VALADEZ RENTERIA, ERNESTO

VALADEZ RENTERIA, ERNESTO

FÍSICA · Nivel 1

Desde 2017 es Profesor en TecNM Zacatecas Occidente

Perfil académico

Nombre ERNESTO VALADEZ RENTERIA
Área FÍSICO-MATEMÁTICAS Y CIENCIAS DE LA TIERRA
Campo FÍSICA
Disciplina OTRAS ESPECIALIDADES FÍSICAS
Especialidad OTRAS
CVU 711580
Institución
Dependencia INSTITUTO TECNOLOGICO SUPERIOR ZACATECAS OCCIDENTE
Entidad ZACATECAS
Nivel 1
Vigencia Inicio: 01/01/2025
Fin: 31/12/2029

Publicaciones ORCID

2024
A solar evaporator fabricated from corncob waste for the desalination of seawater and removal of oil/herbicides from contaminated water Chemosphere
Accelerating the desalination of seawater and elimination of cosmetic contaminants from tap water by depositing zinc copper vanadate microparticles on solar evaporators Solar Energy Materials and Solar Cells
Solar photocatalytic degradation of methylene blue dye and 4-CP herbicide by using a biodegradable fiber support decorated with Ce0.9Bi0.1O2 porous nanoparticles Inorganic Chemistry Communications
Wasted scrub pad functionalized with graphene and porous BiFeO3 microparticles for the desalination/decontamination of water by solar evaporation Solar Energy Materials and Solar Cells
2023
A novel and stretchable carbon-nanotube/Ni@TiO2:W photocatalytic composite for the complete removal of diclofenac drug from the drinking water Journal of Environmental Sciences (China)
An eco-friendly cellulose support functionalized with tin titanate nanoparticles for the fast removal of clonazepam drug from the drinking water: adsorption mechanisms Environmental Science and Pollution Research
Efficient removal of the recalcitrant metamizole contaminant from drinking water by using a CaLaCoO9 perovskite supported on recycled polyethylene Journal of Environmental Sciences (China)
Enhancing the removal of the diclofenac contaminant and accelerating the desalinization of seawater by using a biodegradable fibrous support functionalized with Sr2.7Ln0.3Fe1.4Co0.6O7-δ (Ln = La or Nd) perovskites Chemical Engineering Journal
Highly efficient adsorption of furosemide drug by using a Ce0.8Sm0.15Nd0.05O2-δ compound immobilized on massively wasted single use packets Journal of Environmental Chemical Engineering
Using NIR irradiation and magnetic bismuth ferrite microparticles to accelerate the removal of polystyrene microparticles from the drinking water Journal of Environmental Management