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Potential microbial toxicity and non-target impact of different concentrations of glyphosate-containing herbicide (GCH) in a model pervious paving system

机译:模型透水摊铺系统中不同浓度的含草甘膦除草剂(GCH)的潜在微生物毒性和非目标影响

摘要

Pervious Pavement Systems are Sustainable Drainage devices that meet the three-fold SUDS functions of stormwater quantity reduction, quality improvement and amenity benefits. This paper reports on a study to determine the impact of different concentrations of glyphosate-containing herbicides on non-target microorganisms and on the pollutant retention performance of PPS. The experiment was conducted using 0.0484 m(2) test rigs based on a four-layered design. Previous studies have shown that PPS can trap up to 98.7% of applied hydrocarbons, but results of this study show that application of glyphosate-containing herbicides affected this capability as 15%, 9% and 5% of added hydrocarbons were released by high (7200 mg L(-1)), medium (720 mg L(-1)) and low (72 mg L(-1)) glyphosate-containing herbicides concentrations respectively. The concentrations of nutrients released also indicate a potential for eutrophication if these effluents were to infiltrate into aquifers or be released into surface waters. The effect of glyphosate-containing herbicides application on the bacterial and fungal communities was slightly different; fungi exhibited a "top-down" trend as doses of 7200 mg L(-1) glyphosate-containing herbicides yielded the highest fungal growth whilst those with a concentration of 720 mg L(-1) glyphosate-containing herbicides applied yielded the highest bacterial growth. In the case of protists, doses of glyphosate-containing herbicides above 72 mg L(-1) were fatal, but they survived at the lower concentration, especially the ciliates Colpoda cucullus and Colpoda steinii thus indicating potential for their use as biomarkers of herbicide-polluted environments. Data also showed that at the lowest concentration of glyphosate-containing herbicides (72 mg L(-1)), biodegradation processes may not be affected as all trophic levels required for optimum biodegradation of contaminants were present.
机译:透水路面系统是可持续排水设备,可满足减少雨水量,提高质量和改善便利设施的三重SUDS功能。本文报道了一项研究,以确定不同浓度的含草甘膦除草剂对非目标微生物的影响以及对PPS的污染物截留性能的影响。使用基于四层设计的0.0484 m(2)测试台进行了该实验。先前的研究表明,PPS最多可捕获98.7%的应用碳氢化合物,但这项研究的结果表明,含草甘膦除草剂的应用会影响该功能,因为高碳会释放15%,9%和5%的添加碳氢化合物(7200毫克L(-1)),中等(720毫克L(-1))和低(72毫克L(-1))含草甘膦的除草剂浓度。如果这些污水要渗入含水层或释放到地表水中,则释放出来的养分浓度也表明存在富营养化的可能性。含草甘膦除草剂的施用对细菌和真菌群落的影响略有不同。真菌表现出“自顶向下”趋势,因为剂量为7200 mg含草甘膦L(-1)的除草剂产生最高的真菌生长,而剂量为720 mg含草甘膦L(-1)的除草剂则产生最高的细菌生长。增长。对于原生生物,剂量超过72 mg L(-1)的含草甘膦除草剂是致命的,但它们在较低浓度下仍能存活,尤其是纤毛虫Colpoda cucullus和Collopa steinii,这表明它们有可能用作除草剂的生物标记物。污染的环境。数据还显示,在最低浓度的含草甘膦除草剂(72 mg L(-1))下,生物降解过程可能不会受到影响,因为存在污染物最佳生物降解所需的所有营养水平。

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