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It was found that coir fibers with chemical modification were found to be more effective than unmodified coir fibers.
Parameters including dp, dw, lp, and surface modification were found to have a significant influence on the RIfS signal (number of Fabry-Perot fringes) and intensity of AAO.
A substantial number of genes related to cell wall modification were found to be co-regulated in three treatments, which encoded probable xyloglucan endotransglucosylase, beta-D-xylosidase or cellulose synthase.
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m6A modification was found to promote deadenylation of RNAs.
The modification is found to be sensitive to the ion dose.
The slant modification was found to significantly shorten the integral time-scales in the near-wake.
Noteworthily, nZVI surface modification was found to promote the efficient degradation of TCE.
This crystal modification was found to occur in a higher strain region compared with that of PBT fibers.
Obtaining a sufficient dispersion of the nanotubes during its modification was found to be critical to ensure such a performance of the FDH anode.
Upon cooling from the melt, recrystallization of the monoclinic α modification was found to occur in the range 123-105°C 123-105°Cny apparent prior formation of the quenched structure.
In addition to improved dispersibility, surface modification is found to add significant corresponding benefits such as improved flowability, aeratibility or fluidizability and packing densities, leading to potential cost savings in handling and storage.
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