4.6 Article

Enhanced Separation of Oil and Solids in Oily Sludge by Froth Flotation at Normal Temperature

期刊

PROCESSES
卷 9, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/pr9122163

关键词

oily sludge; froth flotation; separation; residue; high-speed shear

资金

  1. Shandong Provincial Natural Science Foundation [ZR2020MD108, ZR2020ZD19]
  2. Yellow River Delta Research Institute Innovation Research Foundation Program [118171]
  3. National Natural Science Foundation of China [51804188]
  4. Program of Shandong Provincial Natural Science Foundation [ZR2018BEE015]

向作者/读者索取更多资源

Using froth flotation to treat oily sludge, Na2SiO3 was found to be a suitable flotation reagent that reduces viscosity and increases oil recovery. Under optimized parameters, the oil content in the residue of oily sludge can be effectively reduced.
Oily sludge (OS) contains a large number of hazardous materials, and froth flotation can achieve oil recovery and non-hazardous disposal of OS simultaneously. The influence of flotation parameters on OS treatment and the flotation mechanism were studied. OS samples were taken from Shengli Oilfield in May 2017 (OSS) and May 2020 (OST), respectively. Results showed that Na2SiO3 was the suitable flotation reagent treating OSS and OST, which could reduce the viscosity between oil and solids. Increasing flotation time, impeller speed and the ratio of liquid to OS could enhance the pulp shear effect, facilitate the formation of bubble and reduce pulp viscosity, respectively. Under the optimized parameters, the oil content of OST residue could be reduced to 1.2%, and that of OSS could be reduced to 0.6% because of OSS with low heavy oil components and wide solid particle size distribution. Orthogonal experimental results showed that the impeller speed was the most significant factor of all parameters for OSS and OST, and it could produce shear force to decrease the intensity of C-H bonds and destabilize the OS. The oil content of residue could be reduced effectively in the temperature range of 24-45 degrees C under the action of high impeller speed.

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