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隧道建设(中英文) ›› 2025, Vol. 45 ›› Issue (S2): 30-48.DOI: 10.3973/j.issn.2096-4498.2025.S2.003

• 综述 • 上一篇    下一篇

泥水平衡盾构泥浆处理技术与装备研究进展

黄昌富1, 2, 徐小寓1, 孙丹丹1, *, 刘中欣1, 严飞1, 焦雷1, 丁正全2   

  1. (1. 中铁十五局集团有限公司, 上海 200070; 2. 中国铁建股份有限公司, 北京 100089)
  • 出版日期:2025-12-20 发布日期:2025-12-20
  • 作者简介:黄昌富(1971—),男,河南新县人,2009年毕业于北京科技大学,岩土工程专业,博士,正高级工程师,现从事隧道与地下工程技术工作。 E-mail: hcf_crcc@163.com。 *通信作者: 孙丹丹, E-mail: sddzt15@163.com。

Research Progress of Slurry Treatment Technology and Equipment for Slurry Balance Shield

HUANG Changfu1, 2, XU Xiaoyu1, SUN Dandan1, *, LIU Zhongxin1, YAN fei1, JIAO Lei1, DING Zhengquan2#br#   

  1. (1. China Railway 15th Bureau Group Corporation Limited, Shanghai 200070, China; 2. China Railway Construction Corporation Limited, Beijing 100089, China)
  • Online:2025-12-20 Published:2025-12-20

摘要: 针对泥水平衡盾构泥浆制约掘进效率、加剧环境风险的工程现状,进行泥浆处理技术与装备研究进展的调查。提出泥水分离是典型的泥浆处理工艺,分析软土、砂层、卵石层及岩层等不同地质条件下泥水分离的处理方法与实际效果,指出增加旋流器数量、减小旋流分离粒径等方法均可提高泥水分离效率。泥水分离常用的化学试剂包括絮凝剂和固化剂,分析絮凝剂与固化剂的作用机制,指出微生物絮凝剂、微生物诱导碳酸钙技术和高分子吸水树脂等是泥浆处理药剂未来发展的重要研发方向。对泥水分离的效果评价体系进行研究,构建涵盖分离产物评价、药剂适用性、脱水效果及资源化潜力在内的泥水分离效果综合评价体系。针对当前泥浆处理面临泥浆处理设备与地层适用性差、化学药剂易造成二次环境污染、泥浆资源化利用存在局限性且经处理后的泥浆剩余量仍较为庞大等困境,提出应加强高效智能化泥浆处理装备体系与环保型药剂的研发,拓展多元化资源化利用路径,推动泥浆处理技术与装备向着高效化与智能化方向迈进。

关键词: 盾构泥浆, 泥水分离, 技术与装备, 化学药剂, 泥浆再利用

Abstract: The slurry of slurry balance shield restricts the tunneling efficiency and aggravates the environmental risk. Herein, the research progress of slurry treatment technology and equipment is investigated. Slurry separation is a typical slurry treatment process. The treatment methods and actual effects of slurry separation under different geological conditions such as soft soil, sand layer, pebble layer, and rock layer are reported. It is pointed out that increasing the number of cyclones and reducing the particle size of cyclone separation can improve the efficiency of slurry separation. The commonly used chemical reagents for mud-water separation include flocculant and curing agent. The mechanism of action of flocculant and curing agent is analyzed. It is pointed out that microbial flocculant, microbial induced calcium carbonate technology, and polymer absorbent resin are important research and development directions for the future development of slurry treatment agents. The effect evaluation system of mud-water separation is studied, and a comprehensive evaluation system of mud-water separation effect including separation product evaluation, agent applicability, dehydration effect, and resource potential is constructed. In view of the current difficulties in mud treatment, such as poor applicability of mud treatment equipment and strata, easy secondary environmental pollution caused by chemical agents, limitations in mud resource utilization, and large amount of mud remaining after treatment, it is proposed to strengthen the research and development of efficient and intelligent slurry treatment equipment system and environmentally friendly agents, expand the path of diversified resource utilization, and promote slurry treatment technology and equipment to move towards high efficiency and intelligence.

Key words: shield slurry, mud-water separation, technology and equipment, chemical agents, mud reuse