首页> 外文期刊>The Science of the Total Environment >Year-round phytofiltration lagoon assessment using Pistia stratiotes within a pilot-plant scale biorefinery
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Year-round phytofiltration lagoon assessment using Pistia stratiotes within a pilot-plant scale biorefinery

机译:在中试规模的生物精炼厂内使用Pistia层进行全年植物滤池泻湖评估

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摘要

Phytofiltration lagoons are phytoremediation technologies suitable for tropical and sub-tropical regions requiring cost-effective and echo-friendly technologies. A biorefinery of fourth generation has been implemented at pilot plant level in Xalapa, Mexico, and the phytofiltration lagoon, being the first module for provision of treated water and plant biomass for biofuel production plays a key role. The aim of this work was to evaluate the performance of such phytofiltration lagoon with a working volume of 13,000 L for the removal of nutrients from an urban river polluted with domestic wastewater and the biomass productivity of the macrophyte Pistia stratiotes, during five different experimental periods, comprising 42 days each one. The maximum absolute growth rates (AGR, g_(dW) day~(-1)) registered for P. stratiotes during the Aug-Oct '15 and the March-Apr '16 and Apr-May '16 period were in the range of 13.51 ± 2.66 to 16.54 ± 2.02 _(gdw) day~(-1). The average biomass productivity was 5.808 g_(dw) m~(-2)day~(-1) Prtκluctivities were similar during the periods of Aug-Oct '15, Mar-Apr '16 and Apr-May '16 and significantly higher (p < 0.05) than those registered in Oct-Nov '15 and Jan-Feb '16. Removal percentages of COD and nutrients varied according to the season. COD was in the range of 47.82 ± 39.3% to 88.00 ± 15.0%. Ammonium N was in the range of 76.78 ± 21% to 98.79 ± 0.9%. Nitrates were removed in the range of 16.92 ± 64%. to 97.14 ± 4.5%. Finally, phosphates were removed very effectively, from 73.72 ± 18.5% to 92.89 ± 43%. A hydraulic retention time of 7 days was enough for the effective treatment of the water from the polluted river. It was concluded that the phytofiltration lagoon with P. stratiotes is very feasible within the biorefinery for providing biomass year-round and for treating the polluted water very effectively.
机译:植物过滤泻湖是一种植物修复技术,适用于需要经济高效且回声友好的技术的热带和亚热带地区。第四代生物精炼厂已在墨西哥哈拉帕的试点工厂实施,而植物滤池则是为生物燃料生产提供经处理的水和植物生物质的首个模块。这项工作的目的是在五个不同的实验阶段,评估工作量为13,000 L的这种植物滤池对从被生活污水污染的城市河流中去除营养物和大型植物浮游植物层的生物量生产力的性能,每期42天。 15年8月至10月以及16年3月至4月和16年4月至5月的P.阶层的最大绝对增长率(AGR,g_(dW)day〜(-1))在天(gdw)为13.51±2.66至16.54±2.02 _(-1)。平均生物量生产力为5.808 g_(dw)m〜(-2)day〜(-1)。在15年8月至10月,16年3月至4月之间以及16年4月至5月期间的Prtκ活度相似( p <0.05),比15年11月11日和16年2月2日的注册人数高。 COD和养分的去除百分比随季节而变化。 COD在47.82±39.3%到88.00±15.0%的范围内。铵态氮在76.78±21%到98.79±0.9%的范围内。硝酸盐的去除范围为16.92±64%。至97.14±4.5%。最后,磷酸盐的去除非常有效,从73.72±18.5%降至92.89±43%。 7天的水力停留时间足以有效处理污染河水。得出的结论是,在生物精炼厂内,带有P. stratates的植物过滤泻湖对于全年提供生物量和非常有效地处理污水是非常可行的。

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