• ▶ 2008-2024年被中国情报信息研究所评价中心评为“中国科技核心期刊”
  • ▶ 2019-2024年连续三届被中国科学院文献情报中心中国科学引文数据库CSCD(核心库)收录
  • ▶ 2021、2023年入编北京大学图书馆《中文核心期刊要目总览》
  • ▶ 2020-2024连续四年入选《科技期刊世界影响力指数(WJCI)报告》
孙阳军, 胡文乐, 张世旭.木质素磺酸钙改良黄土对垃圾渗滤液的过滤和防渗机理研究水资源与水工程学报[J].,2025,36(1):183-190
木质素磺酸钙改良黄土对垃圾渗滤液的过滤和防渗机理研究
Filtration and anti-seepage mechanism of calcium lignosulfonate-modified loess for landfill leachate
  
DOI:10.11705/j.issn.1672-643X.2025.01.20
中文关键词:  黄土  木质素磺酸钙  垃圾渗滤液  渗透系数  去除效率
英文关键词:loess  calcium lignosulfonate  landfill leachate  permeability coefficient  removal efficiency
基金项目:国家自然科学基金青年项目(42402291、12402430); 河南省自然科学基金项目(242300421255、242300420350)
作者单位
孙阳军1, 胡文乐2,3, 张世旭1,3 (1.陕西建工机械施工集团有限公司 陕西 西安 710032 2.洛阳理工学院 智能建造与土木工程学院 河南 洛阳 471023 3.西安建筑科技大学 土木工程学院 陕西 西安 710055) 
摘要点击次数: 98
全文下载次数: 61
中文摘要:
      垃圾渗滤液长期侵扰会导致垃圾填埋场衬垫层的防渗性能劣化,引发渗滤液泄漏,从而污染附近土体及水环境。为了改善黄土作为衬垫层材料的防渗性能,采用人工制备的垃圾渗滤液,通过渗透试验研究垃圾渗滤液对黄土渗透性能的影响规律;分析了不同掺量的木质素磺酸钙对黄土渗透性能的改良效果及其对重金属离子的吸附阻滞能力;通过Zeta电位、X射线荧光光谱(XRF)及扫描电子显微镜(SEM)等微观试验,阐明了木质素磺酸钙改良黄土对垃圾渗滤液的防渗机理及对重金属的吸附机制。研究结果表明:压实度越高,黄土的渗透系数越小;渗滤液浓度越高,黄土的渗透系数越大;随着木质素磺酸钙掺量的增加,改良黄土的渗透系数逐渐减小;随着垃圾渗滤液渗流历时的延长,Pb2+的去除效率逐渐降低并趋于稳定,改良后的黄土对Pb2+的去除效率提高了约40%;木质素磺酸钙改良黄土通过多重作用缩小了流体渗流通道,增强了对Pb2+的吸附能力。
英文摘要:
      The long-term intrusion of leachate, rich in various cations and anions, can lead to the degradation of the impermeability of landfill liners, resulting in leachate leakage that contaminates surrounding soil and water environments. In order to improve the anti-seepage performance of loess as a liner material, we conducted permeability tests on artificially prepared landfill leachate to study the impact of leachate on the permeability of loess. The study further examined the improvement effects of varying dosages of calcium lignosulfonate on the permeability of loess and its adsorption capacity for heavy metal ions. Additionally, microscopic tests including Zeta potential measurements, X-ray fluorescence spectroscopy (XRF), and scanning electron microscope (SEM) tests were conducted to elucidate the impermeability mechanism of calcium lignosulfonate-modified loess against leachate and its adsorption mechanisms for heavy metals. The results indicate that a higher compaction degree significantly reduces the permeability coefficient of loess; conversely, an increased leachate concentration elevates it. As the dosage of calcium lignosulfonate increases, the permeability coefficient of modified loess gradually decreases. Over time, the removal efficiency of Pb2+ gradually declines and stabilizes, while the modified loess demonstrates an approximately 40% improvement in Pb2+ removal efficiency. The calcium lignosulfonate-modified loess enhances Pb2+ adsorption capacity by constricting fluid flow pathways through multiple mechanisms.
查看全文  查看/发表评论  下载PDF阅读器
关闭