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1. Reactive Chemical Safety Center, East China University of Science and Technology,Shanghai,China,200237
2. Bureau of Emergency Management of Ningdong Energy Chemical Industry Base,Yinchuan,China,750411
3. Shanghai Key Laboratory of Crime Scene Evidence,Shanghai,China,200083
Published:2025
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-hexane system using calorimetric method[J]. 中国化学工程学报, 2025, 87(11): 1-9.
DOI:
-hexane system using calorimetric method[J]. 中国化学工程学报, 2025, 87(11): 1-9. DOI:
With the acceleration of the energy transition
new synthetic routes for converting alkanes into high-value products are emerging. However
the thermal safety of these new routes may not have been fully considered
potentially leading to dangers during the optimization of reaction conditions. This study reports
for the first time
a reactor explosion incident during the experiment of a new synthetic route for adipic acid: nitric acid oxidation of
n-
hexane. Differential scanning calorimetry (DSC)
accelerating rate calorimetry (ARC)
and corrective calculations were used to investigate the cause of the explosion. The results indicate that the polyparaphenol (PPL) liner material
which was used for the first time in the experiment
is unlikely to react with the system and cause the explosion. When the nitric acid concentration is increased from 3.7 mol·L
-1
to 5.4 mol·L
the thermal stability of the system decreases
and the heat release surpasses the chemical explosion threshold (1000 J·g
). The maximum self-heat rate (
dT
=
dt
max
) increases by at least 7 times
and the maximum pressure rise rate (
) increases by at least 11 times. This led to the actual pressure in the reactor increasing from 4.96 MPa to at least 11.09 MPa
which far exceeded the rated pressure (3 MPa) and reached the rupture pressure (3.5 to 4 times their rated pressure)
resulting in the explosion. This study aims to
provide a warning regarding the safety of new synthetic routes involving the nitric acid-organic systems
particularly the conversion of alkanes
to prevent the recurrence of similar incidents.
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