In Situ Chemical Reduction (ISCR)
Permanent Treatment for Chromium, TCE & Heavy Metals
Permanent chemical transformation of hexavalent chromium, TCE, PCE & uranium using zero-valent iron and reactive amendments — get a free site evaluation from IET's ISCR specialists
How In-Situ Chemical Reduction (ISCR) Works
Reactive agents such as zero-valent iron (ZVI), activated carbon, and chelating compounds are injected directly into contaminated soil and groundwater. These amendments create a reducing microenvironment that facilitates contaminant transformation.
Metals are chemically reduced to less mobile or insoluble forms (e.g., Cr(VI) to Cr(III)), while halogenated organics undergo reductive dechlorination, breaking C-Cl bonds and transforming toxic compounds into non-hazardous products.
The treatment zone maintains reducing conditions over time through natural geochemical processes and residual amendment activity, providing sustained remedial effects and long-term contaminant immobilization.
Regular groundwater sampling and geochemical analysis verify the effectiveness of the treatment, with contaminant concentration reductions and speciation changes confirming successful reduction and stabilization.
Key Advantages of ISCR
Chemical reduction creates permanent changes in contaminant speciation
Addresses both metals and halogenated organic compounds simultaneously
In-situ treatment avoids excavation and minimizes site impact
Sustained remedial benefits over extended timeframes
Target Contaminants
Metal Contaminants
Hexavalent Chromium (Cr(VI))
Reduced to immobile Cr(III)
Uranium
Reduction and immobilization of uranium species
Other Heavy Metals
Lead, arsenic, and other metal species
Organic Contaminants
Chlorinated Ethenes
TCE, PCE, DCE, and vinyl chloride
Chlorinated Ethanes
1,1,1-TCA and related compounds
Halogenated Aromatics
PCBs and other aromatic compounds
ISCR Applications by Contamination Type
Reduce Cr(VI) to immobile Cr(III)
Reductive dechlorination of TCE, PCE, and DCE
Reduction and immobilization of uranium species
Simultaneous treatment of multiple contaminant classes
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