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Determination of Oil Content in Oily Sludge Based on Extraction and Smartphone Image Colorimetry
Enlin Feng, Xian Wu, Weijie Zou, Lihua Li
Abstract129)   HTML5)    PDF (1600KB)(65)      

The traditional method for determining the oil content of oily sludge was improved, and the extraction smartphone image colorimetry was established by combining the image colorimetry with the pretreatment method of hot solvent extraction. The effects of RGB value, different color channels, shutter time, sensitivity, white balance and other parameters on the determination of oil content were investigated. Under the premise that the light source was tungsten iodide lamp and the front camera of Samsung A8s mobile phone was used, the best test conditions were finally determined: white balance value was 2 800 K, sensitivity value was 100, shutter time was 1 / 2 000 s. The linear correlation coefficients of the method under the optimal test conditions were more than 0.99 under the optimal test conditions, and the linear range was similar to that of the spectrophotometric method, with the detection limit of 0.06% and the lower limit of 0.24%. The recoveries of 8 groups of parallel standard samples were 96%~103%, and the relative standard deviation was 2.26%, which indicated that the accuracy of this method was relatively high. Compared with the traditional method, this method is more simple and rapid, and its accuracy can meet the needs of conventional oil content measurement, which is expected to realise the rapid on?site determination of oil content of large?scale oil?containing sludge in plants.

2023, 36 (4): 13-19. DOI: 10.12422/j.issn.1006-396X.2023.04.002
Treatment of Oil Sludge by Chemical Cleaning⁃Thermal Steam Air Floatation
Cong Shen, Xian Wu, Ying Yang, Lihua Li
Abstract435)   HTML    PDF (1510KB)(87)      

A combined chemical cleaning?thermal steam air floatation process was established to treat oil sludge,and the conditions of the combined process were investigated meticulously. Meanwhile, the self?synthesized WP?1 was taken as the main cleaning agent, and the cleaning effect of WP?1 was evaluated by the solid?phase oil content upon treatment. The results reveal that the optimal conditions for the combined process include a mud?to?water ratio of 1 3, a cleaning temperature of 80 ℃, an agitation rate of 200 r/min, cleaning time of 1.5 h, holding time of 15.0 min, and thermal steam air floatation of 1.0 h. Thermal steam air floatation solves the problem of suspending and sinking oil particles with large specific gravity in the cleaning process. Under optimal conditions, the solid?phase oil content decreases to 1.2%, meeting the oil sludge treatment standards stipulated in SY/T 7301-2016. The oil removal rate is as high as 92.08% when WP?1 is combined with 0.1 g of sodium silicate, which demonstrates a high price?performance ratio and is of good application value.

2022, 35 (3): 16-22. DOI: 10.3969/j.issn.1006-396X.2022.03.003
Preparation and Photocatalytic Performance of MIL⁃53 (Fe) by Single⁃Mode Focused Microwave
Yongjuan Qi, Xiaojie Gong, Dan Zhang, Xian Wu, Lihua Li
Abstract444)   HTML    PDF (1190KB)(280)      

A single?mode focused microwave synthesis system was used to rapidly synthesize MIL?53(Fe).The effect of reaction additive hexadecyl trimethyl ammonium bromide(CTAB) on the crystal structure, morphology, and particle size of MIL?53(Fe), as well as the microwave synthesis conditions on catalytic performance of MIL?53(Fe) were investigated using 10 mg/L Rhodamine B as a target contaminant. The results show that the addition of CTAB reduces the size of MIL?53(Fe) and makes the shape more regular. When the microwave power is 75 W,the temperature is 100 ℃,the synthesis time is 1 h,n(FeCl3·6H2O)/n (CTAB)=1∶0.5,the catalyst dosage is 0.2 g/L,the degradation rate of Rhodamine B can be more than 90% in 100 minutes under the radiation of 300 W tungsten lamp. It was known from free radical capture experiments that holes and ·OH were the main active species in the photocatalytic process.

2021, 34 (5): 24-29. DOI: 10.3969/j.issn.1006-396X.2021.05.004
Preparation and Application of New Demulsifier for Dirty Oil Sludge
Li Wu, Lihua Li, Ying Yang, Cong Sheng, Xian Wu
Abstract339)   HTML    PDF (1941KB)(148)      

A demulsifier DW1 was prepared by emulsion copolymerization.The demulsifier DW1 was characterized by FT?IR,GPC,1H?NMR,13C?NMR and particle size analysis.The demulsification experiment using DW1 as demulsification system was carried out with Xinjiang sludge as the target treatment object,and the sludge before and after treatment was analyzed by sem.The results showed that the synthetic demulsifier DW1 had Mw of 13.9×105 and Mn of 8×105,molecular weight distribution index of 1.73,D50 of 26.00 μm,average particle size of 25.00 μm,non?uniform particle size distribution,and good stability of DW1.The demulsification experiment shows that the oil removal rate of DW1 on a Xinjiang oil field can reach 99.55%.

2021, 34 (4): 27-32. DOI: 10.3969/j.issn.1006-396X.2021.04.005