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27 public publications

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Life Cycle Inventory Data Development for Greenhouse Gas Emissions of Thailand's Electricity Grid Generation Systems

Viganda Varabuntoonvit, Yucho Sadamichi, Seizo Kato, Thumrongrut Mungcharoen

energyo · 2018

LCA (Life Cycle Assessment) is a well known methodology to assess the impact on the environment over the life cycle of a product, process, or activity. This methodology is based on the LCI (Life Cycle Inventory) database, a data set of all resources (material and energy) that are consumed or emitted in order to produce 1 unit of the product. Because electricity is a basic infrastructure, a Thailand electricity grid LCI database is needed to assess the environmental impact not only for the product used in Thailand, but also for any product that is exported to other countries. A complete LCI database for the electricity grid in Thailand is not yet available, and the LCI database developed in this work applies from the fuel acquisition stage to the production stage. The analysis shows the unique characteristics of the Thailand electricity grid. An LCI database for each type of fuel and for each electricity generation system was developed. The characteristics of each type of fuel and electricity generation system are indicated in terms of Life Cycle GHG (Greenhouse Gas) emissions to reflect their global warming potential. Data on the Life Cycle GHG emission per kWh of electricity produced are also provided. The first Thailand LCI database for the fuels used in the electricity generation system was developed using data obtained from the EGAT (Electricity Generating Authority of Thailand), IPPs (Independent Power Producers), and PTT (Petroleum Authority of Thailand) during the Thai fiscal year 2005 (from October 2004 to September 2005). The database was used to analyze the current situation and the characteristics of the electricity generation system in Thailand and to compare it with the systems used in other developed countries.

Thailand Green GDP assessment based on environmentally extended input-output model

Kultida Kunanuntakij, Viganda Varabuntoonvit, Natanee Vorayos, Chanin Panjapornpon, Thumrongrut Mungcharoen

Journal of Cleaner Production · 2017

Effect of magnetic field on CO2 conversion over Cu-ZnO/ZrO2 catalyst in hydrogenation reaction

Waleeporn Donphai, Nuttanun Piriyawate, Thongthai Witoon, Pongsakorn Jantaratana, Viganda Varabuntoonvit, Metta Chareonpanich

Journal of CO2 Utilization · 2016

Life cycle assessment of single use thermoform boxes made from polystyrene (PS), polylactic acid, (PLA), and PLA/starch: cradle to consumer gate

Unchalee Suwanmanee, Viganda Varabuntoonvit, Phasawat Chaiwutthinan, Monchai Tajan, Thumrongrut Mungcharoen, Thanawadee Leejarkpai

The International Journal of Life Cycle Assessment · 2012

Life Cycle Inventory Data Development for Greenhouse Gas Emissions of Thailand's Electricity Grid Generation Systems

Viganda Varabuntoonvit, Yucho Sadamichi, Seizo KATO, Thumrongrut Mungcharoen

International Journal of Emerging Electric Power Systems · 2008

LCA (Life Cycle Assessment) is a well known methodology to assess the impact on the environment over the life cycle of a product, process, or activity. This methodology is based on the LCI (Life Cycle Inventory) database, a data set of all resources (material and energy) that are consumed or emitted in order to produce 1 unit of the product. Because electricity is a basic infrastructure, a Thailand electricity grid LCI database is needed to assess the environmental impact not only for the product used in Thailand, but also for any product that is exported to other countries. A complete LCI database for the electricity grid in Thailand is not yet available, and the LCI database developed in this work applies from the fuel acquisition stage to the production stage. The analysis shows the unique characteristics of the Thailand electricity grid. An LCI database for each type of fuel and for each electricity generation system was developed. The characteristics of each type of fuel and electricity generation system are indicated in terms of Life Cycle GHG (Greenhouse Gas) emissions to reflect their global warming potential. Data on the Life Cycle GHG emission per kWh of electricity produced are also provided. The first Thailand LCI database for the fuels used in the electricity generation system was developed using data obtained from the EGAT (Electricity Generating Authority of Thailand), IPPs (Independent Power Producers), and PTT (Petroleum Authority of Thailand) during the Thai fiscal year 2005 (from October 2004 to September 2005). The database was used to analyze the current situation and the characteristics of the electricity generation system in Thailand and to compare it with the systems used in other developed countries.

413 LCA-NETS 手法を用いたタイ国における商用発電システムについての LCA 評価

Viganda Varabuntoonvit, 征三 加藤, 直樹 丸山, Thumrongrut Mungcharoen, Anugerah Widiyanto, 有頂 定道

環境工学総合シンポジウム講演論文集 · 2002

LCA Evaluation for Grid Electricity Power Plants in Thailand Using LCA-NETS Method

Viganda Varabuntoonvit, Seizo KATO, Naoki Maruyama, Thumrongrut Mungcharoen, Anugerah Widiyanto, Yucho Sadamichi

The Proceedings of the Symposium on Environmental Engineering · 2002

Life Cycle Assessment (LCA) has been gradually considered for its effectiveness in evaluation of environmental impacts LCA assesses environmental impacts over the entire life cycle of any products, process, or activities. The research focused on the LCA evaluation of grid electricity thermal power plant and hydro power plant in Thailand. The power plant inventory database has been developed and LCA-NETS method is used to analyze environmental impact of power plants in Thailand. Assessments indicate power plant performance and propose possibility to reduce environmental effect. The results could be useful for further development of Eco-Power generation systems in Thailand.

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