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1.
Environ Technol ; : 1-15, 2023 Aug 29.
Article in English | MEDLINE | ID: mdl-37490626

ABSTRACT

Rainwater Electro-Galvanic Alkalization (EGA) was performed using copper and magnesium (1:1) electrode. Efficiently removal of pollutants without external energy consumption was carried out, in addition essential ions were dosed for alkalization of rainwater. The optimal system conditions were obtained using response surface methodology (RSM) by considering the following operating variables: flow rate and concentration of the supporting electrolyte (NaCl and CaCl2). Furthermore, the maximum efficiency of nitrate, ammoniacal nitrogen, colour, and turbidity removal was evaluated. The results showed that the response variables were mainly sensitive to the type of supporting electrolyte used and the flow rate. Under experimental conditions of 0.009 M (NaCl) and 20 mL min-1, the removal rate was 74.19%, 72.49%, and 81.43% for nitrates, colour, and turbidity, respectively, and the lowest concentration of ammoniacal nitrogen (0.99mgL-1) was obtained. The kinetic models for nitrate and colour were fitted to zero-order models with k=0.33mgL-1min-1 and k=0.933Pt-Co, respectively. In addition, turbidity was fitted to a first-order model (k=0.1661min-1), and ammoniacal nitrogen was fitted to a second-order model (k=0.0217Lmg-1min-1). The concentration increases of minerals such as Ca and Mg, which rises the rainwater alkalinity after treatment (pH shift from 6.1 to 8.91), was determined by inductively coupled plasma (ICP) analysis.

2.
Comput Struct Biotechnol J ; 20: 1506-1527, 2022.
Article in English | MEDLINE | ID: mdl-35422968

ABSTRACT

Phycobiliproteins (PBPs) are fluorescent proteins of various colors, including fuchsia, purple-blue and cyan, that allow the capture of light energy in auxiliary photosynthetic complexes called phycobilisomes (PBS). PBPs have several highly preserved structural and physicochemical characteristics. In the PBS context, PBPs function is capture luminous energy in the 450-650 nm range and delivers it to photosystems allowing photosynthesis take place. Besides the energy harvesting function, PBPs also have shown to have multiple biological activities, including antioxidant, antibacterial and antitumours, making them an interesting focus for different biotechnological applications in areas like biomedicine, bioenergy and scientific research. Nowadays, the main sources of PBPs are cyanobacteria and micro and macro algae from the phylum Rhodophyta. Due to the diverse biological activities of PBPs, they have attracted the attention of different industries, such as food, biomedical and cosmetics. This is why a large number of patents related to the production, extraction, purification of PBPs and their application as cosmetics, biopharmaceuticals or diagnostic applications have been generated, looking less ecological impact in the natural prairies of macroalgae and less culture time or higher productivity in cyanobacteria to satisfy the markets and applications that require high amounts of these molecules. In this review, we summarize the main structural characteristics of PBPs, their biosynthesys and biotechnological applications. We also address current trends and future perspectives of the PBPs market.

3.
Online J Rural Nurs Health Care ; 21(1): 24-48, 2021.
Article in English | MEDLINE | ID: mdl-34447290

ABSTRACT

PURPOSE: From 2000 to 2050, the Latino population in the United States (U.S.) is expected to grow by 273%. Health outcomes vary widely among Latino subgroups and health disparities more adversely affect rural residents. The commonly used "one-size-fits-all" approach assumes that the U.S. Latino population is homogeneous. SAMPLE METHOD: Rural Latinos in four study states: Arizona (AZ), California (CA), Florida (FL) and Texas (TX) were the focus of this study. This research describes changes in the Latino population in rural counties of the U.S. in two dimensions: 1) change in population by number, and 2) change in population by country of origin using data from 2000-2017. FINDINGS: The following themes emerged: 1) the overall Latino population grew in each state; 2) rural Latino populations in each state also increased but at a higher rate; 3) there is a variety of diversity in the countries of origin of rural Latinos based in each state; and 4) a considerable proportion of Latinos living in rural areas are of unknown Latino origins. CONCLUSIONS: As the largest racial or ethnic minority in rural populations and as the second largest group in the nation, Latino health has a significant influence on the U.S. healthcare system. For nurses, evidence-based strategies can be tailored to address diverse Latino subpopulations to reduce specific disparities for various ethnic populations.

4.
Article in English | MEDLINE | ID: mdl-33678136

ABSTRACT

The physicochemical treatment (PT) of food industry wastewater was investigated. In the first stage, calcium magnesium acetate (CaMgAc4) was synthesized using eggshell (biocalcium), magnesium oxide and acetic acid in a 1:1:1 stoichiometric ratio. In the synthesis process, the thermodynamic parameters (ΔH, ΔS and ΔG) indicated that the reaction was endothermic and spontaneous. The samples were characterized by infrared spectroscopy (IR), scanning electronic microscopy (SEM), X-ray diffraction (XRD) and electron X-ray dispersive spectroscopy (EDS). CaMgAc4 was used to precipitate the phosphate matter. IR analysis revealed that the main functional groups were representative of the acetate compounds and the presence of OH- groups and carbonates. In the physicochemical treatment, a response surface design was used to determine the variables that influence the process (pH, t, and concentration), and the response variable was phosphorus removal. The treatments were carried out in the wastewater industry with an initial concentration of 658 mg/L TP. The optimal conditions of the precipitation treatment were pH 12, time 12 min, and a CaMgAc4 concentration of 13.18 mg/L. These conditions allowed the total elimination (100%) of total phosphorus and phosphates, 81.43% BOD5 and 81.0% COD, 98.9% turbidity, 95.01% color, and 92% nitrogen matter.


Subject(s)
Calcium/chemistry , Egg Shell/chemistry , Food Industry , Phosphates/isolation & purification , Waste Disposal, Fluid/methods , Water Pollutants, Chemical/isolation & purification , Acetates/chemistry , Animals , Chemical Precipitation , Hydrogen-Ion Concentration , Magnesium Oxide/chemistry , Phosphates/analysis , Phosphates/chemistry , Wastewater/chemistry , Water Pollutants, Chemical/analysis , Water Pollutants, Chemical/chemistry
5.
Inorg Chem ; 46(21): 8569-76, 2007 Oct 15.
Article in English | MEDLINE | ID: mdl-17880059

ABSTRACT

The direct ion exchange of chloro(2,6-bis(N-methylbenzimidazol-2-yl)pyridine)platinum(II) ([Pt(Me(2)bzimpy)Cl]+) and chloro(2,2':6',2' '-terpyridine)platinum(II) ([Pt(tpy)Cl]+) complexes within a zirconium phosphate (ZrP) framework has been accomplished. The physical and spectroscopic properties of [Pt(Me(2)bzimpy)Cl]+ and [Pt(tpy)Cl]+ intercalated in ZrP were investigated by X-ray powder diffraction and X-ray photoelectron, infrared, absorption, and luminescence spectroscopies. In contrast to unintercalated complexes in fluid solution, which do not emit at room temperature, both intercalated materials in the solid state and in colloidal suspensions exhibit intense emissions at room temperature. A [Pt(Me(2)bzimpy)Cl]+-exchanged ZrP colloidal methanol suspension gives rise to an emission at 612 nm that originates from a lowest (3)MMLCT[dsigma*(Pt) --> pi*(tpy)] state (MMLCT = metal-metal-to-ligand charge transfer) characteristic of strong Pt...Pt interactions. A [Pt(tpy)Cl]+-exchanged ZrP colloidal aqueous suspension exhibits a strong emission band at 600 nm. The accumulated data demonstrate that at high concentrations, [Pt(Me(2)bzimpy)Cl]+ and [Pt(tpy)Cl]+ ions can serve as luminescent pillars inside the ZrP framework.


Subject(s)
Chemistry/methods , Platinum Compounds/chemistry , Platinum/analysis , Platinum/chemistry , Zirconium/analysis , Ions , Light , Methanol/chemistry , Models, Chemical , Molecular Conformation , Molecular Structure , Powders , Spectrometry, X-Ray Emission/methods , Spectrophotometry/methods , Temperature , X-Ray Diffraction , Zirconium/chemistry
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