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Soil Microbial Degradation of Vacuum Residue

机译:残留微生物对土壤微生物的降解作用

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摘要

The effect of microbial consortia on the alteration of petroleum residual structure and portions was studied, which can propose an alternative or complementary method for stringent upgrading heavy crude oil methods, which consist of heavy and complex hydrocarbons. Biological processing of petroleum heavy fractions and residua may provide an alternative or complementary process in refining heavy crudes—the dominant refinery feed in the future—with less severe process conditions and higher selectivity to upgrade heavy fractions of crude oil. The primary objective was to observe the ability of an indigenous bacterial consortium taken from a soil bellow the vacuum column contaminated with vacuum residue (VR) for several decades from the Tehran refinery distillation unit, in degradation of residua components. Enrichment with VR, as sole source of carbon and energy, is the selected biosurfactant-producing microbial consortium. The biodegradation of net VR using indigenous consortia from this specific ecosystem was studied. The considered period of biodegradation of these heavy hydrocarbons was remarkably shorter than usual studies. Bacterial growth and VR biodegradation ability of this consortium analyzed with SARA test in 20 days. Studying the inoculum size and aeration effect revealed the significance of oxygen for this consortia activity and the similarity of 7% and 5% inoculation on alteration percentage of alkane, aromatic, and asphaltene and resin in VR. Results study revealed a 30.4%, 6.9%, and 9.4% decrease in the asphaltene, aromatics, and saturated aliphatic contents of VR, respectively, in only 20 days in 30°C at 150 rpm.
机译:研究了微生物菌群对石油残留结构和部分的变化的影响,可以为由重质和复杂烃组成的重质原油方法的严格升级提供一种替代或补充方法。石油重质馏分和残渣的生物处理可能会提供一种替代或补充的方法来提炼重质原油(将来是主要的炼油厂原料),其工艺条件不太苛刻,选择性更高,可以提炼重质原油。主要目的是观察几十年来从德黑兰炼油厂蒸馏装置中被真空残渣(VR)污染的真空柱下的土壤波纹管中获得的本地细菌聚生体对残渣成分的降解能力。富含VR的碳作为唯一的碳和能量来源,是被选为生产生物表面活性剂的微生物联盟。研究了利用该特定生态系统的本地财团对净VR进行的生物降解。考虑到的这些重烃的生物降解时间明显短于常规研究。在20天内使用SARA测试分析了该财团的细菌生长和VR生物降解能力。对接种物大小和通气效果的研究表明,氧气对于这种财团活动具有重要意义,而接种量为7%和5%时,VR中烷烃,芳烃,沥青质和树脂的变化百分比具有相似性。结果研究表明,在30℃,150 rpm下仅20天,VR的沥青质,芳烃和饱和脂肪族含量分别降低了30.4%,6.9%和9.4%。

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