نتایج جستجو برای: heterogeneous bio fenton
تعداد نتایج: 188482 فیلتر نتایج به سال:
Bio-additive manufacturing is a promising tool to fabricate porous scaffold structures for expediting the tissue regeneration processes. Unlike the most traditional bulk material objects, the microstructures of tissue and organs are mostly highly anisotropic, heterogeneous, and porous in nature. However, modelling the internal heterogeneity of tissues/organs structures in the traditional CAD en...
The Ubiquitous Bio-Information Computing (UBIC 2) project aims to disseminate protocols and software packages to facilitate the development of heterogeneous bio-information computing units that are interoperable and may run distributedly. UBIC 2 specifies biological data in XML formats and queries data using XQuery. The UBIC 2 programming library provides interfaces for integrating, retrieving,...
The Ubiquitous Bio-Information Computing (UBIC2) project aims to disseminate protocols and software packages to facilitate the development of heterogeneous bio-information computing units that are interoperable and may run distributedly. UBIC2 specifies biological data in XML formats and queries data using XQuery. The UBIC2 programming library provides interfaces for integrating, retrieving, an...
A novel iron-containing mesostructured material has been successfully tested for the heterogeneous photo-Fenton degradation of phenolic aqueous solutions using near UV-visible irradiation (higher than 313 nm) at room temperature and close to neutral pH. This catalyst is a composite material that contains crystalline hematite particles embedded into the mesostructured SBA-15 matrix in a wide dis...
Heterogeneous photo–Fenton reactions have been regarded as important technologies for the treatment of textile dyeing wastewaters. In this work, an efficient core-shell magnetic anion exchange resin (MAER) was prepared through in situ polymerization and used to remove reactive brilliant red (X-3B) a UV–Fenton system. The MAER exhibited satisfactory removal efficiency X-3B because its highly eff...
The present work is focused on the homogeneous and heterogeneous photo-catalytic degradation of Hacid, a non-biodegradable dye intermediate from dye manufacturing industries, using Advanced Oxidation Processes (AOPs) such as UV, UV/H2O2, UV/H2O2/Fe 2+ (photo-Fenton process), UV/TiO2 and UV/H2O2/TiO2. Degradation experiments were carried out to optimize the amount of catalyst, effect of Hacid co...
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