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"Direct contact membrane distillation for liquid desiccant regeneration" by Jingjing Liu, Haoshan Ren et al.

Liquid desiccant cooling (LDC) systems are being widely considered as a promising alternative for energy savings and the regeneration is one of the most significant processes of the LDC systems. This paper presents a direct contact membrane distillation (DCMD) regenerator for liquid desiccants regeneration of LDC systems and fresh water production simultaneously. The novelty of this study is to use the response surface method to establish models to predict the DCMD regeneration performance with highly concentrated lithium chloride solutions based on the experimental investigation. The interactive effects of the operating parameters, i.e. initial feed concentration, feed inlet temperature, distillate inlet temperature, and feed and distillate flow rates were studied and the optimal conditions of the DCMD regenerator to maximize the feed concentration increase and transmembrane water flux were identified. The experimental results showed that stable regeneration performance and water prod ....

Direct Contact Membrane Distillation , Iquid Desiccant Regeneration , Lithium Chloride , Esponse Surface Method , நேரடி தொடர்பு சவ்வு வடித்தல் ,

Nanostructure of the Anodic and Nanomaterials Sol-Gel Based Materials Application: Advances in Surface Engineering


anodic oxidation.  As a result,
one can obtain amorphous barrier-type oxides, crystalline barrier-type oxides or amorphous nanoporous oxides.  Currently, highly-ordered nanoporous anodic aluminum oxides (AAO) are obtained with various electrolytes to form nanostructures with a range of geometrical features.  This material can serve as a template for nanofabrication of variety of nanowires, nanotubes and nanodots.  In this way, porous alumina can be fabricated electrochemically through anodic oxidation of aluminum, yielding highly ordered arrays of nano-holes several hundreds down to several tens of nanometers in size.
Sol-gel chemistry offers a flexible approach to obtain a diverse range of materials.  It allows differing chemistries to be achieved as well as the ability to produce a wide range of nano-/micro-structures.  ....

New York , United States , United Kingdom , Comunidad Autonoma De Cataluna , Nano Lett , Xavier Albort Ventura , Boca Raton , R Van Noort , University Politecnic , Laboratory Electrochemical , Properties Of Silicic , Barcelona Spain Research , Barcelona International Trade Fair , University Of Barcelona Spain , J Nanoparticle Research , Industrial Cabrera De Mar , Reactive Ion Beam Etching , Ordered Array , Geometrically Controlled Nanodots Obtained , Anodic Porous Alumina , Targeted Drug Delivery Systems , Mesoporous Silica Nanoparticles , Microchip Nano Porous Interferometric Sensor , Biosensing Applications , Mesoporous Silica Materials , Controlled Drug Delivery ,