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首页> 外文期刊>Environmental Science: Water Research & Technology >Improved contaminant removal in vegetated stormwater biofilters amended with biochar
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Improved contaminant removal in vegetated stormwater biofilters amended with biochar

机译:改进了用生物炭修正的植被雨水生物滤池中的污染物去除

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The potential for carbonaceous sorbents to improve contaminant removal (particularly for trace organic contaminants, TOrCs) in stormwater biofilters was evaluated in intermittently dosed, vegetated columns simulating scaled-down treatment systems. Columns amended with biochar or granular activated carbon (GAC) were evaluated relative to performance benchmarks set by columns representing unamended treatment systems (i.e., sand filters and vegetated biofilters). Biochar amendment (6.7 wt%, 33 vol%) strongly improved TOrC removal, despite potential fouling due to the presence of an upper compost-amended layer. Biochar-amended biofilter columns maintained greater than 99% TOrC removal throughout five months of dosing with TOrC-spiked creek water (equivalent to approximately 1.3 years of runoff volume), relative to less than 50% removal of most TOrCs by unamended biofilter columns. GAC amendment (6.7 wt%, 12.5 vol%) also improved TOrC removal, though less effectively than biochar (>70% removal), because the bio-char's lower density (i.e., higher volume composition) and smaller particles improved performance. These results indicate that full-scale biochar-amended biofilters could potentially remove TOrCs effectively for several years, as treatment depths up to five times greater than the 10 cm experimental depth may be feasible for full-scale systems. Further, contaminant removal survey experiments conducted after 6 months of operation revealed that biochar amendment improved removal of total organic carbon, total nitrogen, nitrate, and total dissolved phosphorus in biofilters by greater than 60%. The findings of this study demonstrate the potential of biochar amendment to broadly improve contaminant removal in biofilters, motivating and informing the application of full-scale biochar-amended biofilters for improved water quality.
机译:在模拟按比例缩小的处理系统的间歇剂量,带植被的色谱柱中评估了含碳吸附剂改善雨水生物滤池中污染物去除的潜力(尤其是痕量有机污染物,特别是对于痕量有机污染物)。相对于代表未经修改的处理系统(即,沙滤池和植被生物滤池)的色谱柱设定的性能基准,对用生物炭或颗粒状活性炭(GAC)改性的色谱柱进行了评估。尽管由于上层堆肥改良层的存在而可能产生结垢,但生物炭改良剂(6.7 wt%,33 vol%)大大改善了TOrC去除率。经过生物炭改良的生物滤池色谱柱在使用TOrC掺加的小溪水(相当于约1.3年的径流量)的五个月内保持了超过99%的TOrC去除率,相对于未经修正的生物滤池色谱柱对大多数TOrC的去除率不到50%。尽管生物炭的密度较低(即,较高的体积组成)和较小的颗粒可改善性能,但GAC修正案(6.7 wt%,12.5体积%)也改善了TOrC去除,但效果不如生物炭(> 70%去除)。这些结果表明,经过全尺寸生物炭改性的生物滤池可能在数年内有效去除TOrC,因为对于全尺寸系统而言,处理深度最高达10厘米实验深度的五倍是可行的。此外,在运行六个月后进行的污染物去除调查实验表明,生物炭改良剂可将生物滤池中的总有机碳,总氮,硝酸盐和总溶解磷的去除提高60%以上。这项研究的结果证明了生物炭改良剂在广泛改善生物滤池中污染物去除方面的潜力,从而激发并告知全尺寸生物炭改良生物滤池在改善水质方面的应用。

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