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Stabilisation/solidification and bioaugmentation treatment of petroleum drill cuttings

机译:石油钻屑的稳定/固化和生物强化处理

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Petroleum drill cuttings are usually treated by techniques suitable for particular contaminant groups. The significance of this study consists in the development of a treatment technology that can simultaneously handle the hydrocarbon and metal constituents of drill cuttings. Bioaugmentation is combined with stabilisation/solidification (S/S), within S/S monoliths and in granulated S/S monoliths. Portland cement was used for S/S treatment at 30% binder dosage. Bioaugmentation treatment involved two bacterial densities of a mixed culture bio-preparation. The effects of inclusion of compost, fertiliser and activated carbon were also evaluated. After 28 days, the combined S/S and bioaugmentation treatments recorded up to 15% higher total petroleum hydrocarbon (TPH) loss than control S/S treatment without bioaugmentation. Embedding fertiliser, activated carbon and higher bacterial density within S/S monoliths resulted in the highest (99%) TPH reduction but higher concentrations of metals. The addition of compost and lower bacterial density to granulated S/S monoliths led to similar (98%) TPH degradation and lower amounts of metals. The results suggest that with better mixture optimisation, combining S/S and bioaugmentation could engender more sustainable treatment of drill cuttings. (C) 2016 Elsevier Ltd. All rights reserved.
机译:石油钻屑通常通过适用于特定污染物组的技术进行处理。这项研究的意义在于开发一种可以同时处理钻屑的碳氢化合物和金属成分的处理技术。在S / S整料中和颗粒状S / S整料中,生物强化与稳定化/固化(S / S)相结合。波特兰水泥以30%的粘结剂用量用于S / S处理。生物强化处理涉及混合培养生物制剂的两种细菌密度。还评估了堆肥,肥料和活性炭的掺入效果。 28天后,S / S和生物强化处理相结合的记录显示,总石油烃(TPH)损失比没有生物强化的对照S / S处理高多达15%。在S / S整料中嵌入肥料,活性炭和较高的细菌密度导致最高(99%)TPH降低,但金属浓度更高。向粒状S / S整体料中添加堆肥和降低细菌密度会导致相似的(98%)TPH降解和较低的金属含量。结果表明,通过更好的混合物优化,将S / S和生物增强相结合可以使钻屑得到更可持续的处理。 (C)2016 Elsevier Ltd.保留所有权利。

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