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Please be aware that this old REACH registration data factsheet is no longer maintained; it remains frozen as of 19th May 2023.

The new ECHA CHEM database has been released by ECHA, and it now contains all REACH registration data. There are more details on the transition of ECHA's published data to ECHA CHEM here.

Diss Factsheets

Physical & Chemical properties

Vapour pressure

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Administrative data

Endpoint:
vapour pressure
Type of information:
other: Statement
Adequacy of study:
supporting study
Reliability:
1 (reliable without restriction)
Rationale for reliability incl. deficiencies:
other: The statement was prepared based on the results of the melting point study, in accordance with the REACH Regulation (Column 2 of Annex VII; point 7.5).
Cross-reference
Reason / purpose for cross-reference:
reference to same study

Data source

Reference
Reference Type:
study report
Title:
Unnamed
Year:
2013
Report date:
2013

Materials and methods

GLP compliance:
yes (incl. QA statement)

Test material

Constituent 1
Chemical structure
Reference substance name:
Neodymium trinitrate
EC Number:
233-153-9
EC Name:
Neodymium trinitrate
Cas Number:
10045-95-1
Molecular formula:
HNO3.1/3Nd
IUPAC Name:
neodymium trinitrate

Results and discussion

Any other information on results incl. tables

Argumentation:

During the DSC experiment run in the context of study No. 11-918025 -032, a preliminary heating procedure at 10°C/min was conducted from -60°C to 600°C. This preliminary test was decomposed in two assays; the first between -60°C and 50°C, and the second between 25°C and 600°C. The first assay did not reveal any endothermic or exothermic events. During the second assay, an endothermic peak was observed at 69.8°C. A main test was then carried out using a heating procedure from 25°C to 300°C at 10°C/min. During this assay an endothermic peak was observed at 69.9°C.

These endothermic events reflected the fact that the rare earth salt solubilised in its hydration water. Indeed, the hydrated rare earth salts, such as the hydrated form of neodymium trinitrate, loose their water of hydration when heated. As these water molecules are loosely bound and as the amount of water in the substance is significant, the attached water is released and the rare earth salt solubilizes in water. As a result, it is concluded that neodymium trinitrate did not melt or boil over the temperature range tested. These results confirmed that the vapour pressure of neodymium trinitrate can be considered as negligible.

Applicant's summary and conclusion