首页> 外文期刊>Journal of Environmental Management >Performance of high-rate constructed phytoremediation process with attached growth for domestic wastewater treatment: Effect of high TDS and Cu
【24h】

Performance of high-rate constructed phytoremediation process with attached growth for domestic wastewater treatment: Effect of high TDS and Cu

机译:高生长速率的植物生长修复工艺及其对生活污水的处理:高TDS和Cu的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Domestic wastewater treatment under specific influent conditions seriously stressed with total dissolved solids (TDS) and copper (Cu) metal was examined by a laboratory-scale model of the phytoremediation process with the attached growth system using Typha sp. As compared with conventional wetland systems, the process showed more stability and improved performance (88 ± 1.1% BOD_5, 73 ± 1.0% NH_3-N, 48 ± 2.0% PO_4-P) at high organic loading rate (314 ± 18 g BOD_5/m~3/d) either in the presence of high TDS (~2500 mg/L) or Cu metal (~30 mg/L). Typha sp. could tolerate TDS concentrations up to 2500 mg/L. Cu-contaminated sewage can cause plant morphological deformities if the metal exceeds the saturation limit of 2416 and 21,036 mg/kg Cu in the shoots and roots, respectively. A minor reduction in the TDS (21%) was observed at the highest tolerable limit, whereas 67% reduction of Cu was observed at the process effluent. The process holds a great promise for main advantages of improved biofilm formation, reduced footprint, energy savings and increased efficiency in domestic wastewater treatment even under unfavorable conditions stressed by TDS and Cu.
机译:通过使用植物修复系统的实验室规模模型和使用Typha sp。的附着生长系统,在特定进水条件下对总溶解固体(TDS)和铜(Cu)金属造成严重压力的生活废水处理进行了研究。与传统的湿地系统相比,该方法在较高的有机负荷量(314±18 g BOD_5 /)下显示了更高的稳定性和改进的性能(88±1.1%BOD_5、73±1.0%NH_3-N,48±2.0%PO_4-P)。 m〜3 / d)或高TDS(〜2500 mg / L)或Cu金属(〜30 mg / L)的存在。香蒲最高可耐受2500 mg / L的TDS浓度。如果金属在芽和根中的铜饱和浓度分别超过2416和21,036 mg / kg的铜的饱和极限,则被Cu污染的污水会导致植物形态变形。在最高容许极限下,观察到TDS的轻微降低(21%),而在工艺废水中观察到的Cu降低了67%。该工艺具有改善生物膜形成,减少占地面积,节省能源和提高家庭废水处理效率(即使在TDS和Cu不利条件下)的主要优势的巨大前景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号