含油污泥阴燃自维持处置设备的修复效果

Remediation effect of a self-sustaining smoldering disposal equipment for oily sludge

  • 摘要: 含油污泥(简称油泥)是石油在开采、炼制、运输等过程中产生的典型危险废物,处置不当会给环境造成巨大破坏。相较传统的油泥处置方法,阴燃法具有节能高效的特点。基于物料阴燃原理,构建了油泥阴燃自维持处置工艺与设备,探究了青海某炼油厂落地油泥的燃料特性与阴燃反应的影响机制,以实现石油烃高效降解。结果显示:所有处理均成功点燃并阴燃完成,阴燃后的灰渣含油率为0.05%~0.28%,石油烃去除率高达97.36%~99.53%。油泥阴燃效率受到达西空气通量、石英砂掺混比和油泥含油率的影响,其中,达西空气通量从1.5 cm/s增大到5.5 cm/s,平均阴燃速率和平均峰值温度并非线性增长,而是呈现出先增加后降低的趋势,最佳达西空气通量为4.5 cm/s,此时平均阴燃速率和平均峰值温度分别为0.080 m/h和575.15 ℃;在合理的掺混范围内,较高的石英砂掺混比(2∶1)可以明显加快阴燃速率,但影响阴燃传播状态下的峰值温度;随着含油率升高,阴燃的平均峰值温度呈现升高的趋势。研究表明本油泥阴燃自维持处置设备可成功处理该炼油厂落地油泥样品,同时具备成本低廉的经济优势。但需要持续关注尾气中一氧化碳和非甲烷总烃的超标风险,可考虑升级配套可行的尾气净化系统,增加阴燃设备中的二燃室,进一步燃烧尾气中的一氧化碳和非甲烷总烃,确认尾气达标方可进行工程化阴燃技术推广。

     

    Abstract: Oily sludge is a representative hazardous waste generated during the processes of petroleum extraction, refining, and transportation. Improper disposal of this waste can lead to severe environmental pollution. Compared with the traditional methods of oily sludge disposal, the smoldering method is notably energy-efficient and highly effective. Based on the principle of material smoldering, this study developed a self-sustaining smoldering disposal process and corresponding equipment for oily sludge treatment. The fuel characteristics of oily sludge from a refinery in Qinghai, and the influencing mechanisms of smoldering reactions were investigated to achieve efficient degradation of petroleum hydrocarbons. Experimental results indicated that all treatments were successfully ignited and smoldered to completion. The oil content of the ash after smoldering was only 0.05% to 0.28%, achieving a petroleum hydrocarbon removal efficiency of 97.36% to 99.53%. The smoldering efficiency of oily sludge was influenced by factors such as Darcy air flux, quartz sand mixing ratio, and oil content. When the Darcy air flux increased from 1.5 cm/s to 5.5 cm/s, the average smoldering rate and peak temperature did not increase linearly but instead exhibited a trend of initial increase followed by a decrease. The optimal Darcy air flux was determined to be 4.5 cm/s, at which the average smoldering rate and peak temperature reached 0.08 m/h and 575.15 °C, respectively. Within a reasonable mixing range, a higher quartz sand mixing ratio (2∶1) significantly enhanced the smoldering rate, although it affected the peak temperature during the smoldering propagation phase. As the oil content increased, the average peak temperature of smoldering also rose. This study demonstrates that the oily sludge smoldering disposal equipment can successfully treat the on-site oily sludge samples from this refinery, while also having economic advantages of low cost. However, it is necessary to continuously monitor the risk of excessive carbon monoxide and non-methane total hydrocarbons in the exhaust gas. It is advisable to consider upgrading the feasible exhaust gas purification system, and adding a secondary combustion chamber in the smoldering equipment to further burn off the carbon monoxide and non-methane total hydrocarbons in the exhaust gas. Only after confirming that the exhaust gas meets the standards can the engineering application of the smoldering technology be promoted.

     

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