Lubertus Bijlsma
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Explore the profile of Lubertus Bijlsma including associated specialties, affiliations and a list of published articles.
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87
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1120
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Recent Articles
11.
Salgueiro-Gonzalez N, Been F, Bijlsma L, Boogaerts T, Covaci A, Baz-Lomba J, et al.
Water Res
. 2024 Mar;
254:121390.
PMID: 38430760
Wastewater-based epidemiology (WBE) can provide objective and timely information on the use of new psychoactive substances (NPS), originally designed as legal alternatives of internationally controlled drugs. NPS have rapidly emerged...
12.
Nakken C, Meier S, Mjos S, Bijlsma L, Rowland S, Donald C
Sci Total Environ
. 2024 Jan;
918:170496.
PMID: 38296090
Most of the polycyclic aromatic hydrocarbons (PAHs) in petroleum are alkylated (alkyl PAHs), still the metabolism of these alkyl PAHs to the expected acid products (polycyclic aromatic acids; PAAs) has...
13.
Gracia-Marin E, Rico A, Fabregat-Safont D, Lopez F, Hernandez F, Pitarch E, et al.
Chemosphere
. 2023 Nov;
346:140587.
PMID: 37918528
Antibiotic residues can reach aquatic ecosystems through urban wastewater discharges, posing an ecotoxicological risk for aquatic organisms and favoring the development of bacterial resistance. To assess the emission rate and...
14.
Verovsek T, Celma A, Heath D, Heath E, Hernandez F, Bijlsma L
Environ Res
. 2023 Sep;
237(Pt 2):117061.
PMID: 37659634
Drug (ab)use among young people is a serious issue, negatively impacting their well-being and prospects. The emergence of new psychoactive substances (NPS) further complicates the situation as they are easily...
15.
Bade R, Rousis N, Adhikari S, Baduel C, Bijlsma L, Bizani E, et al.
Water Res X
. 2023 May;
19:100179.
PMID: 37143710
The proliferation of new psychoactive substances (NPS) over recent years has made their surveillance complex. The analysis of raw municipal influent wastewater can allow a broader insight into community consumption...
16.
Kasprzyk-Hordern B, Been F, Bijlsma L, Brack W, Castiglioni S, Covaci A, et al.
J Hazard Mater
. 2023 Mar;
450:131009.
PMID: 36863100
WBE has now become a complimentary tool in SARS-CoV-2 surveillance. This was preceded by the established application of WBE to assess the consumption of illicit drugs in communities. It is...
17.
Mohammed Taha H, Aalizadeh R, Alygizakis N, Antignac J, Arp H, Bade R, et al.
Environ Sci Eur
. 2022 Oct;
34(1):104.
PMID: 36284750
Background: The NORMAN Association (https://www.norman-network.com/) initiated the NORMAN Suspect List Exchange (NORMAN-SLE; https://www.norman-network.com/nds/SLE/) in 2015, following the NORMAN collaborative trial on non-target screening of environmental water samples by mass spectrometry....
18.
Celma A, Bade R, Sancho J, Hernandez F, Humphries M, Bijlsma L
J Chem Inf Model
. 2022 Oct;
62(22):5425-5434.
PMID: 36280383
Ultra-high performance liquid chromatography coupled to ion mobility separation and high-resolution mass spectrometry instruments have proven very valuable for screening of emerging contaminants in the aquatic environment. However, when applying...
19.
Menger F, Celma A, Schymanski E, Lai F, Bijlsma L, Wiberg K, et al.
Environ Int
. 2022 Oct;
170:107585.
PMID: 36265356
Identification of bioaccumulating contaminants of emerging concern (CECs) via suspect and non-target screening remains a challenging task. In this study, ion mobility separation with high-resolution mass spectrometry (IM-HRMS) was used...
20.
Belova L, Celma A, Van Haesendonck G, Lemiere F, Sancho J, Covaci A, et al.
Anal Chim Acta
. 2022 Sep;
1229:340361.
PMID: 36156233
The number of open access databases containing experimental and predicted collision cross section (CCS) values is rising and leads to their increased use for compound identification. However, the reproducibility of...