ACID DISSOLUTION STUDIES USING BRAZILIAN SERPENTINITE ROCKS APPLIED MINERAL CARBONATION

Author(s):  
Kely Vieira ◽  
Kely Vieira ◽  
Gretta Larisa Aurora Arce Ferrufino ◽  
Ivonete Ávila ◽  
Carlos Manuel Romero Luna ◽  
...  
2015 ◽  
Author(s):  
Kely Regina Maximo Vieira ◽  
Gretta Larisa Aurora Arce Ferrufino ◽  
Ivonete Ávila ◽  
Vitor Oliveira Facio ◽  
João Andrade de Carvalho Jr. ◽  
...  

1998 ◽  
Vol 32 (2) ◽  
pp. 135-140 ◽  
Author(s):  
K. Tucker ◽  
M. Adams ◽  
L. Shaw ◽  
A.J. Smith

Minerals ◽  
2020 ◽  
Vol 10 (12) ◽  
pp. 1091
Author(s):  
Muhammad Imran Rashid ◽  
Emad Benhelal ◽  
Faezeh Farhang ◽  
Michael Stockenhuber ◽  
Eric M. Kennedy

The aim of this study was to increase feedstock availability for mineral carbonation. Acid dissolution and carbonic acid dissolution approaches were used to achieve higher Mg extractions from peridotites. Acid dissolution studies of raw dunite, heat-activated dunite, heat-transformed dunite, and twin sister dunite have not been reported in the literature. Heat-activated dunite is more reactive as compared to heat-transformed dunite, raw dunite, and twin sister dunite. The fraction of magnesium extracted from heat-activated dunite was 57% as compared to 18% from heat-transformed dunite, 14% from raw dunite, and 11% from twin sister dunite. Similarly, silicon and iron extractions were higher for heat-activated dunite compared to that of heat-transformed dunite, raw dunite, and twin sister dunite. Materials rich in forsterite (twin sister dunite and heat-transformed dunite) showed preferential Mg release and exhibited incongruent dissolution similar to that of forsterite. Heat-activated dunite (amorphous magnesium silicate rich) on the other hand behaved differently and showed congruent dissolution. Olivine did not dissolve under carbonic acid dissolution (with concurrent grinding) and acidic conditions. Under carbonic acid dissolution with concurrent grinding conditions, olivine was partially converted into nanometer sized particles (d10 = 0.08 µm) but still provided 16% Mg extraction during 4 h of dissolution.


2016 ◽  
Vol 49 (1) ◽  
pp. 13-22
Author(s):  
Jiyeon Baek ◽  
Yeonu Jo ◽  
Jeongheon Lee ◽  
Nayoon Kwon ◽  
Yeram Kim ◽  
...  

2018 ◽  
Author(s):  
Diana Ainembabazi ◽  
Nan An ◽  
Jinesh Manayil ◽  
Kare Wilson ◽  
Adam Lee ◽  
...  

<div> <p>The synthesis, characterization, and activity of Pd-doped layered double hydroxides (Pd-LDHs) for for acceptorless amine dehydrogenation is reported. These multifunctional catalysts comprise Brønsted basic and Lewis acidic surface sites that stabilize Pd species in 0, 2+, and 4+ oxidation states. Pd speciation and corresponding cataytic performance is a strong function of metal loading. Excellent activity is observed for the oxidative transamination of primary amines and acceptorless dehydrogenation of secondary amines to secondary imines using a low Pd loading (0.5 mol%), without the need for oxidants. N-heterocycles, such as indoline, 1,2,3,4-tetrahydroquinoline, and piperidine, are dehydrogenated to the corresponding aromatics with high yields. The relative yields of secondary imines are proportional to the calculated free energy of reaction, while yields for oxidative amination correlate with the electrophilicity of primary imine intermediates. Reversible amine dehydrogenation and imine hydrogenation determine the relative imine:amine selectivity. Poisoning tests evidence that Pd-LDHs operate heterogeneously, with negligible metal leaching; catalysts can be regenerated by acid dissolution and re-precipitation.</p> </div> <br>


Author(s):  
Natalia Ribeiro Galina ◽  
Gretta Larisa Aurora Arce Ferrufino ◽  
Carlos Manuel Romero Luna ◽  
Ivonete Ávila

Sign in / Sign up

Export Citation Format

Share Document