Product

BOS 200+®

Next-generation activated carbon technology for complex petroleum sites

Target Contaminants:

LNAPL, BTEX, TPH-GRO/DRO, Fuel Oxygenates, Alcohols, Glycols, Cyclic Ethers, Lube Oils

Delivery Method:

Permeable Reactive Barrier, Plume or/and Source Area Treatment

Ideal Use Cases:

Sites with persistent LNAPL, Sites with mixed-phase/commingled plumes

How It Works

BOS 200+ is a patented in-situ remediation amendment that expands on the proven BOS 200 platform. It enhances performance at challenging petroleum-contaminated sites through advanced sorption, microbial colonization, and sustained biodegradation.

Mechanism of Action:

  • Adsorption: High-purity powdered activated carbon (AC) immediately captures hydrophobic contaminants like LNAPL and BTEX compounds, reducing aqueous-phase concentrations on contact
  • Biological Colonization: The AC particle structure allows for deep microbial inoculation and biofilm growth within and off the carbon surface—something liquid or colloidal carbon cannot replicate due to size and pore structure
  • Enhanced Biodegradation: A proprietary blend of hydrocarbon-degrading microbes, carbohydrates, amino acids, and both fast and time-release terminal electron acceptors supports immediate and long-term microbial activity
  • Long-Term Performance: The system is designed to function under both aerobic and anaerobic conditions and is largely insensitive to groundwater geochemistry (e.g. pH, ORP, salinity)

Common applications:

  • LNAPL source areas and smear zones
  • Sites with long-term rebound or MNA failure
  • High-concentration PHC plumes
  • Variable concentration plumes
  • PRB installations to intercept migrating PHC mass

Typical site types:

  • Refineries and fuel depots
  • Military installations
  • Oil and lube blending facilities
  • Airports
  • Industrial manufacturing and transport terminals
  • Coastal or riparian zones with hydrocarbon migration

Performance Results

BOS 200+ has demonstrated exceptional contaminant reduction and persistence even under complex conditions.

  • Field data confirms rapid contaminant mass/NAPL removal with minimal rebound.
  • BOS 200+® has achieved contaminant reduction goals on hundreds of sites across the globe since 2016
  • Longevity: Active performance documented for 8+ years post-injection
  • See BOS 200+® Case Studies

Product Comparison

Feature / SpecBOS 100®CAT 100BOS 200®BOS 200+®
Target ContaminantsChlorinated solvents (TCE, PCE, DCE, VC)CVOCs, DNAPL, mixed chlorinated solvent massPetroleum hydrocarbons (BTEX, TPH, LNAPL)Complex PHC sites: LNAPL, MTBE, glycols, etc.
Ideal Use CasesCVOC dissolved groundwater plumes, low-high perm zones, permeable reactive barriers (PRB)DNAPL source zones, high-mass CVOC, mixed plumesBTEX/LNAPL plumes, blend into backfill of excavationLNAPL source zones, high-mass VOC, PRBs
Treatment MechanismAdsorption + abiotic reductive dechlorination (ZVI)Adsorption + catalytic degradation + engineered bioAdsorption + aerobic biodegradationAdsorption + enhanced bio (aerobic & anaerobic)
Activated Carbon TypeGranular AC impregnated with reactive ironGranular AC impregnated with reactive ironPowdered activated carbonGranular AC impregnated with reactive iron
Biological Degradation ComponentNoYesYesYes
Delivery MethodsDirect push, trench, soil mix, packer, GeoTAPDirect push, trench, soil mix, packer, GeoTAPDirect push, trench, soil mix, packer, GeoTAPDirect push, trench, soil mix, packer, GeoTAP
Year Released2004201620022016
Projects Completed100+50+1000+200+


FAQ's

An advanced version of BOS 200® designed for tougher petroleum sites with LNAPL, complex hydrocarbon mixtures, or high-mass loading.

LNAPL, BTEX, DRO, GRO, fuel oxygenates (e.g., MTBE), alcohols, glycols, cyclic ethers, lube oils, and crude oil.

Via direct push, or soil mixing—depending on lithology and site layout. Can also be used in PRBs to cut off plume migration.

In order to handle higher hydrocarbon concentrations and/or LNAPL, BOS 200+® includes a semi-soluble electron donor, additional nutrients, and a second microbial consortium to degrade the electron donor. This combination of amendments fuses proven in situ remediation power with next-generation microbial nutrition and expanded microbial communities to provide a more robust remedial amendment for the treatment of petroleum hydrocarbons.

Yes. BOS 200+ is specifically engineered to support LNAPL degradation through sustained microbial activity within smear zones and source areas.

No. It performs under both aerobic and anaerobic conditions and tolerates a wide range of groundwater chemistry.

2 to 4+ years of sustained remediation activity depending on site conditions and contaminant mass.

Yes—AST has successfully implemented BOS 200+ at numerous complex PHC sites. Case studies are available below.

Yes. BOS 200+ is often paired with excavation, barrier walls, or monitored attenuation to manage broader site conditions.

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