In the present study, the effects of different processing parameters on rate of hydrogen, chlorine and sodium hydroxide production are experimentally studied in a newly designed chloralkali process reactor. It is a multi membrane reactor which can also be coupled with a photochemical hydrogen production process. The parameters, which are studied in the present study, include applied voltage varied from 3 V to 20 V, brine concentration varied from 150 g/L to 225 g/L, electrolyte concentration in catholyte compartment varied from 35.3 g/L to 58.8 g/L, electrode height, temperature and different anode materials. A factorial design of experiments is applied and an analysis of variance (ANOVA) is used to analyze the experimental results. Energy ...
Introduction and purpose: Today, chlorine and its compounds are the most popular elements employed f...
In present study, hydrogen production performance of chlor-alkali cell integrated into a power gener...
A zero-gap spinning disc membrane electrochemical reactor (SDMER) is presented for the intensificati...
In present study, a new reactor configuration is developed which integrates photochemical hydrogen p...
This paper develops and analyzes a new photo electrochemical reactor that uses zinc sulfide as a pho...
In the present study, the electrochemical model for a newly designed photo electrochemical hydrogen ...
Hydrogen is a green-energy carrier with a high heat of combustion. If obtained from renewable source...
Chlor-alkali is one of the most important processes in the chemical industry. It produces chlorine a...
This thesis work is the continuation and final part of a joint project between the Department of Mat...
This thesis work is the continuation and final part of a joint project between the Department of Mat...
A zero-gap spinning disc membrane electrochemical reactor (SDMER) is presented for the intensificati...
In this work, the performances of a reversible electrochemical cell for the storage of energy using ...
A zero-gap spinning disc membrane electrochemical reactor (SDMER) is presented for the intensificati...
The galvanizing industry uses the concentrated hydrochloric acid in its metal surface treatment proc...
CuCl electrolysis is considered a key process in the Cu–Cl cycle of hydrogen production where H2 gas...
Introduction and purpose: Today, chlorine and its compounds are the most popular elements employed f...
In present study, hydrogen production performance of chlor-alkali cell integrated into a power gener...
A zero-gap spinning disc membrane electrochemical reactor (SDMER) is presented for the intensificati...
In present study, a new reactor configuration is developed which integrates photochemical hydrogen p...
This paper develops and analyzes a new photo electrochemical reactor that uses zinc sulfide as a pho...
In the present study, the electrochemical model for a newly designed photo electrochemical hydrogen ...
Hydrogen is a green-energy carrier with a high heat of combustion. If obtained from renewable source...
Chlor-alkali is one of the most important processes in the chemical industry. It produces chlorine a...
This thesis work is the continuation and final part of a joint project between the Department of Mat...
This thesis work is the continuation and final part of a joint project between the Department of Mat...
A zero-gap spinning disc membrane electrochemical reactor (SDMER) is presented for the intensificati...
In this work, the performances of a reversible electrochemical cell for the storage of energy using ...
A zero-gap spinning disc membrane electrochemical reactor (SDMER) is presented for the intensificati...
The galvanizing industry uses the concentrated hydrochloric acid in its metal surface treatment proc...
CuCl electrolysis is considered a key process in the Cu–Cl cycle of hydrogen production where H2 gas...
Introduction and purpose: Today, chlorine and its compounds are the most popular elements employed f...
In present study, hydrogen production performance of chlor-alkali cell integrated into a power gener...
A zero-gap spinning disc membrane electrochemical reactor (SDMER) is presented for the intensificati...