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We studied variation of ectoparasite load in a free ranging populations of Mehely’s horseshoe bat (Rhinolophus mehelyi) on five successive occasions in a nursery roost in western Iran. In total, 87 Rhinolophus mehelyi were captured. The patterns of abundance differed greatly among parasite species but total parasite load was markedly higher in pregnant females in spring and early summer and lower in solitary males. On average, 90% of bats were infested by Eyndhovenia sp. with a mean intensity of 13.79 individuals per bat. Penicillidia sp. and one species from Streblidae were found in 66.7% and 11.49% of bats with parasite load of 2.31 and 1.8 parasite per bat, respectively. Using ratio of forearm length to body mass as an indication of bat health the correlation coefficient between parasite load and the health indicator was 0.002 for males and 0.06 for females indicating that parasite load has no apparent impact on bat’s health.
The kinetics and thermodynamics of adsorption of disperse yellow (DY42) by bentonite and organomodified-bentonite was studied. The organo-modified bentonite was synthesized by bentonite and tetra butyl ammonium iodide (B/TBAI). The B/TBAI was characterized by FT-IR, XRD, SEM, and elemental analysis. The adsorption experiments were carried out to investigate the factors that influence dye uptake by the adsorbents, such as the contact time under agitation, adsorbent dosage, initial dye concentration, and pH. The experimental results show that the percentage of dye removal increases with the increasing the amount of sorbent. Adsorption was pH-dependent. The equilibrium data were fitted to Langmuir and Freundlich isotherms and the equilibrium adsorption was best described by the Langmuir isotherm model. The experimental data fitted very well with the pseudo-first-order kinetic model. The thermodynamic study of the adsorption process showed that the adsorption of DY42 onto B-TBAI adsorbent was carried out spontaneously and the process was endothermic in nature.
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