This is the first report of the cfr gene failing to elevate MICs of the corresponding antibiotics. Although the genetic basis for the apparent 'no resistance' phenotype remains to be determined, this finding may have implications for surveillance studies that target the cfr gene.
Space charge accumulation is the main factor in accelerating the degradation of polymeric insulation in high-voltage direct current (HVDC) cables. It is essential for the development of HVDC cables to suppress the space charge in the insulating layer. In this paper, an approach is presented to decrease carrier injection from the inner semiconductive layer to the insulating layer, using a magnetic semiconductive compound. The semiconductive shielding compound was prepared by adding strontium ferrite to a carbon black/ethylene-vinyl acetate/low-density polyethylene (LDPE) matrix. The addition of strontium ferrite led to an increase in the residual magnetic induction of the semiconductor shielding layer. Unmagnetized and magnetized semiconductive compounds were used as electrodes to test the injection of carriers into the LDPE insulation layer. When SrFe12O19 had been added, the charge injected into the LDPE by the magnetized semiconductive layer was less than with an unmagnetized semiconductive layer. When the content of SrFe12O19 was 5 wt. %, 10 wt. %, 30 wt. %, and 50 wt. % in the semiconductive compound, the charge in the LDPE was reduced by 4.2%, 8.1%, 12.5%, and 27.1%, respectively.
Since the topological structure of power distribution Internet of Things is getting more and more complicated, and the amount of new services, such as remote dynamic monitoring and two-way real-time interaction, has been increasing, it is urgent and necessary to study the clustering management technology of power distribution Internet of Things combined with its running scenarios, security requirements and dynamic access characteristics. In this paper, a clustering security management scheme of power distribution Internet of Things based on trusted blockchain is proposed. The clustering management and data communication of power distribution Internet of Things are conducted based on trusted blockchain, which can improve the security of data interaction.
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