gxceed
GX Research Hub · English

GX & Decarbonization Research

This page provides an English interface to the gxceed GX paper corpus. The corpus aggregates papers from 13 open scholarly metadata sources and uses AI-assisted classification to identify signals related to measurement, policy narratives, outcomes, implementation, industrial adoption, and verification.

The goal is not only to discover papers, but to observe how GX research is distributed across research substance, implementation narratives, external expectations, implementation substance, and judgment formation.

Summaries are AI-assisted. Always refer to the original paper for authoritative conclusions.

📊 SNE Research Profile →🔬 Researcher API →About gxceed →🇯🇵 日本語版
Shelf:All Papers🇯🇵→🌍 Japan-to-Global🌍→🇯🇵 Global-to-JapanCurated
Sort:NewestRelevanceMost Viewed
Topic: #Scope 3 (clear)

Showing 1–18 of 18 papers

🇯🇵→🌍 Japan-to-Global🇯🇵 Japan📚 Peer-reviewed · JournalJ-STAGE#Scope 3DOI

Estimation of CO2 Emission Information in Sales Process by Store Characteristics and Item Categories: A Case Study of a Food Supermarket

店舗特性別・品目別販売過程におけるCO<sub>2</sub>排出情報の推算:食品スーパーマーケットの事例

(著者不明)

This paper proposes a method to estimate CO2 emissions in the sales process of a food supermarket, disaggregated by store characteristics and item categories. Through a case study, it derives emission factors per store scale, location, and …

Read more →
🇯🇵→🌍 Japan-to-Global🇯🇵 Japan📚 Peer-reviewed · JournalJ-STAGE#Scope 3DOI

Challenge of LCCO₂ Calculation and Reduction for Semiconductor Manufacturing Equipment

半導体製造装置のLCCO<sub>2</sub>算定・削減への挑戦

(著者不明)

This paper tackles the challenge of calculating and reducing life cycle CO2 (LCCO2) emissions for semiconductor manufacturing equipment. It likely provides methodologies for Scope 3 accounting and reduction strategies within the semiconduct…

Read more →
🇯🇵→🌍 Japan-to-Global🇯🇵 Japan📚 Peer-reviewed · JournalJ-STAGE#Scope 3DOI

Calculation and Reduction of Greenhouse Gas Emissions in Supply Chains Gaining Attention for '2050 Carbon Neutrality'

「2050年カーボンニュートラル」で注目されるサプライチェーンにおける温室効果ガス排出量の算定と削減

(著者不明)

This paper explains methods for calculating and reducing greenhouse gas emissions across supply chains, focusing on the 2050 carbon neutrality goal. It covers Scope 3 accounting standards, data collection challenges, and collaborative reduc…

Read more →
🇯🇵→🌍 Japan-to-Global🇯🇵 Japan📚 Peer-reviewed · JournalJ-STAGE#Scope 3DOI

Considerations on Scope 3 Category 11 Calculation for ICT Solution Services

ICTソリューション・サービスのスコープ3 カテゴリ11算定における考察

(著者不明)

This paper discusses the calculation of Scope 3 Category 11 (use of sold products) for ICT solution services. It proposes practical approaches considering the unique usage patterns and data collection challenges of ICT services.

Read more →
🇯🇵→🌍 Japan-to-Global🇯🇵 Japan📚 Peer-reviewed · JournalJ-STAGE#Scope 3DOI

Simple Estimation Method of CO2 Emissions by Route for International Maritime Container Logistics

国際海上コンテナ物流を対象とした経路別CO2排出量の簡易算定手法

(著者不明)

This paper proposes a simplified method for calculating CO2 emissions by route in international maritime container logistics. It considers distance, vessel type, and load factor, enabling companies to estimate Scope 3 emissions from freight…

Read more →
🇯🇵→🌍 Japan-to-Global🇯🇵 Japan📚 Peer-reviewed · JournalJ-STAGE#Scope 3DOI

Scope 3 and Organizational LCA

Scope 3と組織のLCA

(著者不明)

This paper explains how to use organizational Life Cycle Assessment (LCA) for Scope 3 (supply chain GHG emissions) calculation. Organizational LCA enables accurate emission capture and reduction strategy development. Includes practical exam…

Read more →
🇯🇵→🌍 Japan-to-Global🇯🇵 Japan📚 Peer-reviewed · JournalJ-STAGE#Scope 3DOI

Calculation Method for Scope 3 Category 11 (Use of Sold Products)

Scope 3算定におけるカテゴリ11(販売した製品の使用)の算定方法

(著者不明)

This paper explains the calculation method for Scope 3 Category 11 (use of sold products). It organizes emission factors for the use phase and calculation methods based on product usage patterns, highlighting practical challenges and soluti…

Read more →
🇯🇵→🌍 Japan-to-Global🇯🇵 Japan📚 Peer-reviewed · JournalJ-STAGE#Scope 3DOI

Calculation of Greenhouse Gas Emissions in the Supply Chain

サプライチェーンにおける温室効果ガス排出量算定について

(著者不明)

This paper focuses on methods for calculating greenhouse gas emissions across the entire supply chain, addressing challenges in accurately measuring and reporting Scope 3 emissions, and providing implications for corporate decarbonization s…

Read more →
🇯🇵→🌍 Japan-to-Global🇯🇵 Japan📚 Peer-reviewed · JournalJ-STAGE#Scope 3DOI

Supply chain (Scope 1, 2, 3) emission calculation methods and future CO2 reduction trends

サプライチェーン(Scope 1,2,3)排出量算出手法と今後のCO<sub>2</sub>削減動向

(著者不明)

This paper explains methods for calculating Scope 1, 2, and 3 emissions across the entire supply chain and discusses future CO2 reduction trends. It provides practical guidance for corporate carbon footprint measurement.

Read more →
🇯🇵→🌍 Japan-to-Global🇯🇵 Japan📚 Peer-reviewed · JournalJ-STAGE#Scope 3DOI

A Study on the Proportion of Ports in CO2 Emissions from International Maritime Container Transport

2024A-OS15-4 国際海上コンテナ輸送に起因するCO2排出量に占める港湾の割合に関する一考察

(著者不明)

This study analyzes the proportion of ports in CO2 emissions from international maritime container transport, estimating the contribution of ports and providing implications for emission reduction strategies.

Read more →
🇯🇵→🌍 Japan-to-Global🇯🇵 Japan📚 Peer-reviewed · JournalJ-STAGE#Scope 3DOI

Re-evaluating the Warming Load from Livestock Production: Manure-derived Emissions Can Be Reduced

「家畜生産が原因の温暖負荷を再評価。 ふん尿起源排出は削減できます」

(著者不明)

This paper re-evaluates the greenhouse gas load from livestock production, focusing on manure-derived emissions. It suggests that improved manure management can significantly reduce these emissions.

Read more →

Browse by Topic

#Scope 3#Scope 1/2#Carbon Pricing#Renewable Energy#Policy#TCFD#SBT/SBTi#CDP#CCUS#Hydrogen#Climate Finance#Climate Science#EV & Transport#Energy Transition#ESG#Transition Finance#Greenwashing#Climate Risk#Biodiversity#Carbon Accounting#Disclosure Infrastructure#Energy Efficiency#Supply Chain#AI × ESG#Other