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Chanord / CarbonCharts
CarbonCharts Industrial GHG Monitor
14 IIoT feeds live
Updated just now
Data reflects simulated IIoT-connected OT systems for demonstration. Production deployments integrate with DCS historians, SCADA, smart meters, and ERP via OPC-UA/MQTT. GHG Protocol · SBTi 1.5°C · CSRD · ISO 14064. About this service ↓
GHG Monitoring · Real-time

Carbon Footprint Dashboard

Real-time Scope 1, 2 & 3 emissions across critical industry operations, measured via IIoT-connected OT systems and ingested to cloud. YTD figures shown — 2026 baseline year.

LIVE — refreshing every 30 s GHG Protocol compliant · Scope 1+2+3 coverage
Total CO₂e YTD
108,420
tCO₂e · Jan–Aug 2026
−8.4% vs 2025 baseline
Scope 1 — Direct Emissions
35,770
tCO₂e · combustion & process
−11.2% vs prior year
Scope 2 — Purchased Energy
9,200
tCO₂e · market-based method
−14.6% vs prior year
Scope 3 — Value Chain
63,450
tCO₂e · 11 categories tracked
−5.8% vs prior year
−8.4%
On track — SBTi 1.5°C pathway target: −9.0% by year end
Science-Based Target · Absolute contraction method · Base year 2022 · Verified: Bureau Veritas
PROGRESS TO ANNUAL TARGET
93% of target achieved
Monthly GHG Emissions — Scope 1 + 2 + 3 tCO₂e · Jan–Aug 2026
Scope 3 — Value Chain
Scope 2 — Purchased Energy
Scope 1 — Direct
SBTi Target
Scope Breakdown % of total CO₂e
Scope 1  33% — 35,770 tCO₂e
Scope 2  8% — 9,200 tCO₂e
Scope 3  59% — 63,450 tCO₂e
Emissions by Industry Sector Scope 1 tCO₂e · YTD
IIoT Data Sources — Live Last sync 0s ago
About This Service Chanord Decarbonisation Advisory
Platform
IIoT + Cloud · OPC-UA / MQTT
Scope Coverage
Scope 1 · Scope 2 · Scope 3
Data Refresh
Real-time · 30-second intervals
Standards
GHG Protocol · SBTi · ISO 14064
Reporting
CSRD · TCFD · SFDR ready

Critical industries — energy, oil & gas, manufacturing, water, and transport — generate the majority of global industrial GHG emissions, yet most operators still measure carbon retrospectively from invoices and spreadsheets. Chanord's decarbonisation service connects directly to OT systems: DCS historians, SCADA platforms, smart meters, CEMS, and ERP data — via IIoT protocols including OPC-UA, MQTT, and Modbus — to compute Scope 1, 2, and 3 emissions in real time. The result is a live carbon footprint, not a quarterly estimate. Operators get verifiable data for CSRD, TCFD, and SBTi reporting; and the granularity needed to identify where reductions are achievable, track the impact of interventions as they happen, and communicate credibly with customers and regulators about actual progress.

Start measuring your industrial carbon footprint

Chanord connects your OT systems — historians, SCADA, smart meters — to a live GHG monitoring platform. Scope 1, 2, and 3. Verified. CSRD and SBTi ready.

Talk to us — post@chanord.com
Direct Emissions

Scope 1 — Direct GHG Emissions

Emissions from sources owned or controlled by the organisation: combustion of fuels, industrial processes, and fugitive releases. YTD: 35,770 tCO₂e — down 11.2% vs 2025.

Scope 1 Sources — Breakdown by Category tCO₂e · Jan–Aug 2026
Scope 1 Emission Intensity kg CO₂e per unit of production output
Intensity tracks emissions per production unit — declining intensity at stable/growing output is the key decarbonisation signal. Target: <0.42 kg CO₂e/unit by Q4 2026.

Connect your Scope 1 sources

Chanord integrates with combustion systems, CEMS, process gas monitors, and fugitive emission detectors via OT protocols. No manual data entry.

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Purchased Energy

Scope 2 — Purchased Energy Emissions

Indirect emissions from the generation of purchased electricity, steam, heat, or cooling consumed by the organisation. Market-based method (renewable energy certificates applied). YTD: 9,200 tCO₂e.

Scope 2 by Energy Type Market-based · RECs applied
Grid Emission Factor — Norway vs European Average kg CO₂e / kWh · location-based reference
Norway Grid (Hydro)
0.017
kg CO₂e / kWh
Near-zero carbon grid
EU Average Grid
0.295
kg CO₂e / kWh
Declining — renewable growth
Global Average Grid
0.489
kg CO₂e / kWh
Varies significantly by region
Grid emission factors applied per facility location. Operations in Norway benefit from near-zero-carbon hydropower grid. Overseas operations apply local grid factors updated quarterly from IEA data.

Connect your smart meters and energy systems

Chanord integrates with industrial smart meters, BMS platforms, and energy management systems to track purchased energy consumption in real time — with automatic grid emission factor application.

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Value Chain Emissions

Scope 3 — Value Chain Emissions

All other indirect emissions across the value chain — upstream purchased goods, supplier logistics, employee travel, and downstream use of sold products. 11 GHG Protocol categories tracked. YTD: 63,450 tCO₂e.

Scope 3 Categories — Tracked vs Estimated GHG Protocol Scope 3 Standard · 15 categories
Data Quality by Category Primary data (IIoT/ERP) vs secondary (spend-based estimates)
Primary data (connected systems) is more accurate than spend-based estimates. Chanord's integration roadmap moves each category from estimated to measured over 12–18 months.

Move from Scope 3 estimates to Scope 3 data

Most organisations estimate Scope 3 from spend data. Chanord connects ERP, procurement, and logistics systems to replace estimates with primary data — starting with the categories that matter most for your sector.

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Decarbonisation

Reduction Pathways — Identified Measures

Prioritised reduction measures identified through OT system analysis, process optimisation, and energy efficiency modelling. Combined potential: −28,400 tCO₂e/yr at full implementation.

−28.4k
tCO₂e / year potential from identified measures
Across 7 active reduction pathways · 3 in implementation · 4 in assessment
MEASURES IMPLEMENTED
3 of 7 pathways active
Electrification of Process Heat

Replace gas-fired process heating with electric heat pumps and electrode boilers. Connected to OT temperature control loops for efficiency optimisation.

−8,200tCO₂e/yr
Scope 1 reduction
STATUS
● In implementation
☀️ On-site Renewable Generation

Rooftop and ground-mounted solar PV at industrial sites. Integrated with energy management system and SCADA for demand-side optimisation.

−4,900tCO₂e/yr
Scope 2 reduction
STATUS
● In implementation
⚙️ AI-driven Process Optimisation

Machine learning applied to DCS and historian data to reduce fuel burn and energy consumption per production unit without process changes.

−5,600tCO₂e/yr
Scope 1+2 reduction
STATUS
● In implementation
🔬 Fugitive Emission Detection

IIoT-connected methane and refrigerant leak sensors with automated alerts and repair workflows. High-impact Scope 1 reduction per intervention cost.

−3,800tCO₂e/yr
Scope 1 reduction
STATUS
● In assessment
🚚 Supplier Logistics Decarbonisation

Shift inbound freight from road diesel to rail and HVO. Requires ERP integration and supplier carbon data exchange via product-level emission factors.

−2,400tCO₂e/yr
Scope 3 Cat 4 reduction
STATUS
● In assessment
🏭 Green Hydrogen Pilot

Replace natural gas with green hydrogen for high-temperature industrial processes where electrification is not technically feasible.

−3,500tCO₂e/yr
Scope 1 reduction
STATUS
● In assessment
🌿 Supplier Engagement Programme

Structured supplier carbon data exchange — require Scope 1+2 disclosures from Tier 1 suppliers, with improvement targets embedded in procurement contracts.

−5,100tCO₂e/yr
Scope 3 Cat 1 reduction
STATUS
● In assessment

Identify your highest-impact reduction measures

Chanord analyses your OT system data, energy consumption, and supply chain to quantify and prioritise the decarbonisation measures with the best ROI for your operations.

Start a decarbonisation assessment