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Resource recovery toward sustainability through nutrient removal from landfill leachate

机译:通过垃圾填埋场渗滤液中的营养去除能力恢复可持续性

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摘要

This study investigated the feasibility of integrated ammonium stripping and/or coconut shell waste-based activated carbon (CSWAC) adsorption in treating leachate samples. To valorize unused biomass for water treatment application, the adsorbent originated from coconut shell waste. To enhance its performance for target pollutants, the adsorbent was pretreated with ozone and NaOH. The effects of pH, temperature, and airflow rate on the removal of ammoniacal nitrogen (NH_3-N) and refractory pollutants were studied during stripping alone. The removal performances of refractory compounds in this study were compared to those of other treatments previously reported. To contribute new knowledge to the field of study, perspectives on nutrients removal and recovery like phosphorus and nitrogen are presented. It was found that the ammonium stripping and adsorption treatment using the ozonated CSWAC attained an almost complete removal (99%) of NH_3-N and 90% of COD with initial NH_3-N and COD concentrations of 2500 mg/L and 20,000 mg/L, respectively, at optimized conditions. With the COD of treated effluents higher than 200 mg/L, the combined treatments were not satisfactory enough to remove target refractory compounds. Therefore, further biological processes are required to complete their biodegradation to meet the effluent limit set by environmental legislation. As this work has contributed to resource recovery as the driving force of landfill management, it is important to note the investment and operational expenses, engineering applicability of the technologies, and their environmental concerns and benefits. If properly managed, nutrient recovery from waste streams offers environmental and socio-economic benefits that would improve public health and create jobs for the local community.
机译:本研究调查了整合铵剥离和/或椰壳废物基活性碳(CSWAC)吸附在治疗渗滤液样品中的可行性。为了使未使用的生物质算用于水处理应用,吸附剂来自椰子壳废料。为了提高其对目标污染物的性能,吸附剂用臭氧和NaOH预处理。仅在汽提期间研究了pH,温度和气流率对去除氨氮(NH_3-N)和耐火污染物的影响。将该研究中的耐火化合物的去除性能与先前报道的其他治疗的去除性进行了比较。向研究领域提供新的知识,提出了去除和磷和氮等营养物质去除和回收的观点。结果发现,使用臭氧化的CSWAC溶液和吸附处理率几乎完全除去(99%)NH_3-N和90%的鳕鱼,初始NH_3-N和2500mg / L和20,000mg / L的COD浓度分别在优化条件下。对于高于200mg / L的处理过的流出鳕鱼,组合的处理不足以去除靶耐火化合物。因此,需要进一步的生物过程来完成其生物降解,以满足环境立法设定的流出物限制。由于这项工作有助于资源恢复作为垃圾填埋场管理的推动力,重要的是要注意投资和运营费用,技术适用性以及其环境问题和福利。如果妥善管理,废物流的营养回收提供了环境和社会经济福利,可以改善公共卫生,为当地社区创造就业机会。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|112265.1-112265.11|共11页
  • 作者单位

    College of the Environment and Ecology Xiamen University (XMU) Xiamen 361102 Fujian Province PR China Department of Energy Environment and Climate Change School of Environment Resources and Development Asian Institute of Technology PO Box 4 Klong Luang Pathumthani 12120 Thailand;

    Research Institute for Humanity and Nature (RIHN) Kamigamo Kita-ku Kyoto 603-8047 Japan;

    Department of Energy Environment and Climate Change School of Environment Resources and Development Asian Institute of Technology PO Box 4 Klong Luang Pathumthani 12120 Thailand;

    Faculty of Environmental Earth Sciences Hokkaido University Sapporo 060-0810 Japan;

    Advanced Membrane Technology Research Centre (AMTEC) School of Chemical and Energy Engineering University Teknologi Malaysia 81310 Skudai Johor Malaysia;

    School of Electrical Engineering Guangxi University Nanning Guangxi PR China;

    Center for Environmental Studies Bandung Institute of Technology Bandung 40135 Indonesia;

    Department of Chemical Sciences Bernal Institute University of Limerick Limerick V94 T9PX Ireland;

    Institute of Research and Development Duy Tan University Da Nang 550000 Viet Nam Faculty of Environmental and Chemical Engineering Duy Tan University Da Nang 550000 Viet Nam Laboratory of Computational Modeling of Drugs South Ural State University 76 Lenin prospekt Chelyabinsk 454080 Russia;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Circular economy; Landfill leachate; Nutrient removal; Resource recovery; Zero-waste;

    机译:循环经济;垃圾填埋场渗滤液;营养去除;资源恢复;零浪费;

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