MN NANOCOLOR® Tube Test COD 160 Hg-free


MN NANOCOLOR® Tube Test COD 300


MN NANOCOLOR® Tube Test COD 600


MN NANOCOLOR® Tube Test COD 1500


MN NANOCOLOR® Tube Test COD 4000


MN NANOCOLOR® Tube Test COD 10.000


MN NANOCOLOR® Tube Test COD 15.000


MN NANOCOLOR® Tube Test COD 60.000


MN NANOCOLOR® Tube Test Cyanide 08


MN NANOCOLOR® Tube Test DEHA 1 (Diethylhydroxylamine)


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MN NANOCOLOR® Tube Test COD 160 Hg-free

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115.20
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Photometric determination of the COD without use of mercury salts. • Photometric determination of decrease in chromate concentration after two hours and oxidation with potassium dichromate/sulphuric acid/silver sulphate at 148 °C without use of toxic mercury salts • Chloride contents below 2000 mg/l are eliminated by a simple filtration pretreatment step using a special cartridge and do not interfere. • The chemical oxygen demand of a water is determined by silver-catalysed oxidation with potassium dichromate/sulphuric acid at 148 °C during a two hour period. • Type: tube test 0-26 • Range: 15 - 160 mg/l O2 • Sufficient for: 20 determinations • Sea water suitability: no
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MN NANOCOLOR® Tube Test COD 300

Available

81.41
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Photometric determination of the COD. • Photometric determination of decrease in chromate concentration after two hours and oxidation with potassium dichromate/sulphuric acid/silver sulphate at 148 °C. • The chemical oxygen demand of a water is determined by silver-catalysed oxidation with potassium dichromate/sulphuric acid at 148 °C during a two hour period. • Type: tube test 0-33 • Range: 50 - 300 mg/l O2 • Sufficient for: 20 determinations • Sea water suitability: no

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MN NANOCOLOR® Tube Test COD 600

Available

81.41
Price plus VAT, plus delivery


Photometric determination of the COD. • Photometric determination of decrease in chromate concentration after two hours and oxidation with potassium dichromate/sulphuric acid/silver sulphate at 148 °C. • This test is in accordance to the DIN ISO 15705:2003. The chemical oxygen demand of a water is determined by silver-catalysed oxidation with potassium dichromate/sulphuric acid at 148 °C during a two hour period. • Type: tube test 0-30. • Range: 50 - 600 mg/l O2. • Sufficient for: 20 determinations. • Sea water suitability: no.

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MN NANOCOLOR® Tube Test COD 1500

Available

81.41
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Photometric determination of the COD. • Photometric determination of decrease in chromate concentration after two hours and oxidation with potassium dichromate/sulphuric acid/silver sulphate at 148 °C. • This test is in accordance to the DIN ISO 15705:2003. The chemical oxygen demand of a water is determined by silver-catalysed oxidation with potassium dichromate/sulphuric acid at 148 °C during a two hour period. • Type: tube test 0-29 • Range: 100 - 1500 mg/l O2 • Sufficient for: 20 determinations • Sea water suitability: no

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MN NANOCOLOR® Tube Test COD 4000

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81.41
Price plus VAT, plus delivery


Photometric determination of the COD. • Photometric determination of decrease in chromate concentration after two hours and oxidation with potassium dichromate/sulphuric acid/silver sulphate at 148 °C. • This test is in accordance to the DIN ISO 15705:2003. The chemical oxygen demand of a water is determined by silver-catalysed oxidation with potassium dichromate/sulphuric acid at 148 °C during a two hour period. • Type: tube test 0-11 • Range: 400 - 4000 mg/l O2 • Sufficient for: 20 determinations • Sea water suitability: no

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MN NANOCOLOR® Tube Test COD 10.000

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List price 73.80 €
81.41
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Photometric determination of the COD. • Photometric determination of chromium(III) concentration after two hours of oxidation with potassium dichromate/sulphuric acid/silver sulphate at 148 °C. • The chemical oxygen demand of a water is determined by silver-catalysed oxidation with potassium dichromate/sulphuric acid at 148 °C during a two hour period. • Type: tube test 0-23 • Range: 1.00 - 10.00 g/l O2 • Sufficient for: 20 determinations • Sea water suitability: no

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MN NANOCOLOR® Tube Test COD 15.000

Available

81.41
Price plus VAT, plus delivery


Photometric determination of the COD. • Photometric determination of decrease in chromate concentration after two hours and oxidation with potassium dichromate/sulphuric acid/silver sulphate at 148 °C. • This test is in accordance to the DIN ISO 15705:2003. • The chemical oxygen demand of a water is determined by silver-catalysed oxidation with potassium dichromate/sulphuric acid at 148 °C during a two hour period. • Type: tube test 0-28 • Range: 1 - 15.0 g/l O2 • Sufficient for: 20 determinations • Sea water suitability: no

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MN NANOCOLOR® Tube Test COD 60.000

Available

81.41
Price plus VAT, plus delivery


Photometric determination of the COD. • Photometric determination of chromium(III) concentration after two hours of oxidation with potassium dichromate/sulphuric acid/silver sulphate at 148 °C. • The chemical oxygen demand of a water is determined by silver-catalysed oxidation with potassium dichromate/sulphuric acid at 148 °C during a two hour period. • Type: tube test 0-12 • Range: 5.0 - 60.0 g/l O2 • Sufficient for: 20 determinations • Sea water suitability: no

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MN NANOCOLOR® Tube Test Cyanide 08

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68.35
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Photometric determination of Cyanide. • Photometric determination with chloroamine T. • Cyanide ions react with chloroamine T to form cyanogen chloride which, with a pyridine derivative and barbituric acid forms a polymethine dye. • The test measures free cyanide and cyanide complexes which can be destroyed with chlorine. • Type: tube test 0-31. • Range: 0.02 - 0.80 mg/l CN-; when using semi-micro cuvettes 50 mm: 0.002 - 0.100 mg/l CN-. • Sufficient for: 20 determinations. • Sea water suitability: yes, after dilution (1:4).

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MN NANOCOLOR® Tube Test DEHA 1 (Diethylhydroxylamine)

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86.30
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Photometric determination of DEHA (Diethylhydroxylamine). • Photometric determination with iron(III) ions. • Measurement of the reduction properties of DEHA for iron(III) ions and photometric determination or the iron(II) ions formed during 15 min heating to 100 °C. • Type: tube test 0-35. • Range: 0.05 - 1.00 mg/l DEHA. • Sufficient for: 20 determinations. • Sea water suitability: yes. 
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