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Ecological succession of benthic macrofauna following disturbance: Effects of contaminants and in situ sediment remediation
Stockholm University, Faculty of Science, Department of Ecology, Environment and Plant Sciences.ORCID iD: 0000-0002-8752-1516
2022 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

More than 70% of the Earth is covered by water, and most of the sea floor consists of soft sediments, such as mud, clay and sand. Thus, soft sediments form one of the most important habitats on Earth, with a high diversity of organisms. However, the sediments in coastal areas are often subject to anthropogenic pollutants, and current remediation methods are often both costly and destructive on the ecosystem. Benthic macrofauna, i.e., sediment-living invertebrates larger than 1 mm, sustain a variety of ecosystem functions in the sediment by their activities; they oxygenate the sediment, redistribute particles and nutrients, and are also important secondary producers. Therefore, it is essential to maintain healthy benthic ecosystems and to study effects of various disturbances on benthic species composition and their recovery trajectory after disturbance, a process called ecological succession.

The aims of this PhD thesis were to investigate: 1) how benthic marine invertebrate communities in a Norwegian fjord respond to thin-layer capping with activated carbon, a recently proposed technique to remediate contaminated sediments in situ in a more cost-efficient and less ecosystem destructive manner, 2) how benthic community composition in sediments from the Baltic Sea is explained by environmental variables and concentrations of polycyclic aromatic hydrocarbons (PAHs) and metals, and 3) how well current benthic quality assessment indices as well as functional indices represent these disturbances.

The remediation method with activated carbon had long-term negative effects on the benthic macrofauna (paper I-III). Up to nine years after the capping, the communities were still severely affected, with lower species diversity, abundance and biomass. Recolonization of key species, such as the brittle star Amphiura filiformis, did not occur in the capped fields. Further, functional indices calculating bioturbation and bioirrigation estimated significantly lower activities in the communities exposed to activated carbon. Other studies have shown promising results in reducing contaminant fluxes and bioaccumulation of dioxins, but the long-term side-effects observed here on the benthic communities after capping show that the remediation method needs to be improved before application on a large scale. 

The benthic community composition was also studied in the Baltic Sea (paper IV). The significant factors to explain the benthic community structure were PAHs, even at medium to low concentrations in the sediment, together with the environmental variables salinity, temperature and depth. These variables also explained the Benthic Quality Index (BQI), used for ecological status assessments in coastal areas of Sweden and in the open Baltic Sea.

 However, several ecological indices commonly used to assess the benthic environmental status were not able to detect the disturbance caused by activated carbon in the Norwegian fjord (paper III), although clear effects on the benthic community in terms of lower species diversity and abundance were evident. Thus, current status assessment indices may need to be revised, or at least used with caution, in management evaluation of the sediments after disturbances other than eutrophication.

Place, publisher, year, edition, pages
Stockholm: Department of Ecology, Environment and Plant Sciences, Stockholm University , 2022. , p. 59
Keywords [en]
Activated carbon, Benthos, Bioturbation, Contaminants, Environmental indices, Environmental monitoring, Environmental quality, Seafloor integrity, Sediment remediation
National Category
Ecology
Research subject
Marine Ecology
Identifiers
URN: urn:nbn:se:su:diva-199659ISBN: 978-91-7911-744-3 (print)ISBN: 978-91-7911-745-0 (electronic)OAI: oai:DiVA.org:su-199659DiVA, id: diva2:1620001
Public defence
2022-02-10, online via Zoom and in Vivi Täckholmsalen (Q-salen), NPQ-huset, Svante Arrhenius väg 20, Stockholm, 13:15 (English)
Opponent
Supervisors
Available from: 2022-01-18 Created: 2021-12-14 Last updated: 2022-01-12Bibliographically approved
List of papers
1. Response of marine benthic fauna to thin-layer capping with activated carbon in a large-scale field experiment in the Grenland fjords, Norway
Open this publication in new window or tab >>Response of marine benthic fauna to thin-layer capping with activated carbon in a large-scale field experiment in the Grenland fjords, Norway
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2017 (English)In: Environmental Science and Pollution Research, ISSN 0944-1344, E-ISSN 1614-7499, Vol. 24, no 16, p. 14218-14233Article in journal (Refereed) Published
Abstract [en]

A field experiment with thin-layer capping was conducted in the Grenland fjords, Norway, for remediation in situ of mercury and dioxin-contaminated sediments. Experimental fields at 30 and 95 m depth were capped with (i) powdered activated carbon (AC) mixed with clay (AC+clay), (ii) clay, and (iii) crushed limestone. Ecological effects on the benthic community and species-feeding guilds were studied 1 and 14 months after capping, and a total of 158 species were included in the analyses. The results show that clay and limestone had only minor effects on the benthic community, while AC+clay caused severe perturbations. AC+clay reduced the abundance, biomass, and number of species by up to 90% at both 30 and 95 m depth, and few indications of recovery were found during the period of this investigation. The negative effects of AC+clay were observed on a wide range of species with different feeding strategies, although the suspension feeding brittle star Amphiura filiformis was particularly affected. Even though activated carbon is effective in reducing sediment-to-water fluxes of dioxins and other organic pollutants, this study shows that capping with powdered AC can lead to substantial disturbances to the benthic community.

Keywords
Benthic ecology, Macrofauna, Benthic community, Feeding guilds, Contaminated sediment, Remediation
National Category
Earth and Related Environmental Sciences
Identifiers
urn:nbn:se:su:diva-144679 (URN)10.1007/s11356-017-8851-6 (DOI)000402748300029 ()28421523 (PubMedID)
Available from: 2017-07-21 Created: 2017-07-21 Last updated: 2025-02-07Bibliographically approved
2. Impaired benthic macrofauna function 4 years after sediment capping with activated carbon in the Grenland fjords, Norway
Open this publication in new window or tab >>Impaired benthic macrofauna function 4 years after sediment capping with activated carbon in the Grenland fjords, Norway
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2021 (English)In: Environmental Science and Pollution Research, ISSN 0944-1344, E-ISSN 1614-7499, no 28, p. 16181-16197Article in journal (Refereed) Published
Abstract [en]

The sediments in the Grenland fjords in southern Norway are heavily contaminated by large emissions of dioxins and mercury from historic industrial activities. As a possible in situ remediation option, thin-layer sediment surface capping with powdered activated carbon (AC) mixed with clay was applied at two large test sites (10,000 and 40,000 m(2)) at 30-m and 95-m depths, respectively, in 2009. This paper describes the long-term biological effects of the AC treatment on marine benthic communities up to 4 years after treatment. Our results show that the capping with AC strongly reduced the benthic species diversity, abundance, and biomass by up to 90%. Vital functions in the benthic ecosystem such as particle reworking and bioirrigation of the sediment were also reduced, analyzed by using novel bioturbation and bioirrigation indices (BPc, BIPc, and IPc). Much of the initial effects observed after 1 and 14 months were still present after 49 months, indicating that the effects are long-lasting. These long-lasting negative ecological effects should be carefully considered before decisions are made on sediment remediation with powdered AC, especially in large areas, since important ecosystem functions can be impaired.

Keywords
Benthic ecology, Macrofauna, Bioturbation, Bioirrigation, Index, Contaminated sediment, Remediation
National Category
Earth and Related Environmental Sciences
Identifiers
urn:nbn:se:su:diva-189181 (URN)10.1007/s11356-020-11607-0 (DOI)000596042700001 ()33269443 (PubMedID)
Available from: 2021-01-19 Created: 2021-01-19 Last updated: 2025-02-07Bibliographically approved
3. Long-term response of marine benthic fauna to thin-layer capping with powdered activated carbon in the Grenland fjords, Norway
Open this publication in new window or tab >>Long-term response of marine benthic fauna to thin-layer capping with powdered activated carbon in the Grenland fjords, Norway
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2021 (English)In: Science of the Total Environment, ISSN 0048-9697, E-ISSN 1879-1026, Vol. 776, article id 145971Article in journal (Refereed) Published
Abstract [en]

The Grenland fjords in Norway have a long history of contamination by large emissions of dioxins and mercury. As a possible sediment remediation method in situ, thin-layer capping with powdered activated carbon (AC) mixed with clay was applied at two test sites at 30 m and 95 m depth in the Grenland fjords. This study presents long-term effects of the AC treatment on the benthic community structure, i.e. nine years after capping. Capping with AC significantly reduced the number of species, their abundance and biomass at the two test sites, compared to uncapped reference sites. At the more shallow site, the dominant brittle star species Amphiura filiformis disappeared shortly after capping and did not re-establish nine years after capping. At the deeper site, the AC treatment also caused long-lasting negative effects on the benthic community, but some recovery was observed after nine years. Ecological indices used to assess environmental status did not capture the impaired benthic communities caused by the capping. The present study is the first documentation of negative effects of powdered AC on marine benthic communities on a decadal scale. Our results show that the benefits of reduced contaminant bioavailability from capping with AC should be carefully weighed against the cost of long-term detrimental effects on the benthic community. More research is needed to develop a thin-layer capping material that is efficient at sequestering contaminants without being harmful to benthic species.

Keywords
Benthos, Capping, Activated carbon, Sediment remediation, Recovery
National Category
Earth and Related Environmental Sciences
Identifiers
urn:nbn:se:su:diva-195719 (URN)10.1016/j.scitotenv.2021.145971 (DOI)000647601800005 ()33652322 (PubMedID)
Available from: 2021-08-25 Created: 2021-08-25 Last updated: 2025-02-07Bibliographically approved
4. Polycyclic Aromatic Hydrocarbons Have Adverse Effects on Benthic Communities in the Baltic Sea: Implications for Environmental Status Assessment
Open this publication in new window or tab >>Polycyclic Aromatic Hydrocarbons Have Adverse Effects on Benthic Communities in the Baltic Sea: Implications for Environmental Status Assessment
2021 (English)In: Frontiers in Environmental Science, E-ISSN 2296-665X, Vol. 9, article id 624658Article in journal (Refereed) Published
Abstract [en]

Changes in benthic macrofaunal communities are indicative of environmental stressors, including eutrophication and hypoxia. However, some species are sensitive not only to hypoxia but also to various environmental contaminants. We tested which of the environmental predictors (sediment organic carbon, sediment concentrations of metals and polyaromatic hydrocarbons [PAHs], bottom water oxygen, salinity, temperature, and surface chlorophyll-a concentration) that best explained the following response variables: (1) macrofauna community composition, (2) abundance of a benthic sentinel species, the amphipod Monoporeia affinis; and (3) the Benthic Quality Index (BQI). All data originated from 29 reference monitoring stations in the Baltic Sea and the statistical tests included both uni- and multivariate analyses. The community composition and BQI were best explained by the same combination of salinity, depth, temperature and PAH concentrations. The abundance of M. affinis, which is sensitive to hypoxia and chemical exposure, was best explained by PAHs as a single predictor. Our findings suggest that benthic communities in the Baltic Sea are influenced by anthropogenic contaminants, which should be taken into account when benthos is used for eutrophication status assessment.

Keywords
environmental quality, hazardous substances, seafloor integrity, sediment, key-species, zoobenthos, biodiversity, contaminants
National Category
Earth and Related Environmental Sciences
Identifiers
urn:nbn:se:su:diva-194251 (URN)10.3389/fenvs.2021.624658 (DOI)000643705700001 ()
Available from: 2021-06-18 Created: 2021-06-18 Last updated: 2025-02-07Bibliographically approved

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