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A study on the dewatering of industrial waste sludge by fry-drying technology

机译:油炸干燥技术对工业废渣脱水的研究

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摘要

In sludge treatment, drying sludge using typical technology with high water content to a water content of approximately 10% is always difficult because of adhesive characteristics of sludge. Many methods have been applied, including direct and indirect heat drying, but these approaches of reducing water content to below 40% after drying is very inefficient in energy utilization of drying sludge. In this study, fry-drying technology with a high heat transfer coefficient of approximately 500 W/m~2 C was used to dry industrial wastewater sludge. Also waste oil was used in the fry-drying process, and because the oil's boiling point is between 240 and 340 C and the specific heat is approximately 60% of that of water. In the fry-drying system, the sludge is input by molding it into a designated form after heating the waste oil at temperatures between 120 and 170 C. At these temperatures, the heated oil rapidly evaporates the water contained in the sludge, leaving the oil itself. After approximately 10 min, the water content of the sludge was less than 10%, and its heating value surpassed 5300kcal/kg. Indeed, this makes the organic sludge appropriate for use as a solid fuel. The wastewater sludge used in this study was the designated waste discharged from chemical, leather and plating plants. These samples varied in characteristics, especially with regard to heavy metal concentration. After drying the three kinds of wastewater sludge at oil temperatures 160℃ for 10 min. it was found that the water content in the sludge from the chemical, leather, and plating plants reduced from 80.0 to 5.5%, 81.6 to 1.0%. and 65.4 to 0.8%, respectively. Furthermore, the heat values of the sludge from the chemical, leather, and plating plants prior to fry-drying were 217, 264, and 428 kcal/kg, respectively. After drying, these values of sludge increased to 5317, 5983 and 6031 kcal/kg, respectively. The heavy metals detected in the sludge after drying were aluminum, lead, zinc, mercury, and cadmium. Most importantly, if the dried sludge is used as a solid fuel, these heavy metals can be collected from the dust collector after combustion.
机译:在污泥处理中,由于污泥的粘附特性,总是很难使用具有高含水量的典型技术将污泥干燥至水含量约为10%。已经应用了许多方法,包括直接和间接加热干燥,但是这些在干燥后将水含量降低至40%以下的方法在干燥污泥的能量利用方面非常低效。在这项研究中,采用具有约500 W / m〜2 C的高传热系数的油炸干燥技术来干燥工业废水污泥。在油炸干燥过程中也使用废油,因为废油的沸点在240至340℃之间,比热约为水的60%。在油炸干燥系统中,将废油在120至170℃之间加热后,通过将污泥模制成指定形式输入污泥。在这些温度下,加热的油会迅速蒸发污泥中所含的水,剩下油本身。大约10分钟后,污泥的含水量少于10%,其热值超过5300kcal / kg。实际上,这使得有机污泥适合用作固体燃料。本研究中使用的废水污泥是指从化学,皮革和电镀厂排放的指定废物。这些样品的特性各不相同,特别是在重金属浓度方面。将三种废水污泥在160℃油温下干燥10分钟。结果发现,化工厂,皮革厂和电镀厂的污泥中的水含量从80.0降低到5.5%,从81.6降低到1.0%。和65.4至0.8%。此外,炸干之前​​来自化工厂,皮革厂和电镀厂的污泥的热值分别为217、264和428 kcal / kg。干燥后,这些污泥值分别增加到5317、5983和6031 kcal / kg。干燥后的污泥中检测到的重金属为铝,铅,锌,汞和镉。最重要的是,如果将干燥的污泥用作固体燃料,则燃烧后可以从集尘器中收集这些重金属。

著录项

  • 来源
    《Journal of Hazardous Materials 》 |2009年第1期| 445-450| 共6页
  • 作者单位

    Department of Environmental Engineering. Hanbat National University, Daejeon 305-719. Republic of Korea;

    Department of Environmental Engineering. Hanbat National University, Daejeon 305-719. Republic of Korea;

    Department of Environmental Engineering. Hanbat National University, Daejeon 305-719. Republic of Korea;

    Department of Environmental Engineering. Hanbat National University, Daejeon 305-719. Republic of Korea;

    Air Pollution Control Research Center, Korea Institute of Waste Energy Research, Daejeon 305-343, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sludge; fry-drying; dewatering; water content; waste oil; drying curve;

    机译:污泥;炸干脱水含水量;废油干燥曲线;

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