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Métodos Terapéuticos y Terapias MTCI
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1.
J Hazard Mater ; 468: 133761, 2024 Apr 15.
Artículo en Inglés | MEDLINE | ID: mdl-38364580

RESUMEN

Co-contaminants and complex subsurface conditions pose great challenges to site remediation. This study demonstrates the potential of electrokinetic bioremediation (EK-BIO) in treating co-contaminants of chlorinated solvents and heavy metals in low-permeability soils with elevated sulfate. EK-BIO columns were filled with field soils, and were fed by the electrolyte containing 20 mg/L trichloroethylene (TCE), 250 µM Cr(VI), 25 µM As(III), 10 mM lactate, and 10 mM sulfate. A dechlorinating consortium containing Dehalococcoides (Dhc) was injected several times during a 199-d treatment at ∼1 V/cm. Sulfate reduction, Cr/As immobilization, and complete TCE biodechlorination were observed sequentially. EK-BIO facilitated the delivery of lactate, Cr(VI)/As(III), and sulfate to the soils, creating favorable reductive conditions for contaminant removal. Supplementary batch experiments and metagenomic/transcriptomic analysis suggested that sulfate promoted the reductive immobilization of Cr(VI) by generating sulfide species, which subsequently enhanced TCE biodechlorination by alleviating Cr(VI) toxicity. The dechlorinating community displayed a high As(III) tolerance. Metagenomic binning analysis revealed the dechlorinating activity of Dhc and the potential synergistic effects from other bacteria in mitigating heavy metal toxicity. This study justified the feasibility of EK-BIO for co-contaminant treatment and provided mechanistic insights into EK-BIO treatment.


Asunto(s)
Cromo , Tricloroetileno , Biodegradación Ambiental , Sulfatos , Suelo , Óxidos de Azufre , Ácido Láctico
2.
Environ Res ; 235: 116645, 2023 10 15.
Artículo en Inglés | MEDLINE | ID: mdl-37442263

RESUMEN

Bioelectrochemical system is considered as a promising approach for enhanced bio-dechlorination. However, the mechanism of extracellular electron transfer in the dechlorinating consortium is still a controversial issue. In this study, bioelectrochemical systems were established with cathode potential settings at -0.30 V (vs. SHE) for trichloroethylene reduction. The average dechlorination rate (102.0 µM Cl·d-1) of biocathode was 1.36 times higher than that of open circuit (74.7 µM Cl·d-1). Electrochemical characterization via cyclic voltammetry illustrated that electrostimulation promoted electrochemical activity for redox reactions. Moreover, bacterial community structure analyses indicated electrical stimulation facilitated the enrichment of electroactive and dechlorinating populations on cathode. Metagenomic and quantitative polymerase chain reaction (qPCR) analyses revealed that direct electron transfer (via electrically conductive pili, multi-heme c-type cytochromes) between Axonexus and Desulfovibrio/cathode and indirect electron transfer (via riboflavin) for Dehalococcoides enhanced dechlorination process in BES. Overall, this study verifies the effectiveness of electrostimulated bio-dechlorination and provides novel insights into the mechanisms of dechlorination process enhancement in bioelectrochemical systems through electron transfer networks.


Asunto(s)
Electrones , Tricloroetileno , Oxidación-Reducción , Electricidad , Electrodos , Tricloroetileno/química , Biodegradación Ambiental
3.
Water Res ; 204: 117602, 2021 Oct 01.
Artículo en Inglés | MEDLINE | ID: mdl-34481283

RESUMEN

Selenate and sulfide are both contaminants which severely pollute water bodies. Respective bioremediation of selenate- and sulfide-contaminated wastewaters requires abundant electron donors and acceptors. Here, we present a novel concept coupling biological selenate to selenite (shortcut deselenization) and chemical sulfide-driven selenite reduction, to remove multiple pollutants simultaneously. Vial tests showed that shortcut deselenization could save at least two thirds of operation time and one third of carbon source, compared to the complete deselenization to elemental selenium. Subsequent co-removal of sulfide and selenite was optimized at reaction pH of ∼10 and reactant molar ratio of ∼4. Using a newly-designed continuous flow system, >95% removal of both selenate and sulfide was achieved by coupling shortcut deselenization to sulfide oxidation. A series of characterization tools revealed that the final collected precipitates were comprised of high-purity hexagonal selenium (97.4%, wt) and inconsiderable sulfur (2.6%, wt). Superior over selenate-reducing solutions generally producing selenium mixed with reagents or microorganisms, the selenium products generated here were highly purified thus very favorable for further recovery and reuse. Overall, this proof-of-concept study provided a promising technology not only for co-removal of multiple pollutants, but also for substantial costs saving, as well as for valuable products recovery.


Asunto(s)
Contaminantes Ambientales , Compuestos de Selenio , Selenio , Ácido Selénico , Ácido Selenioso , Sulfuros , Aguas Residuales
4.
Water Res ; 178: 115832, 2020 Jul 01.
Artículo en Inglés | MEDLINE | ID: mdl-32335368

RESUMEN

Selenium pollution has become an increasingly serious global concern. Methane-fed selenate reduction has proven to be of great interest for the bioremediation of selenate-contaminated waters even with the coexistence of nitrate and dissolved oxygen. However, it is unclear if the common concurrent sulfate anion affects selenate removal. To address this question, we first introduced selenate (SeO42-) as the sole influent electron acceptor in a CH4-fed membrane biofilm reactor (CH4-MBfR); then we added different concentrations of sulfate (SO42-). The initial selenate removal efficiency (∼90%) was decreased by 50% in the presence of 15.6 µM of sulfate and completely inhibited after loading with 171.9 µM of sulfate. 16S rRNA gene sequencing showed that the selenate-reducing bacteria decreased after the addition of sulfate. Metagenomic sequencing showed that the abundance of genes encoding molybdenum (Mo)-dependent selenate reductase reduced by >50% when exposed to high concentrations of sulfate. Furthermore, the decrease in the total genes encoding all Mo-oxidoreductases was much greater than that of the genes encoding molybdate transporters, suggesting that the inhibition of selenate reduction by sulfate was most likely via the direct competition with molybdate for the transport system, leading to a lack of available Mo for Mo-dependent selenate reductases and thus reducing their activities. This result was confirmed by a batch test wherein the supplementation of molybdate mitigated the sulfate effect. Overall, this study shed light on the underlying mechanism of sulfate inhibition on selenate reduction and laid the foundation for applying the technology to practical wastewaters.


Asunto(s)
Molibdeno , Sulfatos , Oxidorreductasas , ARN Ribosómico 16S , Ácido Selénico
5.
J Zhejiang Univ Sci B ; 14(12): 1152-61, 2013 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-24302715

RESUMEN

The study on biochar derived from plant biomass for environmental applications is attracting more and more attention. Twelve sets of biochar were obtained by treating four phytoremediation plants, Salix rosthornii Seemen, Thalia dealbata, Vetiveria zizanioides, and Phragmites sp., sequentially through pyrolysis at 500 °C in a N2 environment, and under different temperatures (500, 600, and 700 °C) in a CO2 environment. The cation exchange capacity and specific surface area of biochar varied with both plant species and pyrolysis temperature. The magnesium (Mg) content of biochar derived from T. dealbata (TC) was obviously higher than that of the other plant biochars. This biochar also had the highest sorption capacity for phosphate and ammonium. In terms of biomass yields, adsorption capacity, and energy cost, T. dealbata biochar produced at 600 °C (TC600) is the most promising sorbent for removing contaminants (N and P) from aqueous solution. Therefore, T. dealbata appears to be the best candidate for phytoremediation application as its biomass can make a good biochar for environmental cleaning.


Asunto(s)
Compuestos de Amonio/aislamiento & purificación , Carbón Orgánico/química , Fosfatos/aislamiento & purificación , Extractos Vegetales/química , Ultrafiltración/métodos , Contaminantes Químicos del Agua/aislamiento & purificación , Purificación del Agua/métodos , Adsorción , Compuestos de Amonio/química , Biodegradación Ambiental , Fosfatos/química , Soluciones/análisis , Soluciones/química , Contaminantes Químicos del Agua/química
6.
Bioresour Technol ; 101(22): 8632-8, 2010 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-20643544

RESUMEN

Transmembrane transports of four kinds of lipophilic organic chemicals (LOCs) on suspending multilamellar liposomes (SML) and Escherichia coli (E. coli) were investigated, where both anthracene and phenanthrene were accorded to the lipid-water partition law and Sudan I and III to the Langmuir isothermal adsorption. Less than half of phenanthrene is transported into E. coli, where more than 60% are located in the cytoplasm. About 60% of anthracene entered the E. coli where only 10% was released into the cytoplasm. The partition coefficients of phenanthrene and anthracene partitioning from the extracellular liquid into membrane are 502 and 1190L/kg but their inverse partition coefficients are only 0.180 and 0.018kg/L. Over 60% of Sudan I and less than 40% of Sudan III accumulated on E. coli where most of them remained on the membrane. The transmembrane impedance effect (TMIE) is proposed for evaluating the cell-transport of polar LOCs.


Asunto(s)
Membrana Celular/metabolismo , Escherichia coli/metabolismo , Lecitinas/farmacocinética , Liposomas/metabolismo , Hidrocarburos Policíclicos Aromáticos/farmacocinética , Transporte Biológico Activo/fisiología
7.
J Tradit Chin Med ; 29(2): 115-20, 2009 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-19663098

RESUMEN

OBJECTIVE: To observe the clinical therapeutic effects of Wulingsan Jiawei ([Chinese characters: see text] Supplemented Powder of Five Drugs with Poria, SPFDP) plus abdominal reinfusion of concentrated ascites after ultrafiltration (ARCAU) for intractable ascites due to cirrhosis (IAC). METHODS: 124 cases of IAC were randomly divided into two groups, a treatment group of 62 cases treated by oral administration of SPFDP plus ARCAU and a control group of 62 cases treated simply by ARCAU. Aldosterone (ALD) level in plasma, levels of total bilirubin (TBIL) and albumin (ALB) in serum, and activity of alanine aminotransferase (ALT) were determined in the two groups before and after treatment. RESULTS: After treatment ALT activity and TBIL level in the treatment group were significantly lower than those in the control group, and ALB content in the treatment group was significantly higher than that in the control group. ALD level of the treatment group significantly decreased after treatment as compared with that before treatment, while that of the control group did not decreased significantly after treatment. The treatment group was significantly superior in keeping down ascites to the control group. CONCLUSION: SPFDP plus ARCAU treatment of IAC can markedly raise the clinical therapeutic effect, reduce recurrence of ascites, and improve the liver function, which can produce a significant decrease in ALD level in plasma and a marked increase in ALB content.


Asunto(s)
Ascitis/tratamiento farmacológico , Ascitis/terapia , Extractos Vegetales/uso terapéutico , Ultrafiltración/métodos , Adulto , Femenino , Humanos , Masculino , Resultado del Tratamiento
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