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Domingo Cantero

Researcher at University of Cádiz

Publications -  120
Citations -  4420

Domingo Cantero is an academic researcher from University of Cádiz. The author has contributed to research in topics: Anoxic waters & Fermentation. The author has an hindex of 31, co-authored 112 publications receiving 3865 citations. Previous affiliations of Domingo Cantero include University of Manchester.

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Different strategies for recovering metals from CARON process residue.

TL;DR: The results corroborate the feasibility of the systems studied for the leaching of metals from CARON process residue and these methodologies can be considered viable for the recovery of valuable metals.
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Nickel recycling through bioleaching of a Ni/Al2O3 commercial catalyst

TL;DR: In this paper, a commercial nickel-based reforming catalyst using two acidophilic bacteria (Acidithibacillus ferrooxidans and acidithiobacillus thiooxidants) under several types of bioleaching mode (one-step, two-step and spent medium-step) and catalyst pretreatment (with and without reduction).
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Kinetic characterization and modeling of a microalgae consortium isolated from landfill leachate under a high CO2 concentration in a bubble column photobioreactor

TL;DR: Good results were obtained, demonstrating the robustness of the proposed model and the assumption in the model of DIC inhibition in the ammonium and nitrate uptakes was correct, so this aspect should be considered when evaluating the kinetics with microalgae with high inlet CO2 concentrations.
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Heterologous expression of the human Phosphoenol Pyruvate Carboxykinase (hPEPCK-M) improves hydrogen and ethanol synthesis in the Escherichia coli dcuD mutant when grown in a glycerol-based medium.

TL;DR: It is hypothesized that the conversion of oxaloacetate to phosphoenolpyruvate (PEP) could be improved by a controlled expression of the human mitochondrial GTP-dependent PEP carboxykinase, and it was found that this metabolic rewiring improved the synthesis of the target products in several mutants.
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Effect of two different intermediate landfill leachates on the ammonium oxidation rate of non-adapted and adapted nitrifying biomass.

TL;DR: In this article, the impact of different intermediate landfill leachates (intermediate 1 (ILL1) and intermediate 2 (ILL2)) and synthetic medium (SM) on the nitritation rates of non-adapted and adapted biomass were evaluated and modeled.