship with REEs in sediment cores from different pollution levels in Yundang Lagoon, China using excitation-emission matrix-parallel factor analysis (EEM-PARAFAC). The results raveled four distinct fluorescent components. Among these, two correspond to humic-like substances, while the remaining two are attributed to protein-like substances. Remarkably, the prevalence of protein-like compounds was observed to exceed 58% of the total fluorescence intensity across all the investigated sites. Furthermore, a substantial discrepancy in total fluorescence intensity was detected between the Songbai Lake and the Inner and Outer Lagoon, indicating a variance in DOM content. In terms of REEs, the average concentration of total REEs was notably elevated within the Songbai Lake sediments (318.36 mg/kg) as compared to the Inner and Outer Lagoon sediments (296.36 and 278.05 mg/kg, respectively). Of significance is the enrichment of Light Rare Earth Elements (LREEs), particularly Ce, La, Pr, and Nd, over Heavy REEs (HREEs) across all surveyed locations. Intriguingly, a coherent trend emerged wherein the fluorescence intensity and LREE concentrations exhibited a synchronized increase from Outer to Inner to Songbai Lake core sediments. This observation substantiates a strong correlation between DOM content and pollution levels (p < 0.05). By shedding light on the intricate interplay between DOM and REEs within urban aquatic sediments, this study imparts novel insights which enrich our comprehension of urban environmental dynamics.

Original languageEnglish
Article number168139
Number of pages12
JournalScience of the Total Environment
Volume908
Early online date25 Oct 2023
DOIs
Publication statusPublished - 15 Jan 2024

Data Availability Statement

Data will be made available on request.

Funding

This work was supported by the STS Project of Fujian-CAS (Grant No. 2021T3014), the FJIRSM and IUE Joint Research Fund (Grant No. RHZX-2019-005) and the Youth Innovation Project of Xiamen (Grant No. 3502Z20206093).

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 11 - Sustainable Cities and Communities
    SDG 11 Sustainable Cities and Communities

Keywords

  • Dissolved organic matter
  • EEM-PARAFAC
  • Lagoon
  • Rare earth elements
  • Sediment

ASJC Scopus subject areas

  • Environmental Engineering
  • Environmental Chemistry
  • Waste Management and Disposal
  • Pollution

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