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Tailings storage facility under construction in a mining area.

Tailings management and storage

Geosynthetic lining for mining, TSF and closure

Tailings management describes the engineered containment, sealing and long-term storage of mineral processing waste in tailings storage facilities (TSFs). Uncontrolled leachate infiltration and structural berm failure pose severe environmental and reputational risks. Carbofol® geomembranes, Bentofix® geosynthetic clay liners (GCLs), Secutex® protection nonwovens, Secudrain® drainage composites and Secugrid® geogrids provide a proven, integrated system solution for every phase of a TSF - from base lining to closure capping.

At a glance

  • Application: Engineered containment and sealing of mineral processing waste in tailings storage facilities (TSFs) to prevent groundwater contamination and ensure structural safety.
  • Products: Carbofol®, Bentofix®, Secutex®, Secudrain®, Secugrid®
  • Subgrade: Sandy tailings, weathered rock, soft subsoil; pond depths exceeding 75 m; aggressive leachate chemistry (acid/alkaline)
  • Saving Potential: Geosynthetic composite liner up to 10 times thinner than an equivalent CCL
  • Standards: GISTM, MAC TSF Design Guidelines, ICOLD Bulletin 121, ASTM D5887, GRI GM13, BAM (Germany) approval
  • Typical Projects: Gold mine TSF, copper tailings ponds, phosphate waste storage, coal ash impoundments, TSF closure capping

Tailings storage: Proven geosynthetic solutions for sealing, reinforcement and drainage

Challenge

  • Leachate and heavy metals infiltrating groundwater from unlined or failing TSFs
  • Berm saturation, erosion and slope failure under increasing pond depth (> 75 m)
  • Geomembrane puncture on rocky subgrades and steep slope sections
  • Complex TSF geometry: downstream dams, steep rock faces, sub-sectors at varying inclinations

Solution

  • Carbofol® HDPE geomembranes as the primary polymeric barrier with proven chemical resistance
  • Secugrid® geogrids and Combigrid® composite products (geogrid/nonwoven) for perimeter berm reinforcement and slope stabilisation
  • Secutex® high-mass nonwoven geotextiles as geomembrane protection and drainage layers on all slopes
  • Bentofix® GCLs as the mineral sealing layer - self-sealing, thin and adaptable to complex geometry

Result

  • Verified low-leakage containment across active mine life and the post-closure phase
  • Stable berm structures meeting ICOLD Bulletin 121 slope stability requirements
  • Long-term mechanical integrity of the lining system - even on slopes exceeding 45°

Tailings management: Typical applications in mining operations

  • Sludge lagoons and tailings

    Tailings containment

    Secure tailings and process residues with impermeable lining systems that protect soil and groundwater.

  • Slope protection and stabilisation

    Slope and berm stabilisation

    Reinforce perimeter berms and slopes for structural stability under high tailings loads.

  • Surface drainage

    Drainage management

    Geocomposite drainage layers for controlled water management within and above the lining.

Aerial view of Bentofix® and Secutex® installation at a tailings facility.
Aerial view of Bentofix® and Secutex® installation at a tailings facility.

Engineered for durability: Robust installation on complex TSF geometry

TSF lining systems must perform across the full mine life - often exceeding 50 years. Carbofol® HDPE geomembranes are formulated with exceptional UV, stress-crack and chemical resistance. Secutex® nonwoven geotextiles provide both puncture protection for the geomembrane and friction stability on steep slopes.

Practical Advantages:

  • Carbofol® HDPE: exceptional stress-crack and chemical resistance for aggressive leachate environments
  • Double-weld installation with air-channel leak testing ensures verifiable weld integrity on every seam
  • Products supplied with Naue QA documentation, installation manuals and CQA support
  • Secudrain® drainage composites manage pore water in cover soils to prevent hydrostatic uplift

System Note: All Naue tailings products are chemically resistant and supplied with full technical documentation for regulatory compliance submissions.

Tailings management and storage - mining: Frequently asked questions

A tailings storage facility (TSF) is an engineered structure that permanently stores mineral processing waste (tailings) after valuable metals or minerals have been extracted. Tailings typically contain residual reagents, heavy metals and process water. Geosynthetics - primarily geomembranes, GCLs, geotextiles and drainage composites - form the impermeable barrier system that prevents these contaminants from reaching groundwater and surrounding soil.

The core Naue product range for TSF lining comprises: Carbofol® HDPE geomembranes (primary polymeric barrier), Bentofix® GCLs (mineral secondary barrier), Secutex® nonwoven geotextiles (protection and filtration), Secudrain® geocomposite drainage systems and Secugrid®/Combigrid® geogrids (berm and slope reinforcement). These products can be configured as single, composite or double liner systems depending on project requirements.

TSF design is governed by international guidelines, including ICOLD Bulletin 121 (Tailing Dams - Risk of Dangerous Occurrences), MAC (Mining Association of Canada) TSF Design Guidelines, ASTM D5887 (GCL permeability), and GRI GM13 (HDPE geomembrane properties). National regulations in Germany additionally require BAM approval for geosynthetics used in containment applications. Naue products carry the required certifications and approvals. At the facility level, tailings storage is increasingly expected to conform to the Global Industry Standard on Tailings Management (GISTM); Naue geosynthetic systems support the containment and closure performance objectives within a GISTM-conformant facility.

A Bentofix® GCL with a thickness of approximately 6 - 8 mm replaces a compacted clay liner (CCL) of 0.6 - 1.0 m. This reduces earthworks volumes, on-site compaction plant requirements and construction time significantly. Transport of bentonite granules to remote mine sites is substantially easier than transporting and compacting equivalent volumes of clay.

Installation on steep and rocky TSF slopes requires specialist geosynthetics installers following Naue installation manuals and a site-specific CQA (Construction Quality Assurance) plan. For slopes exceeding 45° or near-vertical rock sections, geosynthetics are anchored using cemented rock bolts or anchor trenches. Carbofol® geomembrane welds are performed by certified welders using double-weld hot-wedge equipment. Air-channel pressure testing verifies every weld seam.

Geosynthetic lining systems provide long-term environmental protection by reliably isolating contaminated tailings from surrounding ecosystems. Replacing compacted clay liners with GCLs significantly reduces raw material extraction, earthmoving and heavy machinery use in TSF construction. After closure, Naue capping systems enable vegetation re-establishment and ecological recultivation of former mine sites.

Requirements vary by jurisdiction. Internationally, ICOLD Bulletin 121 and MAC TSF Design Guidelines set the benchmark for safety and performance. In Germany, geosynthetics for containment applications require BAM approval under the German waste regulation framework. Key performance criteria include geomembrane permeability (k ≤ 10⁻¹² m/s), GCL hydraulic conductivity (k ≤ 5 x 10⁻¹¹ m/s in accordance with ASTM D5887), chemical compatibility with the specific leachate and long-term durability. Naue provides full documentation packages to support regulatory submissions.

Yes. Naue products have been deployed in numerous mining projects globally, including gold mine TSFs in the Middle East, copper tailings ponds in South America and phosphate impoundments in Europe. Reference projects include a major TSF expansion project where more than 300,000 m2 of Naue products (Bentofix®, Carbofol®, Secudrain®, Secutex®) were supplied and installed in a single application.

TSF closure involves placing a multi-layer capping system over the tailings mass to isolate contaminants over the long term. A typical Naue capping system comprises Carbofol® HDPE geomembrane as the impermeable barrier, Bentofix® GCL as the secondary mineral seal, and Secudrain® drainage geocomposite to manage infiltration in the cover soil. This system greatly reduces long-term seepage, helps prevent polluted runoff and creates a stable platform for revegetation and ecological recovery of the former mine site.

Carbofol® geomembrane seams are produced by certified welders using dual-channel hot-wedge welding machines. Every weld channel is immediately pressure-tested with compressed air - any seam failing the pressure test is repaired and retested. A complete weld log records each seam by position, welder ID, date, test result and repair history. This CQA (Construction Quality Assurance) record is submitted to the project engineer and regulatory body as evidence of compliant installation on all TSF projects.

Tailings storage liner design: Standards-compliant engineering

TSF lining systems are dimensioned in accordance with recognised international standards. Naue engineering support assists mine operators and their consultants in selecting the appropriate system configuration for their specific project conditions.

  • GISTM: Global Industry Standard on Tailings Management — governance framework for safe TSF management, closure and disclosure. Naue geosynthetic systems support the containment and closure performance objectives within a GISTM-conformant facility.
  • ICOLD Bulletin 121: Tailings dam risk assessment; lining system performance benchmarks
  • MAC TSF Design Guidelines: Mining Association of Canada - industry benchmark for TSF engineering
  • ASTM D5887: Hydraulic conductivity of GCLs; verifies k ≤ 5 x 10⁻¹¹ m/s
  • GRI GM13: HDPE geomembrane physical property requirements
  • BAM Germany: Approval for containment applications; relevant for German or EU projects
  • GRI GCL-3 / GCL-4: GCL peel and shear strength for steep slope applications

TSF system layers: How Naue geosynthetics work together

  1. Carbofol® HDPE geomembrane: primary impermeable barrier - k ≤ 10⁻¹² m/s
  2. Bentofix® GCL: mineral secondary barrier - self-sealing, thin, adaptable to complex geometry
  3. Secutex® protection geotextile: geomembrane puncture protection and frictional stability on slopes
  4. Secudrain® drainage geocomposite: controls pore water in cover soils - prevents hydrostatic uplift
  5. Secugrid®/Combigrid®: perimeter berm reinforcement - stable slope structure over full mine life

Geotechnical software

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  • Compliant with industry standards: aligns with AASHTO, and other engineering guidelines.