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Contaminant Guide-Chlor

This brochure provides guidance on selecting appropriate molecular biological tools, including QuantArray®, CENSUS® qPCR, SIP, the abiotic panel, and in situ microcosms, based on the chlorinated compounds present and the chosen remedial approach.

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Contaminant Guide-Petro

This brochure provides guidance on selecting appropriate molecular biological tools, including QuantArray®, CENSUS® qPCR, SIP, and in situ microcosms, based on the petroleum hydrocarbon contaminants present and the chosen remedial approach.

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QuantArray®-BGC Brochure

This product brochure provides an overview of QuantArray®-BGC, which allows site managers to economically assess the genetic potential for a broad spectrum of biogeochemical processes. This analysis detects microbial groups and functional genes associated with biogeochemical processes, including sulfate reduction, sulfur oxidation, iron reduction, metal oxidation, nitrification, denitrification, nitrogen fixation, fermentation, acetogenesis, methanogenesis, among others.

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QuantArray®-MIC Brochure

This product brochure provides an overview of QuantArray®-MIC, which allows site managers to economically evaluate the potential for microbiologically influenced corrosion (MIC). This analysis detects microbial groups and functional genes associated with MIC as well as oilfield souring, including sulfate reducing bacteria, acid producing bacteria, methanogens, iron oxidizers, slime formers, denitrifiers, and sulfur oxidizing bacteria.

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QuantArray®-NSZD Overview

This product brochure provides an overview of QuantArray®-NSZD, which allows site managers to economically evaluate the potential for natural source zone depletion (NSZD) of light non-aqueous phase liquid (LNAPL). This analysis detects microbial groups and functional genes associated with sulfate reduction, iron reduction, denitrification, fermentation, acetogenesis, methanogenesis, biosurfactant production, and slime production.

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QuantArray®-Petro Overview

This product brochure provides an overview of QuantArray®-Petro, which allows site managers to economically evaluate the biodegradation potential of petroleum hydrocarbons, including BTEX, naphthalene and other polycyclic aromatic hydrocarbons, alkanes, and fuel oxygenates in a single analysis.

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QuantArray®-Chlor Overview

This product brochure provides an overview of QuantArray®-Chlor, which allows site managers to economically evaluate the biodegradation potential of a spectrum of chlorinated compounds. QuantArray®-Chlor simultaneously quantifies microbes responsible for reductive dechlorination (Dehalococcoides, Dehalobacter, Dehalogenimonas, Desulfitobacterium, etc.), aerobic cometabolism, and competing processes in a single analysis.

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Top Tips – Evaluating Remediation Options – Petroleum

This Top Tips bulletin explains how molecular biological tools can be used during site assessment to evaluate monitored natural attenuation (MNA), enhanced bioremediation, and in situ chemical oxidation (ISCO) at petroleum‑impacted sites. It highlights how in situ microcosms, QuantArray®‑Petro, CENSUS® qPCR, and stable isotope probing provide actionable, field‑based evidence to compare remedies and select the…

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Top Tips to Save Money with MNA

This Top Tips handout explains how monitored natural attenuation (MNA) can be a cost‑effective site management strategy at petroleum‑impacted sites when supported by multiple lines of evidence. It highlights how molecular biological tools, stable isotope probing, and in situ microcosms provide defensible proof of biodegradation and help compare MNA with enhanced remediation options to reduce…

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Top Tips – Monitored Natural Attenuation

This Top Tips bulletin explains how monitored natural attenuation (MNA) can be effectively evaluated and supported at petroleum‑impacted sites using multiple lines of evidence. It highlights how molecular biological tools such as QuantArray®‑Petro, CENSUS® qPCR, stable isotope probing, and in situ microcosms provide direct, defensible proof of biodegradation and help compare MNA with enhanced remediation…