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The buffer materials studied here appear not able to reduce microbial activity sufficiently to the point of being insignificant with respect to possible consequences in a DGR.
The particulate quasi-brittle materials studied here consist of stiff elastic particles, and a softer matrix and interfacial transition zones between matrix and particles exhibiting nonlinear material responses.
Table 1 shows the yield of carbon secondary ions (in this case C2 −) for each of the five materials studied here along with the yield for PPRG #215-1.
Ammonium decavanadate decomposes to V2O5 during treatment in air at temperatures above 773 K. Calcination of the materials studied here will most likely result in formation of the dehydrated species as described above.
Note that in the case of silica gels, the value of Δw can be much smaller up to Δw ≈ 0.01 calculated using simple cylindrical pore model due to quite cylindrical shape of pores [9] in contrast to materials studied here (Fig. 2).
For all materials studied here, the reaction rate had virtually plateaued after about 20 min of reaction, indicating that minimal further digestion had occurred.
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These variations between studies may be attributable to the young age of the material studied here, which primarily shows longitudinal variation within the juvenile core, rather than variation over mature stems.
The material studied here originates from the productive localities of Winterswijk, The Netherlands, and Freyburg, on the River Unstrut, Saxony, Germany.
The biological material studied here was used only for standard diagnostic procedures following physicians' prescriptions (no specific sampling, no modification of the sampling protocol).
Similarly, in the material studied here distinct Southern and Northern alpha-gliadin expression profiles are observed using profiling of an alpha-gliadin RNA-amplicon by 454 sequencing.
This polymorphism rate is slightly lower than that obtained in other species where the MITE procedure has also been tested, probably because of an inherent lower diversity in the laboratory material studied here.
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