Isometric technical drawing of an electrical panel with multiple compartments and wiring connections.

ADVANCED TECHNOLOGIES FOR THE FUTURE OF CRITICAL MINERALS

Pax Silica Pilipinas Inc. explores emerging technologies for cleaner, more selective and efficient recovery of critical minerals and strategic materials—from biotechnology to advanced thermal and molecular separation systems.

GREEN MINERAL RECOVERY

Four pathways advancing the future of mineral recovery.

BIORECOVERY

BIOMINING

Biological processes can help recover valuable minerals from suitable low-grade ores, tailings, and secondary resources.

SELECTIVE RECOVERY

SELECTIVE LEACHING

Selective leaching can target valuable minerals while reducing unnecessary chemical use and processing intensity.

PRECISION SEPARATION

LanM SEPARATION

Lanmodulin-based systems may enable selective capture and separation of rare-earth elements, subject to technical validation.

MODULAR DEPLOYMENT

MODULAR PROCESSING

Modular skid-mounted systems can integrate recovery, separation, purification, water recycling, and process control for pilot development.

INTEGRATED RECOVERY PLATFORM

Integrated technologies for next-generation mineral recovery.

Modular systems engineered for selective recovery and advanced separation.

Pax Silica Pilipinas Inc. envisions modular processing platforms that integrate biomining, selective recovery, advanced separation, water recycling, and process control for pilot-scale development.

PLATFORM
MODULAR RECOVERY SYSTEM
DEVELOPMENT STAGE
PILOT-SCALE DEVELOPMENT
DEPLOYMENT MODEL
MODULAR • SKID-MOUNTED • SCALABLE
Isometric wireframe technical drawing of an open industrial equipment cabinet with shelves and structural frames.
Module assembly
Rev 2026.07
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Control plane
Rev 2026.07

Digital intelligence behind every recovery process.

Digital monitoring, process analytics, automation, and AI-assisted optimization can support more efficient mineral recovery while complementing qualified scientific and engineering judgment.

DIGITAL CAPABILITY
PROCESS MONITORING • DATA ANALYTICS
PROCESS CONTROL
AUTOMATION • AI-ASSISTED OPTIMIZATION
Oversight
SCIENTIFIC • ENGINEERING • HUMAN OVERSIGHT

Scientific validation built into every recovery pathway.

Every recovery pathway begins with scientific characterization, laboratory analysis, and process validation before advancing toward pilot-scale development.

VALIDATION PATH

DEVELOPMENT PATH
LAB → BENCH → PILOT → FIELD VALIDATION
SCIENTIFIC REVIEW
LAB • MINERALOGY • PROCESS VALIDATION
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N+1 topology
Rev 2026.07
SCIENTIFIC VALIDATION

Every opportunity begins with science, evidence, and validation.

Pax Silica Pilipinas Inc. advances opportunities through laboratory analysis, mineralogical characterization, recovery testing, and staged validation before considering pilot-scale development.

Closeup of electrical testing device clamped on copper busbar with red and black probe cables connected.
Analyser at the bus
Rev 2026.07
CHARACTERIZATION
LAB + MINERALOGY
LAB • MINERALOGY • ANALYSIS
RECOVERY TESTING
BENCH + PILOT
RECOVERY • PROCESS TESTING
DEVELOPMENT PATH
LAB → PILOT → VALIDATION
LAB • PILOT • VALIDATION
VALIDATION STATUS
STAGED VALIDATION
EVIDENCE • REVIEW • DECISION
VALIDATION FRAMEWORK

Every opportunity advances through evidence, testing, and validation.

Pax Silica Pilipinas Inc. evaluates opportunities through scientific characterization, recovery testing, and staged validation before considering further development.

LAB ANALYSIS • RECOVERY TESTING • STAGED VALIDATION
CHARACTERIZATION
LAB + MINERALOGY
%
RESOURCE CHARACTERIZATION
RECOVERY TESTING
BENCH + PILOT

RECOVERY VALIDATION
DEVELOPMENT PATH
LAB → PILOT → VALIDATION

STAGED DEVELOPMENT
COMMERCIAL PATH
PARTNER → PILOT → SCALE
GW
COMMERCIAL DEVELOPMENT
PROCESS INTELLIGENCE

Turning process data into smarter recovery decisions.

Recovery Process Monitoring
PROCESS DATA • PILOT MONITORING
Recovery Optimization Response
AI-ASSISTED • PROCESS RESPONSE
chart
DEVELOPMENT FRAMEWORK

From laboratory validation to scalable deployment.

Each opportunity advances through scientific validation, recovery testing, pilot development, and staged evaluation before commercial deployment.

DEVELOPMENT STAGE
LABORATORY VALIDATION
RECOVERY TESTING
BENCH-SCALE • PROCESS VALIDATION
PILOT DEVELOPMENT
MODULAR SKID • PILOT SYSTEM
PROCESS CONTROL
AUTOMATION • AI-ASSISTED OPTIMIZATION
HUMAN OVERSIGHT
SCIENTIFIC • ENGINEERING REVIEW
SCALABILITY
MODULAR • SCALABLE DEPLOYMENT
RESOURCE EFFICIENCY
WATER • REAGENT RECOVERY • RECYCLING
TARGET APPLICATIONS
CRITICAL MINERALS • ADVANCED MATERIALS
DEVELOPMENT APPROACH
LAB → PILOT → COMMERCIAL VALIDATION
DEPLOYMENT MODEL
MODULAR • SITE-ADAPTABLE • PARTNER-DEPLOYED
DEVELOPMENT SCALE
BENCH → PILOT → SITE-SCALE
VALIDATION STANDARD
LAB • BENCH • PILOT VALIDATION
SCIENTIFIC STANDARDS & RESPONSIBILITY

SCIENTIFIC VALIDATION

Qualified laboratory analysis and scientific testing support responsible evaluation of mineral opportunities.

QUALITY & QA/QC

Quality assurance and quality control support reliable sampling, laboratory analysis, and defensible technical results.

CHAIN OF CUSTODY

Documented sample handling and traceability help preserve sample integrity from field collection through laboratory analysis.

RESPONSIBLE DEVELOPMENT

Responsible development considers environmental safeguards, resource efficiency, regulatory requirements, and long-term community value.