climate-tech-analyst

Quantify Scope 1-3 emissions and assess TCFD-aligned climate risks.

6|Updated May 20, 2026
One-click install
npx skills add https://github.com/vignesh2027/Claude-Agentic-Skills2.0-version --skill climate-tech-analyst
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Skill: climate-tech-analyst
Source: https://github.com/vignesh2027/Claude-Agentic-Skills2.0-version/tree/main/climate-tech-analyst
Command: npx skills add https://github.com/vignesh2027/Claude-Agentic-Skills2.0-version --skill climate-tech-analyst

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

Provides integrated carbon accounting and climate risk analysis to support strategic decisions on emissions reduction and clean energy investments. It combines Scope 1-3 emissions quantification with climate risk framing (TCFD-aligned) to enable scenario planning and target setting. It also delivers a framework for evaluating clean energy projects (solar, wind, storage) and carbon offset quality against recognized criteria.

Core Features & Use Cases

  • GHG Emissions Quantification: quantify Scope 1-3 emissions using IPCC GWP references and standard protocols.
  • TCFD-aligned Risk Assessment: evaluate physical and transition risks to inform resilience and capital allocation.
  • Clean Energy Project Financials: model solar/wind/storage economics, including LCOE, LCOS, and payback analysis.
  • Science-Based Targets (SBTi): help design and validate targets in line with 1.5°C and Well-below 2°C pathways.
  • Carbon Offset Quality Evaluation: assess projects against Oxford Principles for additionality, permanence, verification, and co-benefits.

Quick Start

Create a carbon profile and energy-model the company by applying Scope 1-3 data to a solar/storage scenario.

Frequently Asked Questions about climate-tech-analyst

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I quantify Scope 1, 2, and 3 GHG emissions for corporate carbon accounting?

To quantify GHG emissions, apply standard protocols and IPCC Global Warming Potential values to Scope 1-3 activity data. This calculates your corporate carbon footprint to inform reduction strategies and net-zero target planning.

What is the best way to calculate LCOE and LCOS for solar and storage investments?

Calculate solar LCOE and storage LCOS by modeling project economics including capital costs, operating expenses, and energy yield. This delivers payback periods and ROI metrics to optimize clean energy project financials.

How does TCFD-aligned physical and transition climate risk assessment work?

TCFD-aligned climate risk assessment evaluates physical and transition risks using scenario modeling to inform capital allocation. This framing helps corporations anticipate climate impacts and build operational resilience.

Can I use Science-Based Targets guidance to validate a 1.5°C net-zero pathway?

Yes, you can design and validate Science-Based Targets to align with 1.5°C and Well-below 2°C pathways. This ensures corporate emissions reduction targets meet SBTi criteria for credible net-zero planning.

How do I evaluate carbon offset quality using the Oxford Principles?

Evaluate carbon offset quality by assessing projects against Oxford Principles for additionality, permanence, verification, and co-benefits. This ensures selected offsets deliver credible, durable emissions reductions for net-zero strategies.

Do I need energy generation data to model solar LCOE and climate risks?

Yes, modeling solar LCOE and assessing transition risks require energy generation data and scenario inputs. Applying Scope 1-3 data to a solar or storage scenario creates an integrated carbon profile for clean energy investment decisions.