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Conceptual design of zero discharge and safe discharge biological wastewater treatment systems using fast-growing wetland trees

机译:利用快速生长的湿地树木实现零排放和安全排放生物废水处理系统的概念设计

摘要

Conceptual designs of two wastewater treatment systems using trees adapted to wetlands (e.g. poplars) are developed for southern Arizona's desert environment. The "zero discharge" system uses the large difference between potential evapotranspiration and precipitation to fully consume the applied wastewater. The "safe discharge" system processes more water and uses tree and soil microbial bioremediation to reduce pollutants in wastewater to tertiary treatment levels. Nutrients in the wastewater enhance the growth of the poplars and produce valuable biomass in systems more cost-effective than conventional treatment facilities. Zero discharge systems for a design population of 1000 people will require about 8.5 ha (21.4 ac) to process 1600 mm (63 in.) of wastewater annually. Safe discharge systems can handle higher hydraulic loading rates of about 2500 mm (98 in.) per year and require only 5.5 ha (13.8 ac) for 1000 people.. Both systems require a storage pond approximately 3m (10 ft.) deep and 1.5 ha (3.75 ac) surface area when irrigation is curtailed during the winter dormancy period.
机译:针对亚利桑那州南部的沙漠环境,开发了两种使用适合于湿地的树木的废水处理系统的概念设计。 “零排放”系统利用潜在的蒸散量和降水量之间的巨大差异来完全消耗所施加的废水。 “安全排放”系统处理更多的水,并利用树木和土壤微生物的生物修复技术将废水中的污染物减少到第三级处理水平。废水中的营养物促进了杨树的生长,并在系统中产生了比传统处理设备更具成本效益的有价值的生物质。设计人口为1000的零排放系统每年需要约8.5公顷(21.4 ac)来处理1600毫米(63英寸)的废水。安全的卸料系统每年可承受大约2500毫米(98英寸)的更高液压负荷,1000人仅需5.5公顷(13.8 ac)。这两种系统都需要一个约3m(10英尺)深,1.5英亩的蓄水池在冬季休眠期间减少灌溉时的公顷面积(3.75 ac)。

著录项

  • 作者

    Nelson Mark.;

  • 作者单位
  • 年度 1995
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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