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Hamilton® SampleLock syringe

1710SL, volume 100 μL, needle size 22s ga (bevel tip), needle L 51 mm (2 in.)

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About This Item

Código UNSPSC:
41122001
eCl@ss:
32070500

Materiais

bevel tip stainless steel needle (point style 2)

tamanho da agulha

22s ga (bevel tip)

Características

syringe type Sample Lock

embalagem

pkg of 1 ea

fabricante/nome comercial

Hamilton 81056

agulha C

51 mm (2 in.)

volume

100 μL

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Descrição geral

  • Twist valve locks the sample in the syringe
  • Positive rear plunger stop eliminates sample loss and plunger blowout at high pressures (not applicable to 1705 and 1710 models)
  • Connects to either male or female luer fittings by using an adapter
  • Male and female luer and male luer lock adapters thread onto the SampleLock valve making the syringe compatible with many connectors and fittings
  • All adapters have a Kel-F (CTFE) fluid path, with a port diameter of 0.039 in.
  • Internal standards can be added through the valve port into the sample contained in the syringe
     

Aplicação

Hamilton® SampleLock syringe was used in sampling to understand the preference of oxygen to be in gas phase for Oxygen–Water Isotope Exchange experiment for estimation of potassium. It was also used in sampling gas and liquid phase for GC analysis, in isothermal vapor-liquid equilibrium data measured for two binary systems.

Outras notas

We recommend replacement needle Cat. No. 19136-U (22s ga needle) for the 1705SL, 1710SL and 1725SL syringes; Cat. No. 19137-U (22 ga needle) is recommended for the larger syringes. Both replacement needles will fit 250 μL to 10 mL syringes and will fit any SampleLock syringe.

Plunger Assemblies are available for the 1705SL (Cat. No. 26152-U) and 1710SL (Cat. No. 26154) syringes.

Informações legais

Hamilton is a registered trademark of Hamilton Co.

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Certificados de análise (COA)

Lot/Batch Number

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Estimation of the driving force for dioxygen formation in photosynthesis.
Nilsson, H?kan, et al.
Biochimica et Biophysica Acta, 1857.1, 23-33 (2016)
Vapor- liquid equilibrium for the binary systems of 3-methylpentane+ 2-methyl-2-propanol at 331 K and+ 2-butanol at 331 K.
Uusi-Kyyny, Petri, et al.
Journal of Chemical and Engineering Data, 46.3, 754-758 (2001)

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