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Amine El Azizi,Soundouss Maliki,Konouz Hamidallah et al. Amine El Azizi et al.
This study aims to explore the potential of natural Moroccan clay (NMC) as a cost-effective and sustainable adsorbent for removing methylene blue from aqueous solutions, addressing the global challenge of water pollution through an innovative integration of experimental and theoretical approaches.
Arzu Canmemis,Neslihan Gulcin,Ayse Nur İhvan et al. Arzu Canmemis et al.
We aimed to experimentally investigate the pathological changes associated with the application of different concentrations of methylene blue through both intratesticular and peritesticular routes....Rats were divided into seven groups and received intratesticular or peritesticular injections: control (G1), saline (G2), needle-only (G3), methylene blue 100% intratesticular (G4), methylene blue 50% intratesticular (G5), methylene blue 100% peritesticular (G6), and methylene blue 50% peritesticular...Conclusion: Intratesticular methylene blue injection, especially at high concentrations, caused significant testicular damage, including calcification, tubular atrophy, ST necrosis, and hyalinization.
Arunaprabha Andipet,Prince Wesley Vanaraj,Lokeswaran Ravi et al. Arunaprabha Andipet et al.
Additionally, both compositions were employed as photocatalysts for the dye degradation of methylene blue (MB).
Bansod Sneha Bharat,Anju R Babu Bansod Sneha Bharat
Furthermore, the photocatalytic properties of the TIRC-coated mask were determined towards methylene blue (MB) dye. The Ti-O-Ti (624 cm-1) bonds and C = C (1637 cm-1) bonds of the TIRC-coated mask were confirmed by Fourier transform infrared spectroscopy....Moreover, the TIRC-coated mask exhibited 92.20 % methylene blue dye degradation efficiency under visible light.
Yuze Wang,Jianyu Yang,Pengfei Wang et al. Yuze Wang et al.
By introducing methylene blue for enhanced phase differentiation, five distinct hydrate morphologies-block, vein, point, membrane, and shell-were identified. These morphologies were strongly influenced by multiphasic interactions involving water, gas, and solid phases.
Shraddha S Mane,Kanchan Sharma,Richa Pathak et al. Shraddha S Mane et al.
Further these samples were coated with nail varnish and soaked in methylene blue solution (1%) for a day and cleaned with distilled water.
Deval K Arora,Niladri Maiti,Carlo Gaeta et al. Deval K Arora et al.
Every sample were thermocycled and immersed for one day in methylene blue (5%) solution to dye diffusion between the gaps present among the tooth and restoration.
Derya Birhan,Derya Tekin,Burak Dikici et al. Derya Birhan et al.
In electrocatalytic (EC), photocatalytic (PC), and photoelectrocatalytic (PEC) activity experiments, PANI/Ag2S/TiO2 NT photoelectrode removed 13.775%, 37.71%, and 61.075% of methylene blue (MB) within 120 min under UV light irradiation.
Giannin Mosoarca,Cosmin Vancea,Simona Popa et al. Giannin Mosoarca et al.
The present study investigates the potential of a new lignocellulosic adsorbent material obtained from mature coltsfoot (Tussilago farfara) leaves for the removal of methylene blue from aqueous solutions....All the results show that coltsfoot (Tussilago farfara) leaves are a very cheap, environmentally friendly, and effective adsorbent for the removal of methylene blue dye from aqueous solutions.
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