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Paijens, Claudia; Bressy, Adèle; Bethouart, Frédéric; Briand, Céline; Caupos, Émilie; Frère, Bertrand; Mailler, Romain; Neveu, Pascale; Rocher, Vincent; Saad, Mohamed; Moilleron, Régis (2020): Biocide concentrations in the dissolved and particulate fractions of urban waters in the Paris conurbation (France, 2018-2019) [dataset]. LEESU, LCPP, Mairie de Paris, SIAAP, PANGAEA, https://doi.org/10.1594/PANGAEA.910472

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Abstract:
Our work focused on biocides used in building materials and their transfer to the aquatic environment. This dataset presents the biocide concentrations measured in the dissolved and particulate fractions of different types of urban waters (rain, stormwater, treated and untreated wastewater, combined sewer overflow, surface water) in the Paris conurbation. Data were acquired within the framework of Claudia Paijens' PhD (2019) and with the financial support of the LCPP, the Leesu and the OPUR program. Based on biocide emissions, exposure of the aquatic organisms, ecotoxicity and analytical feasibility, eighteen biocides frequently used in building materials were selected to be monitored in urban waters: diuron, isoproturon, methylisothiazolinone (MIT), chloromethylisothiazolinone (CMIT), benzisothiazolinone (BIT), octylisothiazolinone (OIT), dichloro-octylisothiazolinone (DCOIT), dimethyldidecyl ammonium chloride, benzalkonium chlorides (C12-C16), terbutryn, cybutryn, terbuthylazine, carbendazim, iodopropynyl butylcarbamate (IPBC), thiabendazole, tebuconazole and mecoprop. A multi-residue method was used for the analysis of these biocides in both the dissolved and particulate fractions (filtration through 0.7 µm glass fiber filters) of water samples by liquid chromatography coupled to tandem mass spectrometry. For some compounds, this monitoring led to a unique database, in particular in France. Our results highlighted the ubiquity of the eighteen-targeted biocides in all the urban environment, especially concerning benzalkonium compounds, which were measured at the highest concentrations (in the µg/L range in WWTP influents, WWTP effluents and CSOs, and in the range of 100 ng/L in surface waters for benzalkonium C12). Concentrations significantly higher than 100 ng/L were also measured for MIT and BIT in wastewater. In CSOs, diuron, MIT, carbendazim and mecoprop were quantified at around 100 ng/L. The surface water concentrations were compared to predicted no effect concentrations (PNEC) and pointed out a possible high risk for aquatic ecosystems, more specifically for diuron, carbendazim, DCOIT and benzalkoniums.
Keyword(s):
Biocide concentrations; combined sewer overflow; dissolved fraction; emergent contaminants; particulate fraction; rain; river; stormwater; surface water; wastewater; wastewater treatment plant; water pollution
Coverage:
Median Latitude: 48.874757 * Median Longitude: 2.309803 * South-bound Latitude: 48.799232 * West-bound Longitude: 2.079972 * North-bound Latitude: 48.988193 * East-bound Longitude: 2.423703
Date/Time Start: 2018-03-14T00:00:00 * Date/Time End: 2019-05-08T00:00:00
Event(s):
CSO_1 (Clichy combined sewer overflow - SIAAP, Paris) * Latitude: 48.906191 * Longitude: 2.296798 * Location: France * Method/Device: Water sample (WS) * Comment: Mix of untreated wastewater and stormwater, Event flow-dependent sampling
CSO_2 (Vincennes-Charenton combined sewer overflow - Mair) * Latitude: 48.831374 * Longitude: 2.396158 * Location: France * Method/Device: Water sample (WS) * Comment: Mix of untreated wastewater and stormwater, Event flow-dependent sampling
LCPP_Rain (Roof of LCPP - Paris) * Latitude: 48.832648 * Longitude: 2.297780 * Location: France * Method/Device: Grab (GRAB) * Comment: Total atmospheric fallout
Comment:
PLEASE NOTE, that #0 in the data table refers to <LOQ, for the exact limits of quantification please refer to the document linked under "Further Details".
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Event labelEventPaijens, Claudia
2Latitude of eventLatitudePaijens, Claudia
3Longitude of eventLongitudePaijens, Claudia
4DATE/TIMEDate/TimePaijens, ClaudiaGeocode
5Time coverageCoveragePaijens, ClaudiaSampling hour or period
6Station labelStationPaijens, Claudia
7Methylisothiazolinone, dissolvedMIT dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019) (Paijens 2019)
8Methylisothiazolinone, particulateMIT partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
9Methylisothiazolinone, totalMIT totng/lPaijens, ClaudiaT=D+P*[SS]
10Carbendazim, dissolvedCarbendazim dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
11Carbendazim, particulateCarbendazim partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
12Carbendazim, totalCarbendazim totng/lPaijens, ClaudiaT=D+P*[SS]
13Thiabendazole, dissolvedThiabendazole dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
14Thiabendazole, particulateThiabendazole partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
15Thiabendazole, totalThiabendazole totng/lPaijens, ClaudiaT=D+P*[SS]
16Benzisothiazolinone, dissolvedBIT dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
17Benzisothiazolinone, particulateBIT partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
18Benzisothiazolinone, totalBIT totng/lPaijens, ClaudiaT=D+P*[SS]
19Terbutryn, dissolvedTerbutryn dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
20Terbutryn, particulateTerbutryn partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
21Terbutryn, totalTerbutryn totng/lPaijens, ClaudiaT=D+P*[SS]
22Isoproturon, dissolvedIsoproturon dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
23Isoproturon, particulateIsoproturon partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
24Isoproturon, totalIsoproturon totng/lPaijens, ClaudiaT=D+P*[SS]
25Iodopropynyl butylcarbamate, dissolvedIPBC dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
26Iodopropynyl butylcarbamate, particulateIPBC partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
27Iodopropynyl butylcarbamate, totalIPBC totng/lPaijens, ClaudiaT=D+P*[SS]
28Diuron, dissolvedDiuron dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
29Diuron, particulateDiuron partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
30Diuron, totalDiuron totng/lPaijens, ClaudiaT=D+P*[SS]
31Cybutryne, dissolvedCybutryne dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
32Cybutryne, particulateCybutryne partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
33Cybutryne, totalCybutryne totng/lPaijens, ClaudiaT=D+P*[SS]
34Terbuthylazine, dissolvedTerbuthylazine dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
35Terbuthylazine, particulateTerbuthylazine partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
36Terbuthylazine, totalTerbuthylazine totng/lPaijens, ClaudiaT=D+P*[SS]
37Mecoprop, dissolvedMecoprop dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
38Mecoprop, particulateMecoprop partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
39Mecoprop, totalMecoprop totng/lPaijens, ClaudiaT=D+P*[SS]
40Octylisothiazolinone, dissolvedOIT dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
41Octylisothiazolinone, particulateOIT partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
42Octylisothiazolinone, totalOIT totng/lPaijens, ClaudiaT=D+P*[SS]
43Benzalkonium chloride C12, dissolvedBZK C12 dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
44Benzalkonium chloride C12, particulateBZK C12 partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
45Benzalkonium chloride C12, totalBZK C12 totng/lPaijens, ClaudiaT=D+P*[SS]
46Tebuconazole, dissolvedTebuconazole dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
47Tebuconazole, particulateTebuconazole partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
48Tebuconazole, totalTebuconazole totng/lPaijens, ClaudiaT=D+P*[SS]
49Dichloro-octylisothiazolinone, dissolvedDCOIT dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
50Dichloro-octylisothiazolinone, particulateDCOIT partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
51Dichloro-octylisothiazolinone, totalDCOIT totng/lPaijens, ClaudiaT=D+P*[SS]
52Benzalkonium chloride C14, dissolvedBZK C14 dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
53Benzalkonium chloride C14, particulateBZK C14 partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
54Benzalkonium chloride C14, totalBZK C14 totng/lPaijens, ClaudiaT=D+P*[SS]
55Benzalkonium chloride C16, dissolvedBZK C16 dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
56Benzalkonium chloride C16, particulateBZK C16 partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
57Benzalkonium chloride C16, totalBZK C16 totng/lPaijens, ClaudiaT=D+P*[SS]
58Chloro-methylisothiazolinone, dissolvedCMIT dissng/lPaijens, Claudiafiltration through 0.7 µm glass fiber filters; SPE extraction; analysis by HPLC-MS/MS (Paijens 2019)
59Chloro-methylisothiazolinone, particulateCMIT partng/mgPaijens, Claudiafiltration through 0.7 µm glass fiber filters; microwave assisted extraction; analysis by HPLC-MS/MS (Paijens 2019)
60Chloro-methylisothiazolinone, totalCMIT totng/lPaijens, ClaudiaT=D+P*[SS]
61Suspended matter, particulate/solidsTSSmg/lPaijens, Claudiafiltration through 0.7 µm glass fiber filter
62Carbon, organic, dissolvedDOCmg/lPaijens, Claudiafiltration through 0.7 µm glass fiber filter, NF EN 1484 (T90-102) protocol
63Carbon, organic, particulatePOCµg/lPaijens, Claudiafiltration through 0.7 µm glass fiber filter, measurement of CO2 with infrared light after combustion
64Carbon, organic, total per volumeTOCµg/lPaijens, ClaudiaTOC=DOC+POC
65Conductivity, electricalCond electrµS/cmPaijens, Claudia
Size:
3820 data points

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