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Widespread concerns have been raised regarding the need to develop sustainable processes for the production of fuels from renewable resources.
Mediated electrochemical oxidation (MEO) is one of the sustainable processes for organic pollutant destruction and has been employed for organic mineralization reactions by many researchers.
Within this important research field, some key aspects are identified for the future development of more efficient, environmentally friendly and sustainable processes for bioactives recovery from natural sources.
Engineered Escherichia coli and Pseudomonas putida strains are enabling the development of sustainable processes for the manufacture of 2-phenylethanol, p-hydroxycinnamic acid, p-hydroxystyrene, p-hydroxybenzoate, anthranilate, and cyclohexadiene-transdiols, among other useful chemicals.
Innovative and sustainable processes for the conversion of whole plants into fuels are developed in the cluster of excellence "Tailor-Made Fuels from Biomass" (TMFB) at RWTH Aachen University.
Sustainable processes for the conversion of whole plants into fuels are investigated in the research cluster "Tailor-Made Fuels from Biomass" at RWTH Aachen University RWTH Aachen Universityy, 2007).
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The study culminates in development of a green and sustainable process for a biofuel production.
Thereafter, a comparative study on the effect of microwave vs non-microwave instant heating reaction environment has been done to develop a sustainable process for EL synthesis.
The paper is focused on the development and techno-economic assessment of a sustainable process for the production of valuable hydrocarbons from CO2 and H2O.
Photocatalytic oxidation (PCO) over suspended solid photocatalysts (e.g., titanium dioxide) has been proposed as a sustainable process for treatment and purification of water and wastewater.
One primitive sustainable process for recovering salt from sodium-sulfate-type brine in Yuncheng salt lake had been considered one of the greatest inventions of ancient China, however, the replaced process of mass extraction of single Na2SO4 in recent years, has reduced a large amount of residual brine.
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