Products
Sub-Surface Waste Management of Delaware Inc. (Pink Sheets: SSWM), a majority-owned subsidiary of U.S. Microbics, Inc. (Pink Sheets: BUGS), provides civil and environmental project management services that incorporate the use of unique products.
BioRaptor™.
SSWM offers the BioRaptor™ patented delivery system for
microbial remediation at the clean-up site. Bio-Raptor™ is a rugged,
mobile, soil-shredding screen system that is capable of processing up to
500 tons per hour. Soil treated with the BioRaptor™ will biodegrade
even in piles up to 2 meters thick, because of the unique blends of
aerobic, facultative anaerobic, and anaerobic microbes utilized by SSWM.
Remediline™ Microbial Blends.
SSWM’s proprietary microbial blends are 100% naturally occurring
microorganisms that have been proven to safely clean-up all types of
soil contamination including: crude oils, hydrocarbons, creosotes,
ethylene glycol, benzenes, methyl ethyl ketone, phenols, trichlorphenol,
MTBE, BTEX, and numerous other contaminants.
Remediline™ microbial blends can be customized to match the
soil type and mix of contaminants.
Microbial Application System™.
SSWM’s patented process spray-bar computer-controlled system increases
the overall efficacy of the BioRaptor™ by precisely controlling the
dispensation of the Remediline™ microbial blends into the soils being
processed. The multi-angle
spray bar and computerized control mechanism provide maximum efficiency
in treating contaminated soils onsite.
SSWM Bio-GAC™.
SSWM Bio-GAC™ treatment systems are used for the
bio-regeneration of activated carbon, commonly used in filtration
systems. SSWM Bio-GAC™ is
an onsite reactivation system for spent vapor and liquid-phase
Granulated Activated Carbon (GAC). Activated carbon becomes spent when
significant quantities of contaminants coat the granules’ surface.
SSWM Bio-GAC™ treatment systems consist of proprietary
microbial blends that are applied to eliminate contaminants and restore
the GAC onsite, thus saving time, money, transportation expenses, and
the potential release of derivative contaminants.
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