Exact(5)
However, great differences can be found among dissociation modes and features of dissociation front advance reported in the literature.
Furthermore, the dynamic variations of dissociation modes and features of dissociation front advance curves have been investigated when the controlling mechanism is changed.
Consequently, a pragmatic criterion has been developed to estimate the controlling mechanisms based on dissociation modes and advance features of dissociation front, or vice versa.
The relations between the controlling mechanisms and hydrate dissociation modes as well as the features of dissociation front advance have been identified by use of 12 well-designed scenarios considering different thermal boundary conditions, intrinsic permeability, and hydrate dissociation models.
The mass spectrometer was operated in data-dependent mode automatically switching between MS, MS/MS CID (collision-induced dissociation) and MS/MS HCD (high-energy collision dissociation) modes using a 50000 threshold for ion selection.
Similar(55)
The behaviour could be rationalized through the dissociation mode concept based on a modified Henderson Hasselbalch relationship.
Given that hydrate dissociation is the controlling mechanism, an extending non-piston-like dissociation mode emerges and the advance of dissociation front accelerates at the late stage.
Above 300 °C, the dissociation mode of 1/3<21̄1̄0> superlattice dislocations changed to APB-type splitting accompanied by a large increase in CRSS.
It has been revealed that a piston-like dissociation mode is formed while the dissociation of hydrate reservoirs is controlled by either the fluid flow mechanism or the heat transfer mechanism.
The dissociation mode tends to transfer from a piston-like one to a non-piston-like one and the convex shape of dissociation front advance curve is inclined to change to a concave one when the dominance of fluid flow mechanism is alleviated.
For fragmentation, 2 kV acceleration voltage and CID (collision-induced dissociation) mode off was applied.
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