Quantification and identification of microplastic in sediment and surface water from selected areas in the Brunei ecosystem

Chingakham Chinglenthoiba , Hamiz Raziq Danish , Sabiqah Tuan Anuar , Jose Hernandez Santos

Emerging Contaminants and Environmental Health ›› 2025, Vol. 4 ›› Issue (1) : 10

PDF
Emerging Contaminants and Environmental Health ›› 2025, Vol. 4 ›› Issue (1) :10 DOI: 10.20517/wecn.2025.04
Research Article
Quantification and identification of microplastic in sediment and surface water from selected areas in the Brunei ecosystem
Author information +
History +
PDF

Abstract

Microplastic pollution poses a significant threat to global environmental health, particularly within freshwater ecosystems, where these minute particles accumulate and persist. This research endeavors to provide a thorough examination of microplastic contamination within the Brunei River, aiming to elucidate its abundance, distribution patterns, and polymer composition. Sediment and water samples were systematically collected from six locations along the river, employing rigorous methodologies for microplastic isolation and characterization, including microscopy and Fourier-transform infrared spectroscopy (FTIR). The analysis revealed substantial microplastic abundance within both sediment and the water column, with concentrations averaging 1212 particles/g and 850 particles/L, respectively. Notably, transparent microplastics dominated sediment samples, constituting 28% of observed particles, while black microplastics prevailed in the water column, comprising 38% of the total. Through attenuated total reflectance-Fourier transform infrared spectroscopy (ATR-FTIR) analysis, six distinct polymer compositions were identified, encompassing mixed polymers, polyethylene terephthalate, polypropylene, polyamide, high-density polyethylene, and low-density polyethylene. Furthermore, spatial analysis demonstrated a significant correlation between microplastic contamination in sediment and water samples and the proximity to densely populated and urbanized areas along the riverbanks. This relationship highlights the substantial influence of anthropogenic activities on pollution levels within these ecosystems. These findings underscore the critical need for targeted interventions to address microplastic pollution in riverine environments. Implementing sustainable waste management practices and enforcing robust regulatory measures are essential steps to mitigate this growing environmental challenge and protect both ecological integrity and human health.

Keywords

Microplastics / Brunei / quantification and identification / sediment / riverine / SDG

Cite this article

Download citation ▾
Chingakham Chinglenthoiba, Hamiz Raziq Danish, Sabiqah Tuan Anuar, Jose Hernandez Santos. Quantification and identification of microplastic in sediment and surface water from selected areas in the Brunei ecosystem. Emerging Contaminants and Environmental Health, 2025, 4(1): 10 DOI:10.20517/wecn.2025.04

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Geyer R,Law KL.Production, use, and fate of all plastics ever made.Sci Adv2017;3:e1700782 PMCID:PMC5517107

[2]

Tiwari M,Ajmal PY,Sahu SK.Distribution and characterization of microplastics in beach sand from three different Indian coastal environments.Mar Pollut Bull2019;140:262-73

[3]

Geyer R,Zink T.Common misconceptions about recycling.J Ind Ecol2016;20:1010-7

[4]

Wright SL.Plastic and human health: a micro issue?.Environ Sci Technol2017;51:6634-47

[5]

Cole M,Halsband C.Microplastics as contaminants in the marine environment: a review.Mar Pollut Bull2011;62:2588-97

[6]

Mattsson K,Doverbratt I.In Microplastic contamination in aquatic environments, 1st ed; .Nanoplastics in the Aquatic Environment; Elsevier, 2018; pp. 379-99.

[7]

Lee WS,Kim E.Bioaccumulation of polystyrene nanoplastics and their effect on the toxicity of Au ions in zebrafish embryos.Nanoscale2019;11:3173-85

[8]

Kumar AS.Microplastic pollution of Calicut beach - contributing factors and possible impacts.Mar Pollut Bull2021;169:112492

[9]

Daniel DB,Thomas SN.Abundance, characteristics and seasonal variation of microplastics in Indian white shrimps (Fenneropenaeus indicus) from coastal waters off Cochin, Kerala, India.Sci Total Environ2020;737:139839

[10]

Kieu-Le TC,Truong TN,Tran QV.Baseline concentration of microplastics in surface water and sediment of the northern branches of the Mekong River Delta, Vietnam.Mar Pollut Bull2023;187:114605

[11]

Malankowska M,Coronas J.Microplastics in marine environment: a review on sources, classification, and potential remediation by membrane technology.Environ Sci : Water Res Technol2021;7:243-58

[12]

Chinglenthoiba C,Reddy DGCV,Lani MN.Microplastic as an emerging environmental threat: a critical review on sampling and identification techniques focusing on aquatic ecosystem.J Polym Environ2023;31:1725-47

[13]

Gong J.Research progress in sources, analytical methods, eco-environmental effects, and control measures of microplastics.Chemosphere2020;254:126790

[14]

Wang W,Li Z.Microplastics pollution in inland freshwaters of China: a case study in urban surface waters of Wuhan, China.Sci Total Environ2017;575:1369-74

[15]

Karwacka A,Radwan M.Exposure to modern, widespread environmental endocrine disrupting chemicals and their effect on the reproductive potential of women: an overview of current epidemiological evidence.Hum Fertil (Camb)2019;22:2-25

[16]

Jin Y,Tu W,Fu Z.Impacts of polystyrene microplastic on the gut barrier, microbiota and metabolism of mice.Sci Total Environ2019;649:308-17

[17]

Lehner R,Petri-Fink A.Emergence of nanoplastic in the environment and possible impact on human health.Environ Sci Technol2019;53:1748-65

[18]

Li Y,Zheng H,Chen C.Microplastics in surface water and sediments of Chongming Island in the Yangtze Estuary, China.Environ Sci Eur2020;32:297

[19]

Pandey D,Ramanathan A.The combined exposure of microplastics and toxic contaminants in the floodplains of north India: A review.J Environ Manage2021;279:111557

[20]

Aliabad MK,Kor K.Microplastics in the surface seawaters of Chabahar Bay, Gulf of Oman (Makran Coasts).Mar Pollut Bull2019;143:125-33

[21]

Uddin S,Behbehani M.An assessment of microplastic inputs into the aquatic environment from wastewater streams.Mar Pollut Bull2020;160:111538

[22]

Zaki MRM,Zainuddin AH,Aris AZ.Occurrence, abundance, and distribution of microplastics pollution: an evidence in surface tropical water of Klang River estuary, Malaysia.Environ Geochem Health2021;43:3733-48

[23]

National Oceanic and Atmospheric Administration (NOAA). Laboratory methods for the analysis of microplastics in the marine environment: recommendations for quantifying synthetic particles in waters and sediments; 2015. Available from: https://repository.library.noaa.gov/view/noaa/10296 (accessed 25 Apr 2025)

[24]

Zobkov MB.Microplastics in a marine environment: review of methods for sampling, processing, and analyzing microplastics in water, bottom sediments, and coastal deposits.Oceanology2018;58:137-43

[25]

Catarino AI,Sanderson W.Development and optimization of a standard method for extraction of microplastics in mussels by enzyme digestion of soft tissues.Environ Toxicol Chem2017;36:947-51

[26]

Deocaris CC,Ardiente LT.Occurrence of microplastic fragments in the Pasig River.H2Open Journal2019;2:92-100

[27]

Wagner J,Ghosal S,Gassel M.Novel method for the extraction and identification of microplastics in ocean trawl and fish gut matrices.Anal Methods2017;9:1479-90

[28]

Dissanayake PD,Sarkar B.Effects of microplastics on the terrestrial environment: a critical review.Environ Res2022;209:112734

[29]

Nor NH.Microplastics in Singapore’s coastal mangrove ecosystems.Mar Pollut Bull2014;79:278-83

[30]

Sutkar PR,Dhulap VP.Recent trends in degradation of microplastics in the environment: A state-of-the-art review.J Hazard Mater Adv2023;11:100343

[31]

Zhao S,Ward JE,Mincer TJ.An approach for extraction, characterization and quantitation of microplastic in natural marine snow using Raman microscopy.Anal Methods2017;9:1470-8

[32]

Enders K,Stedmon CA.Abundance, size and polymer composition of marine microplastics ≥ 10μm in the Atlantic Ocean and their modelled vertical distribution.Mar Pollut Bull2015;100:70-81

[33]

Jung MR,Orski SV.Validation of ATR FT-IR to identify polymers of plastic marine debris, including those ingested by marine organisms.Mar Pollut Bull2018;127:704-16

[34]

Shruti V.Blanks and bias in microplastic research: Implications for future quality assurance.Trends Environ Anal Chem2023;38:e00203

[35]

Fayyaz A,Waqas M,Al-Onazi WA.Multi-spectroscopic characterization of MgO/Nylon (6/6) polymer: evaluating the potential of LIBS and statistical methods.Polymers (Basel)2023;15:3156 PMCID:PMC10421498

[36]

Wu X,Wang T.Assessment on the pollution level and risk of microplastics on bathing beaches: a case study of Liandao, China.Environ Monit Assess2023;195:383 PMCID:PMC9911957

[37]

Eriksen M,Wilson S.Microplastic pollution in the surface waters of the Laurentian Great Lakes.Mar Pollut Bull2013;77:177-82

[38]

Morgado V,Bettencourt da Silva RJN.Validated spreadsheet for the identification of PE, PET, PP and PS microplastics by micro-ATR-FTIR spectra with known uncertainty.Talanta2021;234:122624

[39]

Gulmine J,Heise H.Polyethylene characterization by FTIR.Polymer Testing2002;21:557-63

[40]

Chinglenthoiba C,Zuo J,Valiyaveettil S.Conversion of PET bottle waste into a terephthalic acid-based metal-organic framework for removing plastic nanoparticles from water.Nanomaterials (Basel)2024;14:257 PMCID:PMC10856359

[41]

Veerasingam S,Venkatachalapathy R.Contributions of fourier transform infrared spectroscopy in microplastic pollution research: a review.Crit Rev Env Sci Tec2021;51:2681-743

[42]

Xu J,Luo Z.FTIR and Raman imaging for microplastics analysis: state of the art, challenges and prospects.TrAC Trend Anal Chem2019;119:115629

[43]

Sekar V.Occurrence, quantification and characterisation of microplastics in Godavari River, India.Case Stud Chem Environ2023;8:100542

[44]

Kurniawan SB,Imron MF.Microplastic pollution in the environment: Insights into emerging sources and potential threats.Environ Technol Innov2021;23:101790

[45]

Chen Y,Pei J.Identification and quantification of microplastics using Fourier-transform infrared spectroscopy: current status and future prospects.Curr Opin Environ Sci Health2020;18:14-9

[46]

Wu P,Zheng Y.Environmental occurrences, fate, and impacts of microplastics.Ecotoxicol Environ Saf2019;184:109612

[47]

Shaw DG.Colour- and form-dependent loss of plastic micro-debris from the North Pacific Ocean.Marine Pollution Bulletin1994;28:39-43

[48]

Anuar ST,Yahya NKEM.A multidimensional approach for microplastics monitoring in two major tropical river basins, Malaysia.Environ Res2023;227:115717

[49]

Chinglenthoiba C,Chanu KT.A review on microplastic pollution research in India.Reg Stud Mar Sci2023;58:102777

[50]

Dellisanti W,Lam KW.A short review on the recent method development for extraction and identification of microplastics in mussels and fish, two major groups of seafood.Mar Pollut Bull2023;186:114221

[51]

Xu D,Zhou S.A review on the remediation of microplastics using constructed wetlands: Bibliometric, co-occurrence, current trends, and future directions.Chemosphere2022;303:134990

[52]

Biale G,Mattonai M.A systematic study on the degradation products generated from artificially aged microplastics.Polymers (Basel)2021;13:1997 PMCID:PMC8234390

[53]

Manullang CY,Haryono A,Suyadi S.Status and research gaps of microplastics pollution in indonesian waters: a review.Indones J Chem2023;23:251

[54]

Spreafico C.Investigating the evolution of the technologies for collecting microplastics.J Environ Manage2023;326:116710

[55]

Hardesty BD,Isobe A.Using numerical model simulations to improve the understanding of micro-plastic distribution and pathways in the marine environment.Front Mar Sci2017;4

[56]

Ali AAM,Razak NIA.A review on the presence of microplastics in environmental matrices within Southeast Asia: elucidating risk information through an analysis of microplastic characteristics such as size, shape, and type.Water Emerg Contam Nanoplastics2024;3:12

PDF

53

Accesses

0

Citation

Detail

Sections
Recommended

/