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Arsenic removal from drinking water by precipitation coprecipitation method using aluminum sulfate was investigated.
In this study, treatment of textile printing dye-bath effluent (DBE) has been performed by electro-coagulation (EC) method using aluminum (Al) electrode in a batch mode.
Polycrystalline aluminum nitride (AlN) films were prepared by laser chemical vapor deposition method using aluminum acetylacetonate and ammonia as source materials.
The SEM, TEM and charge-discharge cycling results suggest that the method using aluminum isopropoxide (AIP) as Al precursor can obtain more uniform Al2O3 coating layer and more excellent electrochemical performance.
In the pH region from 7.9 to 8.6, the use of 100 mg L−1 each of SDS and Al III) allowed nearly complete (>99%) removal of three cationic dyes that had hardly (<4%) been removed by the conventional coagulation method using aluminum hydroxide.
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Here, the boehmite sol was made from the pseudo-boehmite precursor with a mild and environment friendly feature, instead of the conventional methods using aluminum alkoxides.
Therefore, we investigated the synthesis of alumina nanofibers using a technique that combined the sol gel and electrospinning methods using aluminum isopropoxide (AIP), an organometallic compound, as the precursor and polyvinylpyrolidone (PVP) polymer solution.
Herein, flower-like γ-Al2O3 microspheres with high specific surface area, special textural structure, and abundant surface defects were prepared through a one-pot hydrothermal method by using aluminum foil as Al source.
The bare Ni NWs were grown by the electrodeposition method using anodic aluminum oxide (AAO) substrates as templates [19,20].
Vertically aligned smooth Au nanorod and porous Au nanorod arrays were prepared by the electro-deposition method using anodized aluminum oxide templates, followed by deposition of hematite onto nanoporous Au nanorods and smooth Au nanorods to synthesize core/shell like nanostructure.
Therefore, we established a method using an aluminum tower partially immersed in liquid nitrogen and a brush to isolate root hairs from Arabidopsis seedlings.
More suggestions(15)
approach using aluminum
method using alumina
processes using aluminum
methods using aluminum
method using following
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