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Feasibility of nutrient recovery from industrial sludge by vermicomposting technology

机译:利用ver堆技术从工业污泥中回收养分的可行性

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摘要

Transformation of industrial sludges into vermicompost is of double interest: on the one hand, a waste is converted into value added product, and, on the other, it controls a pollutant that is a consequence of increasing industrialization. This paper reports the feasibility of utilization of vermicomposting technology for nutrient recovery from industrial sludge in laboratory scale experiment employing Eisenia fetida earthworm. A total of nine vermireactors. having different percentage of wastewater treatment plant sludge of a food industry and cow dung, were established and monitored for fertilizer quality of vermicompost and growth and fecundity of the earthworms for 3 months. The earthworms were unable to survive in 100% FIS. There was a decrease in pH, organic carbon content, organic matter, C:N ratio, and increase in ash content, EC, nitrogen, potassium and phosphorus content in all the vermireactors. Total Kjeldhal nitrogen (TKN) content increased in the range of 12.2-28.7 g kg~(-1) in different vermireactors after vermicomposting. C:N ratio was 1.59-5.24 folds lesser in final vermicomposts than initial raw substrate. The heavy metals' content in final vermicomposts was higher than initial feed mixtures. Maximum worm biomass was observed in control, i.e., 100% CD (836 mg earthworm~(-1)) and the lowest in 30% CD+ 70% FIS feed mixture (280 mg earthworm~(-1)). Cocoon production was started during 6-7th week in all feed mixture except in feed mixture no. 9. After 12 weeks maximum cocoons (57) were counted in 100% CD and minimum (2) in 30% CD + 70% FIS feed. The results indicated that food industry sludge could be converted into good quality manure by vermicomposting if mixed up to 30% with cow dung.
机译:将工业污泥转化为垃圾堆是双重利益的:一方面,废物被转化为增值产品,另一方面,它控制着由于工业化程度提高而产生的污染物。本文报告了利用E堆肥技术从工业污泥中回收埃塞俄比亚f的实验性污泥中养分的可行性。总共九个反应器。建立了一个具有不同百分比的食品工业废水处理厂污泥和牛粪的肥料,并对其monitored肥的肥料质量以及worm的生长和繁殖力进行了3个月的监测。 were无法在100%FIS中存活。所有蠕变反应器的pH值,有机碳含量,有机质,C:N比均降低,而灰分含量,EC,氮,钾和磷含量均升高。堆肥后,不同堆肥器中的凯氏总氮含量在12.2-28.7 g kg〜(-1)范围内增加。最终ver堆中的C:N比原始生底物小1.59-5.24倍。最终ver堆中的重金属含量高于最初的饲料混合物。在对照组中观察到最大的蠕虫生物量,即100%CD(836 mg earth〜(-1)),在30%CD + 70%FIS饲料混合物中最低(280 mg earth〜(-1))。在所有饲料混合物中,茧的生产开始于第6-7周,除了饲料混合物No.1中。 9. 12周后,最大茧数(57)计为100%CD,最小(2)数为30%CD + 70%FIS饲料。结果表明,如果将30%的粪便与牛粪混合,可以通过ver堆肥将食品工业污泥转化为优质粪肥。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2009年第1期|262-268|共7页
  • 作者

    Anoop Yadav; V.K. Garg;

  • 作者单位

    Department of Environmental Science and Engineering, Guru Jambheshwar University of Science and Technology, Hisar 125001. Haryana, India;

    Department of Environmental Science and Engineering, Guru Jambheshwar University of Science and Technology, Hisar 125001. Haryana, India;

  • 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

    biodegradability; vermicomposting; food industry sludge; eisenia fetida; heavy metals;

    机译:生物降解性mi邮食品工业污泥;费森重金属;

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