Through studying structure, bioassay and soil degradation tri-factor relationship, potential controllable degradation of SU was firstly explored and summarized.
The fluid flow over a rotating disk is critically important due to its application in a broad spectrum of industries and engineering and scientific fields. In this article, the traditional swirling flow of Von Karman is optimized for Maxwell fluid over a porous spinning disc with a consistent suction/injection effect. Buongiorno’s model, which incorporates the effect of both thermophoresis and Brownian motion, describes the Maxwell nanofluid nature. The dimensionless system of ordinary differential equations (ODEs) has been diminished from the system of modeled equations through a proper transformation framework. Which is numerically computed with the bvp4c method and for validity purposes, the results are compared with the RK4 technique. The effect of mathematical abstractions on velocity, energy, concentration, and magnetic power is sketched and debated. It is perceived that the mass transmission significantly rises with the thermophoresis parameter, while the velocities in angular and radial directions are reducing with enlarging of the viscosity parameter. Further, the influences of thermal radiation Rd and Brownian motion parameters are particularly more valuable to enhance fluid temperature. The fluid velocity is reduced by the action of suction effects. The suction effect grips the fluid particles towards the pores of the disk, which causes the momentum boundary layer reduction.
Chlorsulfuron has been applied in
wheat fields as a recognized
herbicide worldwide, yet it was officially banned in China since 2014
for its soil persistence problem. On the basis of our previous research
that 5-dimethylamino distinctively accelerated degradation rate in
soils, a modified amino moiety (Ia-c) and monosubstituted
amino group (Id-e) were introduced onto the fifth position
of the benzene ring in sulfonylurea structures, as well as heterocyclic
amino substituents (If-g) to seek a suitable soil degradation
rate during such an in situ crop rotation system. Referring to the
biological data and ScAHAS inhibition and ScAHAS docking results, they turned out to be AHAS inhibitors
with high potent herbicidal activities. The various influence on soil
degradation rate along with crop safety indicated that different substituents
on the fifth position have exerted an apparent impact. Their united
study of structure–activity–safety–degradation
relationship has great potential to provide valuable information for
further development of eco-friendly agrochemicals.
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