4.6 Article

An Innovative Digestion Method: Ultrasound-Assisted Electrochemical Oxidation for the Onsite Extraction of Heavy Metal Elements in Dairy Farm Slurry

期刊

MATERIALS
卷 14, 期 16, 页码 -

出版社

MDPI
DOI: 10.3390/ma14164562

关键词

biomass resource; dairy slurry; digestion efficient; heavy metals; ultrasound-assisted electrochemical oxidation

资金

  1. National Key Research and Development Program of China [2018YFD0800104]
  2. Natural Science Foundation of Tianjin, China [19JCYBJC23800]
  3. [AWS18J004]
  4. [AWS16J004]

向作者/读者索取更多资源

The study established an innovative ultrasound-assisted electrochemical oxidation (UAEO) digestion method to analyze the heavy metal (HM) contamination level of dairy slurry, showing that optimal UAEO operating parameters can significantly affect digestion efficiency. The results demonstrated high digestion efficiency for Cu and Zn with the optimal parameters, confirming the fast and convenient nature of UAEO method with promising application prospects.
Dairy farm slurry is an important biomass resource that can be used as a fertilizer and in energy utilization and chemical production. This study aimed to establish an innovative ultrasound-assisted electrochemical oxidation (UAEO) digestion method for the rapid and onsite analysis of the heavy metal (HM) contamination level of dairy slurry. The effects of UAEO operating parameters on digestion efficiency were tested based on Cu and Zn concentrations in a dairy slurry sample. The results showed that Cu and Zn digestion efficiency was (96.8 +/- 2.6) and (98.5 +/- 2.9)%, respectively, with the optimal UAEO operating parameters (digestion time: 45 min; ultrasonic power: 400 W; NaCl concentration: 10 g/L). The digestion recovery rate experiments were then operated with spiked samples to verify the digestion effect on broad-spectrum HMs. When the digestion time reached 45 min, all digestion recovery rates exceeded 90%. Meanwhile, free chlorine concentration, particle size distribution, and micromorphology were investigated to demonstrate the digestion mechanism. It was found that 414 mg/L free chorine had theoretically enough oxidative ability, and the ultrasound intervention could deal with the blocky undissolved particles attributed to its crushing capacity. The results of particle size distribution showed that the total volume and bulky particle proportion had an obvious decline. The micromorphology demonstrated that the ultrasound intervention fragmented the bulky particles, and electrochemical oxidation made irregular blocky structures form arc edge and cellular structures. The aforementioned results indicated that UAEO was a novel and efficient method. It was fast and convenient. Additionally, it ensured digestion efficiency and thus had a good application prospect.

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