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Dive into the research topics where Caroline Raymond is active.

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Featured researches published by Caroline Raymond.


Environmental Science & Technology | 2011

Remediation of Contaminated Marine Sediment Using Thin-Layer Capping with Activated Carbon—A Field Experiment in Trondheim Harbor, Norway

Gerard Cornelissen; Marie Elmquist Kruså; Gijs D. Breedveld; Espen Eek; Amy M.P. Oen; Hans Peter H. Arp; Caroline Raymond; Göran Samuelsson; Jenny E. Hedman; Øystein Stokland; Jonas S. Gunnarsson

In situ amendment of contaminated sediments using activated carbon (AC) is a recent remediation technique, where the strong sorption of contaminants to added AC reduces their release from sediments and uptake into organisms. The current study describes a marine underwater field pilot study in Trondheim harbor, Norway, in which powdered AC alone or in combination with sand or clay was tested as a thin-layer capping material for polycyclic aromatic hydrocarbon (PAH)-contaminated sediment. Several novel elements were included, such as measuring PAH fluxes, no active mixing of AC into the sediment, and the testing of new manners of placing a thin AC cap on sediment, such as AC+clay and AC+sand combinations. Innovative chemical and biological monitoring methods were deployed to test capping effectiveness. In situ sediment-to-water PAH fluxes were measured using recently developed benthic flux chambers. Compared to the reference field, AC capping reduced fluxes by a factor of 2-10. Pore water PAH concentration profiles were measured in situ using a new passive sampler technique, and yielded a reduction factor of 2-3 compared to the reference field. The benthic macrofauna composition and biodiversity were affected by the AC amendments, AC + clay having a lower impact on the benthic taxa than AC-only or AC + sand. In addition, AC + clay gave the highest AC recoveries (60% vs 30% for AC-only and AC + sand) and strongest reductions in sediment-to-water PAH fluxes and porewater concentrations. Thus, application of an AC-clay mixture is recommended as the optimal choice of the currently tested thin-layer capping methods for PAHs, and more research on optimizing its implementation is needed.


Marine Ecology Progress Series | 2013

Effect of reoxygenation and Marenzelleria spp. bioturbation on Baltic Sea sediment metabolism

Stefano Bonaglia; Marco Bartoli; Jonas S. Gunnarsson; Lars Rahm; Caroline Raymond; Ola Svensson; Sepehr Shakeri Yekta; Volker Brüchert


Estuaries and Coasts | 2018

Functional Performance of Three Invasive Marenzelleria Species Under Contrasting Ecological Conditions Within the Baltic Sea

Cintia Organo Quintana; Caroline Raymond; Francisco J. A. Nascimento; Stefano Bonaglia; Stefan Forster; Jonas S. Gunnarsson; Erik Kristensen


Environmental Science and Pollution Research | 2017

Response of marine benthic fauna to thin-layer capping with activated carbon in a large-scale field experiment in the Grenland fjords, Norway

Göran Samuelsson; Caroline Raymond; Stefan Agrenius; Morten Schaanning; Gerard Cornelissen; Jonas S. Gunnarsson


Archive | 2012

Kraftig ökning av Marenzelleria

Jonas S. Gunnarsson; Caroline Raymond; Ola Svensson


Archive | 2014

Thin layer capping of fjord sediments in Grenland. Chemical and biological monitoring 2009-2013

Morten Schaanning; Bjørnar Beylich; Caroline Raymond; Jonas S. Gunnarsson


HavsUtsikt | 2014

Sediment med nyckelroll i näringsväven

Volker Brüchert; Stefano Bonaglia; Caroline Raymond


Archive | 2013

Large-scale field study on thin-layer capping of dioxin contaminated sediments in the Grenland fjords, Norway : Effects on marine benthic fauna

Göran Samuelsson; Caroline Raymond; Stefan Agrenius; Morten Schaanning; Jonas S. Gunnarsson


Archive | 2012

Miljöövervakning av mjukbottenfauna i Gotlands kustområden : Områdena mellan När och Östergarn, samt Slite, Klintehamn och Fårösund

Caroline Raymond; Ola Svensson; Jonas Gunnar; Hans Cederwall; Bertil Widbom


Archive | 2012

Mjukbottenfauna i Stockholms skärgård : Regional miljöövervakning 2011

Caroline Raymond; Ola Svensson; Jonas S. Gunnarsson; Hans Cederwall

Collaboration


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Morten Schaanning

Norwegian Institute for Water Research

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Bjørnar Beylich

Norwegian Institute for Water Research

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Gerard Cornelissen

Norwegian University of Life Sciences

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