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Dive into the research topics where Christine Lors is active.

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Featured researches published by Christine Lors.


Environmental Pollution | 2012

Comparison of a bioremediation process of PAHs in a PAH-contaminated soil at field and laboratory scales

Christine Lors; Denis Damidot; Jean-François Ponge; Frédéric Périé

A laboratory experiment was carried on the same initial soil and at the same time than a windrow treatment in order to compare results at field and laboratory scales for a soil mainly contaminated with PAHs. After 6 months, laboratory experiments gave similar but less scattered results than those obtained in the field indicating that the field biotreatment was well optimised. The total amount of PAHs degraded after 6 months was ca. 90% and degradation rates followed a negative exponential trend. Relative degradation rates of 3- and 4-ring PAHs were about 32 and 7.2 times greater than those of 5- and 6-ring PAHs, respectively. With respect to the bacterial community, bacteria belonging to Gamma-proteobacteria persisted whereas Beta-proteobacteria appeared after three months of biotreatment when PAH concentration was low enough to render the soil non-ecotoxic.


Chemosphere | 2010

Evolution of bacterial community during bioremediation of PAHs in a coal tar contaminated soil

Christine Lors; Annemie Ryngaert; Frédéric Périé; Ludo Diels; Denis Damidot

The monitoring of a windrow treatment applied to soil contaminated by mostly 2-, 3- and 4-ring PAHs produced by coal tar distillation was performed by following the evolution of both PAH concentration and the bacterial community. Total and PAH-degrading bacterial community structures were followed by 16S rRNA PCR-DGGE in parallel with quantification by bacterial counts and 16 PAH measurements. Six months of biological treatment led to a strong decrease in 2-, 3- and 4-ring PAH concentrations (98, 97 and 82% respectively). This result was associated with the activity of bacterial PAH-degraders belonging mainly to the Gamma-proteobacteria, in particular, the Enterobacteria and Pseudomonas genera, which were detected over the course of the treatment. This group was considered to be a good bioindicator to determine the potential PAH biodegradation of contaminated soil. Conversely, other species, like the Beta-proteobacteria, were detected after 3months, when 2-, 3- and 4-ring PAHs were almost completely degraded. Thus, presence of the Beta-proteobacteria group could be considered a good candidate indicator to estimate the endpoint of biotreatment of this type of PAH-contaminated soil.


Environmental Pollution | 2012

Metal immobilization and soil amendment efficiency at a contaminated sediment landfill site: A field study focusing on plants, springtails, and bacteria

Valérie Bert; Christine Lors; Jean-François Ponge; Lucie Caron; Asmaa Biaz; Marc Dazy; Jean-François Masfaraud

Metal immobilization may contribute to the environmental management strategy of dredged sediment landfill sites contaminated by metals. In a field experiment, amendment effects and efficiency were investigated, focusing on plants, springtails and bacteria colonisation, metal extractability and sediment ecotoxicity. Conversely to hydroxylapatite (HA, 3% DW), the addition of Thomas Basic Slag (TBS, 5% DW) to a 5-yr deposited sediment contaminated with Zn, Cd, Cu, Pb and As resulted in a decrease in the 0.01 M Ca(NO(3))(2)-extractable concentrations of Cd and Zn. Shoot Cd and Zn concentration in Calamagrostis epigejos, the dominant plant species, also decreased in the presence of TBS. The addition of TBS and HA reduced sediment ecotoxicity and improved the growth of the total bacterial population. Hydroxylapatite improved plant species richness and diversity and decreased antioxidant enzymes in C. Epigejos and Urtica dïoica. Collembolan communities did not differ in abundance and diversity between the different treatments.


Environmental Pollution | 2011

Comparison of solid and liquid-phase bioassays using ecoscores to assess contaminated soils

Christine Lors; Jean-François Ponge; Maite Martínez Aldaya; Denis Damidot

Bioassays on aqueous and solid phases of contaminated soils were compared, belonging to a wide array of trophic and response levels and using ecoscores for evaluating ecotoxicological and genotoxicological endpoints. The method was applied to four coke factory soils contaminated mainly with PAHs, but also to a lesser extent by heavy metals and cyanides. Aquatic bioassays do not differ from terrestrial bioassays when scaling soils according to toxicity but they are complementary from the viewpoint of ecological relevance. Both aquatic and terrestrial endpoints are strongly correlated with concentrations of 3-ring PAHs. This evaluation procedure allows us to propose a cost-effective battery which embraces a wide array of test organisms and response levels: it includes two rapid bioassays (Microtox(®) and springtail avoidance), a micronucleus test and three bioassays of a longer duration (algal growth, lettuce germination and springtail reproduction). This battery can be recommended for a cost-effective assessment of polluted/remediated soils.


Frontiers in Microbiology | 2015

Self-protected nitrate reducing culture for intrinsic repair of concrete cracks

Yusuf Cagatay Ersan; Elke Gruyaert; Ghislain Louis; Christine Lors; Nele De Belie; Nico Boon

Attentive monitoring and regular repair of concrete cracks are necessary to avoid further durability problems. As an alternative to current maintenance methods, intrinsic repair systems which enable self-healing of cracks have been investigated. Exploiting microbial induced CaCO3 precipitation (MICP) using (protected) axenic cultures is one of the proposed methods. Yet, only a few of the suggested healing agents were economically feasible for in situ application. This study presents a NO3− reducing self-protected enrichment culture as a self-healing additive for concrete. Concrete admixtures Ca(NO3)2 and Ca(HCOO)2 were used as nutrients. The enrichment culture, grown as granules (0.5–2 mm) consisting of 70% biomass and 30% inorganic salts were added into mortar without any additional protection. Upon 28 days curing, mortar specimens were subjected to direct tensile load and multiple cracks (0.1–0.6 mm) were achieved. Cracked specimens were immersed in water for 28 days and effective crack closure up to 0.5 mm crack width was achieved through calcite precipitation. Microbial activity during crack healing was monitored through weekly NOx analysis which revealed that 92 ± 2% of the available NO3− was consumed. Another set of specimens were cracked after 6 months curing, thus the effect of curing time on healing efficiency was investigated, and mineral formation at the inner crack surfaces was observed, resulting in 70% less capillary water absorption compared to healed control specimens. In conclusion, enriched mixed denitrifying cultures structured in self-protecting granules are very promising strategies to enhance microbial self-healing.


Environmental Pollution | 2006

Avoidance bio-assays may help to test the ecological significance of soil pollution

Maite Martínez Aldaya; Christine Lors; Sandrine Salmon; Jean-François Ponge


International Biodeterioration & Biodegradation | 2012

Influence of the intrinsic characteristics of mortars on biofouling by Klebsormidium flaccidum

Thu Hien Tran; Alexandre Govin; René Guyonnet; Philippe Grosseau; Christine Lors; Eric Garcia-Diaz; Denis Damidot; Olivier Devès; Bertrand Ruot


Environmental Pollution | 2010

Comparison of solid-phase bioassays and ecoscores to evaluate the toxicity of contaminated soils.

Christine Lors; Jean-François Ponge; Maite Martínez Aldaya; Denis Damidot


International Biodeterioration & Biodegradation | 2009

pH variations during growth of Acidithiobacillus thiooxidans in buffered media designed for an assay to evaluate concrete biodeterioration

Christine Lors; Mohamad Hajj Chehade; Denis Damidot


International Biodeterioration & Biodegradation | 2013

Avrami's law based kinetic modeling of colonization of mortar surface by alga Klebsormidium flaccidum

Thu Hien Tran; Alexandre Govin; René Guyonnet; Philippe Grosseau; Christine Lors; Denis Damidot; Olivier Devès; Bertrand Ruot

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Jean-François Ponge

Centre national de la recherche scientifique

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Richard Gagné

Université de Sherbrooke

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Ghislain Louis

École Normale Supérieure

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