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首页> 外文期刊>Journal of Hazardous Materials >Waste-derived compost and biochar amendments for stormwater treatment in bioretention column: Co-transport of metals and colloids
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Waste-derived compost and biochar amendments for stormwater treatment in bioretention column: Co-transport of metals and colloids

机译:用于生物保留塔中雨水处理的废物衍生堆肥和生物炭改良剂:金属和胶体的共同运输

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摘要

Bioretention systems, as one of the most practical management operations for low impact development of water recovery, utilize different soil amendments to remove contaminants from stormwater. For the sake of urban sustainability, the utilization of amendments derived from waste materials has a potential to reduce waste disposal at landfill while improving the quality of stormwater discharge. This study investigated the efficiency of food waste compost and wood waste biochar for metal removal from synthetic stormwater runoff under intermittent flow and co-presence of colloids. Throughout intermittent infiltration of 84 pore volumes of stormwater, columns amended with compost and biochar removed more than 50-70% of influent metals, whereas iron-oxide coated sand was much less effective. Only a small portion of metals adsorbed on the compost (< 0.74%) was reactivated during the drainage of urban pipelines that do not flow frequently, owing to abundant oxygen-containing functional groups in compost. In comparison, co-existing kaolinite enhanced metal removal by biochar owing to the abundance of active sites, whereas co-existing humic acid facilitated mobilization via metal-humate complexation. The results suggest that both waste-derived compost and biochar show promising potential for stormwater harvesting, while biochar is expected to be more recalcitrant and desirable in field-scale bioretention systems.
机译:生物保留系统是水回收利用低影响开发中最实用的管理措施之一,它利用不同的土壤改良剂去除雨水中的污染物。为了城市的可持续发展,利用废料产生的修正物有可能减少垃圾填埋场的废物,同时提高雨水排放的质量。本研究研究了在间歇流动和胶体共存下,食物垃圾堆肥和木材废料生物炭从合成雨水径流中去除金属的效率。在84个孔隙体积的雨水的间歇性渗透过程中,用堆肥和生物炭修正的色谱柱除去了50%至70%以上的流入金属,而氧化铁涂层的砂效低得多。由于堆肥中含有大量的含氧官能团,在不经常流动的城市管道排水期间,仅一小部分吸附在堆肥上的金属(<0.74%)被重新活化。相比之下,由于存在大量的活性位点,共存的高岭石提高了生物炭对金属的去除率,而共存的腐殖酸则促进了金属-腐殖酸盐络合的动员。结果表明,废物来源的堆肥和生物炭都具有收集雨水的潜力,而生物炭有望在野外规模的生物保留系统中具有更强的抵抗性和理想性。

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