A method for improving microbial fuel cell-driven microbial electrolytic cell recovery of polymetallic
A technology of microbial electrolysis cell and fuel cell, which is applied in the fields of process efficiency improvement, photographic process, instrument, etc., and can solve the problem of incomplete recovery of heavy metals in electroplating wastewater
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0022] Step 1: Building MFCs Cr 、MFCs Cu and MECs Cd ,Such as figure 1 Shown: MFCs Cr Anode chamber, MFCs Cu Anode chamber, MECs Cd Anode chamber, MFCsCr cathode chamber, MFCs Cu Cathode chamber, MECs Cd The cathode chamber is made of plexiglass, MFCs Cr 、MFCs Cu and MECs Cd The volume of the solution in the anode chamber is 15mL, and the MFCs Cr 、MFCs Cu and MECs Cd The volume of the cathode chamber solution is 13mL, separated by ion exchange membrane (CMI-7000), MFCs Cr 、MFCs Cu and MECs Cd A small 10Ω resistor is connected in series to collect and calculate the current in the circuit.
[0023] Step 2: separate the MFCs Cr and MFCs Cu Anode electrodes (carbon rods or carbon felts) and cathode electrodes (carbon rods) are placed in MFCs Cr and MFCs Cu In the anode and cathode compartments, the MECs Cd Anode electrodes (carbon rods or carbon felts) and cathode electrodes (stainless steel mesh or titanium sheets or carbon rods) are placed in MECs Cd in the ...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 