Rich growth medium promotes an increased on Mn(II) removal and manganese oxide production by Serratia marcescens strains isolates from wastewater
-
Add time:07/24/2019 Source:sciencedirect.com
This study investigated the performance of two different strains of Serratia marcescens on the manganese (II) removal and the effects of the nutrient-rich (NB medium) and nutrient-poor culture (K medium) media on this process. In the NB medium, the pigmented LG1 strain and the non-pigmented CL11 strain exhibited improved growth and higher Mn(II) tolerance (0–2000 mg L−1). In addition, improved Mn(II) removal (64.25%) and increased formation of Mn oxides were observed in this medium, especially for the LG1 isolate. EELS analysis revealed Mn inside the cell for LG1 and EDX analysis revealed Mn outside of the cell for CL11, indicating that the two strains remove Mn(II) via distinct mechanisms. The biooxidation of Mn by the CL11 strain may involve indirect mechanisms which alter the pH of the medium, whereas the LG1 strain may use a direct mechanism for the biooxidation mediated by cellular components such as intracellular proteins. These results demonstrate the biotechnological potential of the two strains. In addition, is the first time the high potential of the NB medium for Mn removal is demonstrated. This medium was found to greatly influence the Mn removal and oxide formation, especially in the case of the pigmented LG1 isolate.
We also recommend Trading Suppliers and Manufacturers of Manganese (II) phosphate, Mn 34% (cas 10236-39-2). Pls Click Website Link as below: cas 10236-39-2 suppliers
Prev:Effect of Mn doping on the low-temperature synthesis of tricalcium phosphate (TCP) polymorphs
Next:The distribution of Mn(II)chemical forms on soybean roots as related to Mn(II) toxicity) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- A novel catalase mimicking nanocomposite of Mn(II)-poly-L-histidine-carboxylated multi walled carbon nanotubes and the application to hydrogen peroxide sensing08/01/2019
- Manganese alters expression of proteins involved in the oxidative stress of Meyerozyma guilliermondii07/31/2019
- Simultaneous nutrients (N,P) removal by using a hybrid inorganic sorbent impregnated with hydrated manganese oxide07/30/2019
- Tumor acidity-activatable manganese phosphate nanoplatform for amplification of photodynamic cancer therapy and magnetic resonance imaging07/29/2019
- The behavior of phosphate adsorption and its reactions on the surfaces of Fe–Mn oxide adsorbent07/28/2019
- Comparative study on the oxidation of N,N-diethyl-3-methyl benzoyl amide by Mn(III) and peroxymonosulfate/Co(II): Selective and nonselective oxidation07/27/2019
- High-efficient synergistic extraction of Co(II) and Mn(II) from wastewater via novel microemulsion and annular centrifugal extractor07/26/2019
- The distribution of Mn(II)chemical forms on soybean roots as related to Mn(II) toxicity07/25/2019
- Effect of Mn doping on the low-temperature synthesis of tricalcium phosphate (TCP) polymorphs07/23/2019
-
Health and Chemical more >


