Impact of glycerin and lignosulfonate on biodegradation of high explosives in soil

Soil microcosms were constructed and monitored to evaluate the impact of substrate addition and transient aerobic and anaerobic conditions on TNT, RDX and HMX biodegradation in grenade range soils. While TNT was rapidly biodegraded under both aerobic and anaerobic conditions with and without organic...

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Veröffentlicht in:Journal of contaminant hydrology 2016-11, Vol.194, p.1-9
Hauptverfasser: Won, Jongho, Borden, Robert C.
Format: Artikel
Sprache:eng
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Zusammenfassung:Soil microcosms were constructed and monitored to evaluate the impact of substrate addition and transient aerobic and anaerobic conditions on TNT, RDX and HMX biodegradation in grenade range soils. While TNT was rapidly biodegraded under both aerobic and anaerobic conditions with and without organic substrate, substantial biodegradation of RDX, HMX, and RDX daughter products was not observed under aerobic conditions. However, RDX and HMX were significantly biodegraded under anaerobic conditions, without accumulation of TNT or RDX daughter products (2-ADNT, 4-ADNT, MNX, DNX, and TNX). In separate microcosms containing grenade range soil, glycerin and lignosulfonate addition enhanced oxygen consumption, increasing the consumption rate >200% compared to untreated soils. Mathematical model simulations indicate that oxygen consumption rates of 5 to 20g/m3/d can be achieved with reasonable amendment loading rates. These results indicate that glycerin and lignosulfonate can be potentially used to stimulate RDX and HMX biodegradation by increasing oxygen consumption rates in soil. [Display omitted] •TNT rapidly biodegraded under both aerobic and anaerobic soil conditions.•RDX and HMX only biodegraded under anaerobic conditions.•No evidence of TNT or RDX daughter product accumulation under anaerobic conditions.•Soil anaerobic conditions could be generated by adding glycerin and lignosulfonate.
ISSN:0169-7722
1873-6009
DOI:10.1016/j.jconhyd.2016.08.008