EU-kalat: Difference between revisions
(→Initiate conc_pcddf: length and time added) |
(→Calculations: eu2 moved to preprocess) |
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return(eu) | return(eu) | ||
} | } | ||
) | |||
eu2 <- Ovariable( | |||
"eu2", | |||
dependencies=data.frame(Name="eu", Ident = NA), | |||
formula = function(...) { | |||
replaces <- list( | |||
c("Chlorinated dibenzo-p-dioxins", "PCDDF"), | |||
c("Chlorinated dibenzofurans", "PCDDF"), | |||
c("Mono-ortho-substituted PCBs", "PCB"), | |||
c("Non-ortho-substituted PCBs", "PCB") | |||
) | |||
eu2 <- eu | |||
for(i in 1:length(replaces)) { | |||
levels(eu2$Compound)[levels(eu2$Compound)==replaces[[i]][1]] <- replaces[[i]][2] | |||
} | |||
eu2@marginal[colnames(eu2@output) %in% c("Length","Year")] <- TRUE # Indexguide should take care of this but it doesn't! | |||
eu2 <- unkeep(eu2, prevresults = TRUE, sources = TRUE) | |||
eu2 <- oapply(eu2, cols = "TEFversion", FUN = "sum") # Sums up dioxin+furan and non+monoortho. This goes wrong if > 1 TEFversion. | |||
return(eu2) | |||
} | |||
) | ) | ||
Line 210: | Line 233: | ||
#)) | #)) | ||
objects.store(euRaw, eu, euRatio, indices, indexguide) | objects.store(euRaw, eu, eu2, euRatio, indices, indexguide) | ||
cat("Ovariables euRaw, eu, euRatio, and indexguide and list indices stored.\n") | cat("Ovariables euRaw, eu, euRatio, and indexguide and list indices stored.\n") | ||
</rcode> | </rcode> | ||
Line 242: | Line 265: | ||
library(car) # scatterplotMatrix | library(car) # scatterplotMatrix | ||
objects.latest("Op_en3104", code_name = "preprocess") # [[EU-kalat]] eu, euRatio, indices | objects.latest("Op_en3104", code_name = "preprocess") # [[EU-kalat]] eu, eu2, euRatio, indices | ||
conl <- indices$Compound.TEQ2 | conl <- indices$Compound.TEQ2 | ||
Line 256: | Line 277: | ||
fisl | fisl | ||
eu2 <- EvalOutput(eu2) | |||
eu2 <- | |||
# Hierarchical Bayes model. | # Hierarchical Bayes model. |
Revision as of 11:27, 26 March 2018
This page is a study.
The page identifier is Op_en3104 |
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Moderator:Arja (see all) |
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EU-kalat is a study, where concentrations of PCDD/Fs, PCBs, PBDEs and heavy metals have been measured from fish
Question
The scope of EU-kalat study was to measure concentrations of persistent organic pollutants (POPs) including dioxin (PCDD/F), PCB and BDE in fish from Baltic sea and Finnish inland lakes and rivers. [1] [2] [3].
Answer

The original sample results can be acquired from Opasnet base. The study showed that levels of PCDD/Fs and PCBs depends especially on the fish species. Highest levels were on salmon and large sized herring. Levels of PCDD/Fs exceeded maximum level of 4 pg TEQ/g fw multiple times. Levels of PCDD/Fs were correlated positively with age of the fish.
Mean congener concentrations as WHO2005-TEQ in Baltic herring can be printed out with this link or by running the codel below.
Rationale
Data
Data was collected between 2009-2010. The study contains years, tissue type, fish species, and fat content for each concentration measurement. Number of observations is 285.
There is a new study EU-kalat 3, which will produce results in 2016.
Calculations
Preprocess
- Preprocess model 22.2.2017 [4]
- Objects used in Benefit-risk assessment of Baltic herring and salmon intake
- Model run 25.1.2017 [5]
- Model run 22.5.2017 with new ovariables euRaw, euAll, euMain, and euRatio [6]
- Model run 23.5.2017 with adjusted ovariables euRaw, eu, euRatio [7]
- Model run 11.10.2017: Small herring and Large herring added as new species [8]
- Model rerun 15.11.2017 because the previous stored run was lost in update [9]
- Model run 21.3.2018: Small and large herring replaced by actual fish length [10]
Bayes model for dioxin concentrations
- Model run 28.2.2017 [11]
- Model run 28.2.2017 with corrected survey model [12]
- Model run 28.2.2017 with Mu estimates [13]
- Model run 1.3.2017 [14]
- Model run 23.4.2017 [15] produces list conc.param and ovariable concentration
- Model run 24.4.2017 [16]
- Model run 19.5.2017 without ovariable concentration [17] ⇤--#: . The model does not mix well, so the results should not be used for final results. --Jouni (talk) 19:37, 19 May 2017 (UTC) (type: truth; paradigms: science: attack)
- Model run 22.5.2017 with TEQdx and TEQpcb as the only Compounds [18]
- Model run 23.5.2017 debugged [19] [20] [21]
- Model run 24.5.2017 TEQdx, TECpcb -> PCDDF, PCB [22]
- Model run 11.10.2017 with small and large herring [23] (removed in update)
- Model run 12.3.2018: bugs fixed with data used in Bayes. In addition, redundant fish species removed and Omega assumed to be the same for herring and salmon. [24]
- Model run 22.3.2018 [25] Model does not mix well. Thinning gives little help?
- Model run 25.3.2018 with conc.param as ovariable [26]
Initiate conc_pcddf
- Model run 19.5.2017 [27]
- Model run 23.5.2017 with bugs fixed [28]
- Model run 12.10.2017: TEQ calculation added [29]
- Model rerun 15.11.2017 because the previous stored run was lost in update [30]
- 12.3.2018 adjusted to match the same Omega for all fish species [31]
- 26.3.2018 includes length and time as parameters [32]
⇤--#: . These codes should be coherent with POPs in Baltic herring. --Jouni (talk) 12:14, 7 June 2017 (UTC) (type: truth; paradigms: science: attack)
See also
References
- ↑ A. Hallikainen, H. Kiviranta, P. Isosaari, T. Vartiainen, R. Parmanne, P.J. Vuorinen: Kotimaisen järvi- ja merikalan dioksiinien, furaanien, dioksiinien kaltaisten PCB-yhdisteiden ja polybromattujen difenyylieettereiden pitoisuudet. Elintarvikeviraston julkaisuja 1/2004. [1]
- ↑ E-R.Venäläinen, A. Hallikainen, R. Parmanne, P.J. Vuorinen: Kotimaisen järvi- ja merikalan raskasmetallipitoisuudet. Elintarvikeviraston julkaisuja 3/2004. [2]
- ↑ Anja Hallikainen, Riikka Airaksinen, Panu Rantakokko, Jani Koponen, Jaakko Mannio, Pekka J. Vuorinen, Timo Jääskeläinen, Hannu Kiviranta. Itämeren kalan ja muun kotimaisen kalan ympäristömyrkyt: PCDD/F-, PCB-, PBDE-, PFC- ja OT-yhdisteet. Eviran tutkimuksia 2/2011. ISSN 1797-2981 ISBN 978-952-225-083-4 [3]