4.7 Article

Recovery of hydrogen and removal of nitrate from water by electrocoagulation process

Journal

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
Volume 20, Issue 4, Pages 2184-2192

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-012-1028-4

Keywords

Hydrogen generation; NO3- removal; Electrocoagulation; Adsorption kinetics

Funding

  1. Indo-French Centre for the Promotion of Advanced Research (IFCPAR), New Delhi, India [3800-W1]

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The present study provides an optimization of electrocoagulation process for the recovery of hydrogen and removal of nitrate from water. In doing so, the thermodynamic, adsorption isotherm, and kinetic studies were also carried out. Aluminum alloy of size 2 dm(2) was used as anode and as cathode. To optimize the maximum removal efficiency, different parameters like effect of initial concentration, effect of temperature, pH, and effect of current density were studied. The results show that a significant amount of hydrogen can be generated by this process during the removal of nitrate from water. The energy yield calculated from the hydrogen generated is 3.3778 kWh/m(3). The results also showed that the maximum removal efficiency of 95.9 % was achieved at a current density of 0.25 A/dm(2), at a pH of 7.0. The adsorption process followed second-order kinetics model. The adsorption of NO3- preferably fitting the Langmuir adsorption isotherm suggests monolayer coverage of adsorbed molecules. Thermodynamic studies showed that adsorption was exothermic and spontaneous in nature. The energy yield of generated hydrogen was similar to 54 % of the electrical energy demand of the electrocoagulation process. With the reduction of the net energy demand, electrocoagulation may become a useful technology to treat water associated with power production. The aluminum hydroxide generated in the cell removes the nitrate present in the water and reduced it to a permissible level making the water drinkable.

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