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Organic matter removal during pilot-scale soil aquifer treatment for domestic wastewater in the tropics

机译:热带地区生活污水中试规模含水层处理过程中的有机物去除

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摘要

The potential of enhancing water uses using soil aquifer treatment (SAT) is an interesting alternative for tropical regions, limited only by lack of knowledge on its performance in local conditions and the feasibility of adapting this technology. A SAT pilot study was conducted to analyze the phenomena associated with the transformation of organic matter (OM) from domestic wastewater. Chemically enhanced primary effluent collected at the Ca?averalejo wastewater treatment plant (Cali, Colombia) was used to feed pilot-scale SAT units at a rate of 1.25 m.d~(-1). Dissolved organic carbon (DOC) removal in a 5.0 m length and 0.1 m diameter column packed with sand was 64.4%, while a similar column packed with a Mollisol soil from Valle del Cauca region yielded 56.2%. Oxygen availability was an important factor in OM degradation, given that the sand column degraded OM aerobically and the soil column degraded OM under oxic as well as anoxic conditions. SAT acted as a reliable barrier for DOC in tropical conditions. Nevertheless, operational problems such as clogging indicated that probably Mollisol soil may not be the suitable for SAT or that this particular effluent requires further pre-treatment before SAT.
机译:对于热带地区,使用土壤含水层处理(SAT)来提高用水量的潜力是一种有趣的替代方法,其局限性在于缺乏对它在当地条件下的性能的了解以及采用该技术的可行性。进行了一项SAT试点研究,以分析与生活污水中有机物(OM)转化相关的现象。在Ca?averalejo废水处理厂(哥伦比亚卡利)中收集的化学强化初级污水用于以1.25 m.d〜(-1)的速率向中试规模的SAT装置供料。在装有沙子的5.0 m长度和0.1 m直径的色谱柱中,溶解的有机碳(DOC)去除率为64.4%,而从Valle del Cauca地区装入Mollisol土壤的类似色谱柱去除率为56.2%。考虑到在有氧和无氧条件下,沙柱都会使OM降解,而土壤柱则会使OM降解,因此氧的有效性是OM降解的重要因素。 SAT是热带条件下DOC的可靠屏障。然而,诸如堵塞之类的操作问题表明,Mollisol土壤可能不适用于SAT,或者这种特殊的废水需要在SAT之前进行进一步的预处理。

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