characterization of nom by lc-ocddoc2cs.com/.../10/jan-kroesbergen-nom-presentatie.pdf · • gc-ms...
TRANSCRIPT
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Characterization of NOM by LC-OCD
Principle, Possibilities and Points of Attention
Jan Kroesbergen
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Contents
• Natural Organic Matter (NOM)
• Methods of Measurement
• LC-OCD
– History
– Principles
• Application of LC-OCD
• Factors influencing measurements
• Conclusions
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Normal Organic Matter (NOM)
• Complex mix of molecules with a large variation
• Origin is from breakdown of material of animals, plants and micro-organismspresent in nature (but also of anthropogenic nature)
• Components consists mainly of carbon, hydrogen, oxygen, nitrogen and sulphur
• Size variates from small acids and aminoacids (100 – 200 amu) to humic/fulvicacids and aggregates (1000 – 10.000 amu) till even biopolymers (proteins andpolysacharides) (till 2.000.000 amu)
• Components are aliphatic, aromatic, polar, non polair of stucture and may have a colour (yellow/brown)
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NOM influences
• Purification Proces
– Advanced Oxydation
– Membrane filtration
• Growth of bacteria in the distribution system (AOC)
• Corrosion
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Method of Analysis
• TOC, DOC (after filtration on 0.45 um), UV 254 (double bonds)
• XAD-4 and XAD-8 fractionation for polar, non-polar and hydrophobic NOM (Leenheer)
• Fluorescence Excitation Emission Matrices (humus like and protein like NOM)
• GC-MS
• MaldiTof
• Size Exclusion Chromatography
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Analysis Method LC-OCD
• Liquid Chromatography based on Size-Exclusion Chromatography (SEC)
• Detection: OCD (Organic Carbon Detector, continue measurement with high sensitivity), continue UV-absorption (aromatics) and continue OND (OrganicNitrogenDetector)
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Principle LC-OCD
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Principle LC-OCD
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Principle LC-OCD
3 Measurements:
- Small amount directly to detectors bypassing the colum -> TOC
- Small amount online filtered over 1,2 um glassfibre filter also directly to detectors bypassing the column -> DOC
- 5 ml sample chromatographed on colum and the entering the detectors -> CDOC
Column: GPC-kolom Toyopearl HW-50S, 30 µm (250 x 20) (hydroxylated methacrylic polymer)
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Principle LC-OCD
Precautions:
- Use special cleaned vials (available from HWL)
- Avoid fragrances (perfume, after shave) during
sampling and handling
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Principle LC-OCD
1. OCD-detector
2. DOCOX/DONOX
3. Thin layer reactor
4. Colums
5. UV-detector
6. OND-detector
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Principle LC-OCD
• Reactor consists of 2 UV lamps
• DOCOX (left)• Eluent• Organic Substances -> CO2
• DONOX (right)• Sample• Nitrogen -> NO3
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Principle LC-OCD
• Removal of Inorganic Carbon (acidification, purging)
•Oxidation of Organic Carbon and Ureum
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Chromatogram
0 20 40 60 80 100
retention time in minutes
sig
nal re
sponse T
OC
11.09.2002Date:
09:58:46Time:
LMM= Niedermolekular, HS= HuminstoffeBild 1
Huminstoffe (HS)Fraktion 1
Building BlocksFraktion 2
LMM Säuren (LMM HS)Fraktion 3
LMM Neutrale and AmphiphileFraktion 4
PolysaccharideFraktion 5
inorganic, UV-aktiv colloides (nur UV-chrom.)Fraktion 6
raw 5.D2DFilename
Typical Surface Water
Polysaccharides
Humics
Building Blocks
Small Acids
Neutrals
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History
• 1969 Axt SEC-chromatography with thermal combustion C-detector
• 1986 Fuchs Gräntzel thin film detector with vacuum UV-detection
• 1991 Huber and Frimmel optimization of NOM analysis
• March 2006 HWL sign contract to obtain 7th NOM system from Doc LaborKarsruhe
• May 2006 system is placed and method validated
• August 2017 system is upgraded to work at least to 2020
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Performance
Performance Demand
Linearity good
Robustness good
Repeatability -
Reprodocubilily < 25%
Storage sample -
Reporting limit (fractions)
< 0,2 mg/l
Measurement range -
Result
good
good
< 10%
< 10%
8 days (refrigerated)
0,03 - 0,15 mg C/l
< 12 mg/l
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Typical Chromatograms
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Deconvolution
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Typical Chromatograms
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Typical Chromatogram UV-Peroxyde (1)
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Typical Chromatogram UV-Peroxyde (2)
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Typical Chromatograms
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Restrictions
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Humic and Fulfic Acids
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Restrictions
• Particulate Organic Matter
• Hydrophobic Organic Matter
• Inorganic Colloids
• Apparent Molecular Weight Humics
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Humic and Fulvic Acids
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Acids are not always acids
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Retention Time of Acids
• Formic Acid : 53 minutes (= LMW Acid Peak)
• Acetic Acid: 53 minutes (= LMW Acid Peak)
• Oxalic Acid: 47.5 minutes (= Building Blocks)
• Citronic Acid: 46 minutes (= Building Blocks)
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Humics are not always humics
The peak
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Humics are not always humics
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Finally: It’s not always you expect
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Finally: It’s not always you expect
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Questions…