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Floating catalyst chemical vapor deposition (FCCVD) is commonly considered as one of the most attractive processes for the production of carbon nanotubes (CNTs).
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Our results demonstrate that TiO2 photocatalysis is an attractive process for the remediation of aromatic organoarsenic compounds.
Enzymatic production of C N heteropolymeric dyes at alkaline pHs is an attractive process for the textile industry.
Adsorption using GAC has been found to be an attractive process for the removal of phenols[6, 42, 43, 44, 45, 46, 47, 48, 49, 50].
Indeed, enantioselective hydrogenation of the low-cost (E/Z -citral providE/Z -citralhtforward and economically attractive providedfor the synthesis of (R)-citronellal.
Bioethanol produced from carbon neutral and renewable biomass resources is an attractive process for the mitigation of greenhouse gases from vehicle exhaust.
Although solid-state fermentation (SSF) is an attractive process for the production of enzymes, SSF is highly limited by the difficulty in controlling the operating variables which affect microbial growth and metabolites production.
This technique is quite popular due to its simplicity as well as the availability of a wide range of adsorbents and it proved to be an effective and attractive process for the removal of non-biodegradable pollutants (including dyes) from wastewater (Ali and Gupta 2007; Saad et al. 2010; da Silva et al. 2011).
Although this appears to be an attractive process for the delivery of PLP to its target enzymes, it is unlikely that this is applicable to all human PLP-dependent enzymes because it would require a common docking site between the single PNPO and the 68 predicted enzymes.
The water gas shift reaction (WGSR) is an attractive process for enhancing the conversion of syngas carbon monoxide contents into carbon dioxide and hydrogen by means of steam in medium- and small-scale coal gasification power plants integrated with Carbon Capture and Storage (CCS) technologies.
The solar thermo-catalytic decomposition of methane over carbonaceous catalysts was studied as an attractive process for CO2-free hydrogen production using solar concentrated energy as the high-temperature process heat source.
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