flowchart for the laboratory
DESCRIPTION
Flowchart for the Laboratory. Sampling. Subsample. Analyte A. Result A. QC. LIMS. Total Sample results. LIMS. Subsample. Analyte B. Result B. QC. Sample. Other sample info and invoice data. Subsample. Analyte C. Result C. QC. Subsample. Analyte D. Result D. - PowerPoint PPT PresentationTRANSCRIPT
![Page 1: Flowchart for the Laboratory](https://reader035.vdocument.in/reader035/viewer/2022062305/5681500a550346895dbde562/html5/thumbnails/1.jpg)
Flowchart for the Laboratory
Sampling
Sample
Subsample
Subsample
Subsample
Subsample
Subsample
Sub- suplying lab
LIMS Analyte A
Analyte B
Analyte C
Analyte D
Analyte Y
Result A
Result B
Result C
Result D
Result Y
Logistic Analyte D Result D
QC
QC
QC
QC
QC
LIM
S
Analytical report
Total Sampleresults
Other sample info and invoice data
Final approval & signiture
Customer
Invoice
![Page 2: Flowchart for the Laboratory](https://reader035.vdocument.in/reader035/viewer/2022062305/5681500a550346895dbde562/html5/thumbnails/2.jpg)
Key parameters for the Laboratory
• Sampling
• LIMS
• Analytical methods
• Analytical selection
• Quality Assurrance & Control (QA/QC)
![Page 3: Flowchart for the Laboratory](https://reader035.vdocument.in/reader035/viewer/2022062305/5681500a550346895dbde562/html5/thumbnails/3.jpg)
Sampling
• Sampling of waste water, drinking water, pool water, bathing water, slugde and soil
• Sampling plan - Approximary 70-80% of all samples are preordered for longer period.
• Sampling methods are Danish Standards orfrom technical papers.
• Waste water sampling – Momentary, time orflowproportional
![Page 4: Flowchart for the Laboratory](https://reader035.vdocument.in/reader035/viewer/2022062305/5681500a550346895dbde562/html5/thumbnails/4.jpg)
LIMS - VAXLIMS
• Laboratory Information Management System – Information on sampling sites– Information on customers (orders)– Information on individual analytic programmes– Gives unique ID number to samples– Samples and subsamples are barcoded– Barcodes gives information to instruments and
instruments returns results to VAXLIMS– Sample information etc. can be accessed from
other ROVESTA departments (Holbæk, Næstved) – VAXLIMS produces final analytical reports and
data for invoices
![Page 5: Flowchart for the Laboratory](https://reader035.vdocument.in/reader035/viewer/2022062305/5681500a550346895dbde562/html5/thumbnails/5.jpg)
Analytical Methods
• Almost every methods are Danish (DS) orEuropian/International EN/ISO Standards. A few US (”Standard Methods”) are in use.
• Most methods builds on long and well triedprinciples.
• Analytical principles are mostlyspectrofotometric (colourformation), titration, ionchromatography and physical/chemicalmeasurements like pH, conductivity etc.
![Page 6: Flowchart for the Laboratory](https://reader035.vdocument.in/reader035/viewer/2022062305/5681500a550346895dbde562/html5/thumbnails/6.jpg)
Analytical Methods
• Many of the methods are automated e.g. withFlow injektion analysis, robotic oxygenemeasurement and titrators with autosampling.
• Automatisation of analysis is much more easy with ”clean” samples like drinking and fresh-/seawater
![Page 7: Flowchart for the Laboratory](https://reader035.vdocument.in/reader035/viewer/2022062305/5681500a550346895dbde562/html5/thumbnails/7.jpg)
Analytical selection
• Waste water:
– pH– Suspended solids– Biochemical and chemical oxygen demand (BOD &
COD)– Nitrite, nitrate, ammonium, kjeldahl-N and total
nitrogen– Ortho phosphate and total phosphorus– Chloride– Sulfate
![Page 8: Flowchart for the Laboratory](https://reader035.vdocument.in/reader035/viewer/2022062305/5681500a550346895dbde562/html5/thumbnails/8.jpg)
Analytical selection
• Fresh- and seawater:
– Suspended solids– Biochemical oxygen demand (BOD)– Nitrite, nitrate, ammonium and total nitrogen– Ortho phosphate and total phosphorus– Silicate– Chlorophyll
![Page 9: Flowchart for the Laboratory](https://reader035.vdocument.in/reader035/viewer/2022062305/5681500a550346895dbde562/html5/thumbnails/9.jpg)
Analytical selection
• Drinking water:
– pH, conductivity, oxygen– Total solids, color, turbidity– Bicarbonate– Nitrite, nitrate, ammonium– Total phosphorus– Chloride, sulfate, fluoride– Hydrogen sulfide
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Analytical selection
• Sludge:
– Total solids– Volatile solids– Total nitrogen– Nitrite+nitrate, ammonium, ortho-P (special)
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Eksternal control of Quality System
• Government requirement for all environ-mental analyses to be performomed by accreditated laboratories
• DANAK inspection visit approx. every 15 mdr.
• Changes in akkreditation must be approvedby DANAK
• Obligation to participate in LaboratoryPerformance studies. Results are controlledby DANAK
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Quality System – DS/EN ISO 17025
• Part 1: Management requirements – Organization– Quality System– Document control– Review of requests, tenders and contracts– Subcontracting of tests and calibrations– Purchasing services and supplies– Service to clients - complaints– Control of nonconforming tests– Corrective and preventive action– Internal audits– Management reviews
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Quality System – DS/EN ISO 17025
• Part 2: Technical requirements– General– Personnel– Accommodation and environmental conditions– Test methods and method validation– Equipment– Measurement tracebility– Sampling– Handling of test items – Assuring the quality of test results– Reporting the results
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Internal control (QC) of Quality System
• Blank and controlsamples in 2 concentrationlevels in all analytic runs
• Statistic surveillance of the results from above, to insure complience with eksternaldemands
• Regular extra control using certifided controlsamples (measurement traceability)
• Internal audits
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QC of results
• Only results within measurementrange, and where control samples have been OK are approved be thetechnicians. The rest are reanalysed.
• The person autorizing the test reportchecks, if posible, for plausiblility ofresults (e.g. NO2+NO3 / TN, ion-balance)