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Development of an integrated system for the treatment of rural domestic wastewater: emphasis on nutrient removal

机译:制定综合系统治疗农村荒水:重点纳入营养清除

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摘要

With the aim of enhancing the nutrient removal from rural domestic wastewater while reducing the cost of the treatment process, a novel, integrated treatment system consisting of a multi-stage bio-filter with drop aeration and a post positioned attached growth carbonaceous denitrifying bio-reactor was designed and developed in this study. The bio-filter was packed with 'dolochar', a sponge iron industry waste, as an adsorbent mainly for phosphate removal through a physicochemical approach. The denitrifying bio-reactor was packed with many waste organic solid substances (WOSS) as carbon sources and substrates for biomass attachment, mainly to remove nitrate in the biological denitrification process. The performance of the modular system, treating real domestic wastewater was monitored for a period of about 60 days and the average removal efficiencies during the period were as follows: phosphate, 99.48%; nitrate, 92.44%, ammonia, 96.64%, with mean final effluent concentration of 0.153, 5.5, and 1.06 mg L-1, respectively. This treatment system would allow multipurpose reuse of the final effluent. Moreover, the saturated dolochar can be used as a nutrient supply in agricultural practices and the partially degraded carbonaceous substances can also be used as an organic fertilizer after composting. Thus, the system displays immense potential for treating domestic wastewater significantly by decreasing the concentrations of nutrient and most importantly, facilitating the conversion of the waste materials into usable ones.
机译:旨在提高农村国内废水的营养消除,同时降低治疗过程的成本,一种新型,综合治疗系统,由多阶段生物过滤器组成,具有下降曝气和柱子的附加的碳质反硝化生物反应器在本研究中设计和开发。生物过滤器用“Dolochar”,一个海绵铁工业废物,作为吸附剂,主要用于通过物理化学方法去除磷酸盐。将反硝化生物反应器用许多废物有机固体物质(WOSS)作为碳源和用于生物质附着的底物,主要是在生物反硝化过程中除去硝酸盐。调节真正的国内废水的模块化系统的性能约为60天,期间的平均除去效率如下:磷酸盐,99.48%;硝酸盐,92.44%,氨,96.64%,平均最终流出浓度为0.153,5.5和1.06mg L-1。该处理系统将允许多种流出物的多用途再利用。此外,饱和的Dolochar可用作农业实践中的营养供应,并且部分降解的碳质物质也可在堆肥后用作有机肥料。因此,通过降低营养浓度和最重要的是,该系统显着地显示出巨大的潜力,并最重要的是,促进废料转化为可用的浓度。

著录项

  • 来源
    《RSC Advances》 |2016年第54期|共14页
  • 作者单位

    Indian Inst Technol Sch Infrastruct Bhubaneswar 751013 Odisha India;

    Indian Inst Technol Sch Infrastruct Bhubaneswar 751013 Odisha India;

    Indian Inst Technol Sch Infrastruct Bhubaneswar 751013 Odisha India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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