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1.
Electron. j. biotechnol ; Electron. j. biotechnol;33: 63-67, May. 2018. ilus, graf, tab
Article in English | LILACS | ID: biblio-1024839

ABSTRACT

Background: Trimethylamine (TMA) is the main responsible for the odor associated with rotting fish and other annoying odors generated in many industrial activities. Biofiltration has proved to be efficient for treating odorous gaseous emissions. The main objective of this work was to determine the removal capacity of TMA of a biotrickling filter inoculated with Aminobacter aminovorans and to evaluate the effect of H2S on its performance. Results: The maximumspecific growth rate ofA. aminovorans in a liquid culture was 0.15 h -1 , witha TMAto biomass yield of 0.10 (g g -1) and a specific consumption rate of 0.062 g·g-1·h-1 . The initial specific consumption rate of TMA was highly influenced by the presence of H2S in liquid culture at concentrations of 20 and 69 ppm in heading space oftheflasks.ABTF inoculatedwithA. aminovorans showedremoval efficiencieshigher than98%ina range ofloading rate of 0.2 to 8 g·m-3·h-1 at empty bed residence time (EBRT) of 85 and 180 s. No effect on the elimination capacity and efficiency was detected when H2S was added at 20 and 50 ppm to the inlet gaseous emission, though the fraction of A. aminovorans measured by qPCR in the biofilm decreased. Conclusions:Abiotrickling filter inoculated with A. aminovorans can remove efficiently the TMA in a gaseous stream. The elimination capacity of TMA can be negatively affected by H2S, but its effect is not notorious when it is forming part of a biofilm, due to its high specific consumption rate of TMA.


Subject(s)
Alphaproteobacteria/metabolism , Hydrogen Sulfide , Methylamines/metabolism , Deodorization/methods , Bioreactors , Filtration , Fishes
2.
Bol. latinoam. Caribe plantas med. aromát ; 13(3): 232-237, mayo 2014. ilus, tab
Article in English | LILACS | ID: lil-768849

ABSTRACT

p-Coumaric acid (p-CA) is an ubiquitous plant metabolite with antioxidant, anti-inflammatory, and anticancer properties. The present study was designed to evaluate the preventive effects of p-CA on endothelium-dependent impairment produced by high glucose (HG) (D-Glucose 25 mM) in isolated rat thoracic aorta. Aortic rings obtained from male Sprague-Dawley rats were mounted in an organ bath and pretreated for 3 h with D-Glucose 5 mM, HG and HG plus p-CA (1, 10 and 100 uM). After this period of time endothelium-dependent relaxation was tested by cumulative addition of acetylcholine (ACh) in pre-contracted rings with phenylephrine (PE) (0.1 μM). p-CA elicited a moderate endothelium-dependent vasodilatory effect (Emax= 29.28 +/- 1.89 percent, N=6; pD2= 6.075 +/- 0.184, N=6). When aortic rings were pre-incubated for 3 h with HG, Emax for ACh decreased dramatically from 87.69 +/- 2.59 percent (N=6) to 40.54 +/- 1.78 percent (N=6). The negative effect of HG was partially reverted in rings co-incubated with p-CA in a concentration-dependent manner as shown for Emax values to each p-CA concentration: 1 uM (48.57 +/- 1.82 percent), 10 uM (60.81 +/- 1.80 percent) and 100 uM (64.51 +/- 1.80 percent). The action of p-CA was associated with a significant change in Emax. No statistical difference in pD2 was observed. Our results clearly show that p-CA protect ACh-induced endothelial-dependent relaxation affected by HG in isolated rat aortic rings.


El ácido p-cumárico (p-CA) es un metabolito ubicuo en plantas, con propiedades antioxidantes, anti-inflamatoria, y anticancerígenas. El presente estudio fue diseñado para evaluar los efectos preventivos de p-CA sobre la relajación dependiente de endotelio, deteriorada por niveles altos de glucosa (HG) (D-glucosa 25 mM) en aorta torácica aislada de rata. Los anillos aórticos obtenidos de ratas macho Sprague-Dawley se montaron en un baño de órganos y fueron pre-tratados durante 3 h con D-glucosa 5 mM, HG, y HG más de p-CA (1, 10 y 100 uM). Después de este período de tiempo se evaluó la relajación dependiente de endotelio mediante la adición acumulativa de acetilcolina (ACh) en anillos pre-contraídos con fenilefrina (PE) (0,1 uM). p-CA mostró un moderado efecto vasodilatador dependiente de endotelio (Emax = 29,28 +/- 1,89 por ciento, N = 6; pD2 = 6,075 +/- 0,184, N = 6). Cuando los anillos aórticos se pre-incubaron durante 3 h con HG, la Emax para ACh se redujo drásticamente desde 87,69 +/- 2,59 por ciento (N = 6) a 40,54 +/- 1,78 por ciento (N = 6). El efecto negativo de HG se revirtió parcialmente, de manera dependiente de concentración, en los anillos co-incubados con p-CA tal como lo muestra el valor de Emax para cada concentración de p-CA: 1 u M (48,57 +/- 1,82 por ciento), 10 uM (60,81 +/- 1,80 por ciento) y 100 uM (64,51 +/- 1,80 por ciento). La acción de p-CA se asoció con un cambio significativo en la Emax. No se observó diferencia estadísticamente significativa en el pD2. Nuestros resultados muestran claramente que p-CA protege la relajación dependiente de endotelio inducida por ACh, la cual es afectada por HG en anillos aislados de aorta de rata.


Subject(s)
Animals , Rats , Aorta , Coumaric Acids/pharmacology , Endothelium, Vascular , Glucose/physiology , Acetylcholine/physiology , Rats, Sprague-Dawley
3.
Electron. j. biotechnol ; Electron. j. biotechnol;16(3): 16-16, May 2013. ilus, tab
Article in English | LILACS | ID: lil-684014

ABSTRACT

Background: Bioleaching of minerals is a process that allows the treatment of insoluble sulphides and insoluble oxides via hydrometallurgy, as opposed to the more traditional technology of pyrometallurgy. Bioleaching presents several technological, environmental and economic advantages as compared with pyrometallurgy, as well as some limitations. Results: In this work a general panorama of copper mining and biomining, the influence of the most relevant operating variables and their present and future situation in Chile are presented and discussed. Conclusions: Today, Chile plays an important role in the development and commercial application of bioleaching to copper ores. This background information allows predicting a brilliant future for this technology in Chile, as has been forecasted in the last years.


Subject(s)
Percolation , Copper , Metallurgy , Mining , Chile
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