H013-0009
Experimental Investigation of Iron and Arsenic Fate and Transport in Fluctuating Reversing Flows Using Columns
Abstract:
We are building a physical model in the form of novel, programmable, reversible flow direction, 1-D column experiment. This setup will mimic flow direction reversals, corresponding hydraulic gradients, and subsequent end-member water mixing in a riverbank on the Meghna River. A series of solenoid valves and peristaltic pumps controlled by an Arduino Due are used to control the flow rate and direction from two separate reservoirs with synthetic groundwater and river water to mimic a 14-day semi-diurnal tidal cycle. Column effluent will be continually measured via Arduino compatible Atlas Scientific electrical conductivity (EC), pH, and oxidation reduction potential (ORP) probes installed into a series of fabricated flow cells, which are logged to a PC. An optical dissolved oxygen (DO) probe will also perform measurements in column effluent. By using an Arduino to automate column flow direction and magnitude changes, and to log water quality data measurements over the 14-day long experiment, human error sourced from managing the experiment can be reduced. Column effluent will also be sampled for dissolved Na+, K+, Ca2+, Mg2+, Cl-, Br-, SO42-, HCO3-, Fe, and As to quantify the timing and direction of mass fluxes and to elucidate intervals of Fe-oxy-hydroxide formation/dissolution and subsequent to As adsorption/release.