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Fine laterals were removed from the coarse roots and placed in the fine fraction.
Its fine fraction (equivalent spherical diameter <2 µm) represented 90%%.
d The fine fraction consists of free euhedral crystals of alunite and gypsum.
The heavy metal concentration in the municipal solid waste fine fraction and soil samples were analyzed.
The radial density gradients were diminished for increasing fine fraction amounts only.
The axial density gradients decreased for increasing fine fraction and decreasing coarse fraction amounts.
The fine fraction (<63 μm) of all RDSs was analyzed for over 40 elements.
An increase in fine fraction from 0.53 to 0.68 triggers reductions in both the compressive and tensile strengths.
However, the use of the fine fraction means a significant loss of properties.
Moreover, H2O2 oxidation efficiency depends on the amount and morphology of fine fraction in the modified CBs.
A significant negative correlation has also been observed between morning and evening PEF and Mg2+ in the fine fraction.
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