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รศ.ดร.ธำรงรัตน์ มุ่งเจริญ

ผลงานตีพิมพ์ทั้งหมด

42 public publications

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Material circularity indicator for accelerating <scp>low‐carbon</scp> circular economy in Thailand's building and construction sector

Nongnuch Poolsawad, Tassaneewan Chom‐in, Jantima Samneangngam, Prakaytham Suksatit, Khaowpradabdin Songma, Saowalak Thamnawat, Somrath Kanoksirirath, Thumrongrut Mungcharoen

Environmental Progress & Sustainable Energy · 2023

Abstract Thailand's steady growth of urban areas and industrial estates, the construction sector needs to adopt a low‐carbon circular economy (CE) model that emphasizes material circularity and resource efficiency. This research aims to measure the low‐carbon CE of the construction industry through significant representative products, life cycle assessment and material circularity indicator (MCI) were measured on significant representative products materials were evaluated. In the results of the study, it was found that the MCI and GHGs revealed the following results: 1 ton of construction steel products = 0.73 and 2.32 kgCO 2 /ton, 1 bag (50 kg) of mortar and cement products = 0.17 and 16.92 kgCO 2 /bag, 1 m 3 of ready‐mixed concrete at compressive strength 240 kilograms per square centimeter = 0.11 and 253.63 kgCO 2 /m 3 , 1 m 3 of wood and composite wood products = 0.17 and 745.84 kgCO 2 /bag, also 1 m 2 K/W (meters squared Kelvin per Watt) of glass wool insulation = 0.50 and 1.63 kgCO 2 /m 2 K/W, respectively. These values are indicated as national baselines for monitoring CE performance that contribute to the industry's long‐term viability and turn to sustainability in Thailand through the key strategic issues in Thailand's CE and low‐carbon society. The GHGs reduction of 11 million tons is expected, which can also increase the 10% of material circularity, also the estimation of the economic value, by considering the value added from material reduction and the price of carbon credit from construction and demolition waste reduction affect the Thai construction industry by approximately 67 million dollars.

Toward sustainable development goals: Virtual nitrogen factors and nitrogen footprint in Thailand

Thumrongrut Mungcharoen, Unchalee Suwanmanee

Sustainable Production and Consumption · 2021

Life Cycle Greenhouse Gas Emissions for Circular Economy

Thumrongrut Mungcharoen, Viganda Varabuntoonvit, Nongnuch Poolsawad

2020

Environmental consequences related to nutritional status of Thai populations

Piyanit Churak, Kitti Sranacharoenpong, Thumrongrut Mungcharoen

Journal of Public Health · 2020

ENVIRONMENTAL PERFORMANCE OF SAJOR-CAJU MUSHROOM PRODUCTION BASED ON FARM SIZES IN THAILAND

Rungnapa Tongpool, Siriprapa Ueawiwatsakul, Thumrongrut Mungcharoen

Environmental Engineering and Management Journal · 2018

Unlike other vegetables, mushroom production requires several substrate ingredients, energy to sterilize the substrate, water to humidify the fruiting house and waste management of the spent substrate and used materials.This work studied the environmental impacts and eco-efficiency of sajor-caju mushroom (Pleurotus sajor-caju (Fr.)Sing.) production in terms of climate change potential, acidification potential, water depletion potential and fossil fuel depletion potential, using life cycle assessment (LCA) method.The results showed that the mushroom production in small and large farms had nearly the same environmental performance.Their environmental impacts were lower and their eco-efficiencies were higher than those for medium-sized farms.This means the medium-sized farms would cause more environmental impacts in order to obtain the same profit as the other two farms.It was found that there was inefficient use of both substrate and energy in the medium-sized farms.This is probably because the medium-sized farm had relatively low financial limitations, compared to the small farms, and relatively less concern over efficient use of resources, compared to the large farms.The reduction of sawdust and rice bran, used as substrate ingredients, as well as wood, used as energy source for sterilization, to the same amounts as those used in the small farms could reduce environmental impacts (5-25%) and improve eco-efficiencies (10-40%) of the medium-sized farms to be close to those for large and small farms.

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

Preparation and characterization of Co–Cu–ZrO 2 nanomaterials and their catalytic activity in CO 2 methanation

Porntipar Dumrongbunditkul, Thongthai Witoon, Metta Chareonpanich, Thumrongrut Mungcharoen

Ceramics International · 2016

Comparative assessment of global warming impact and eco-efficiency of PS (polystyrene), PET (polyethylene terephthalate) and PLA (polylactic acid) boxes

Thanawadee Leejarkpai, Thumrongrut Mungcharoen, Unchalee Suwanmanee

Journal of Cleaner Production · 2016

Carbon Footprint of Products

Atsushi Inaba, Sylvain Chevassus, Tom Cumberlege, Eunah Hong, Akira Kataoka, Pongvipa Lohsomboon, Corinne Mercadie, Thumrongrut Mungcharoen, Klaus Radunsky

LCA compendium · 2016

Integrated transdisciplinary technologies for greener and more sustainable innovations and applications of Cleaner Production in the Asia–Pacific region

Metta Chareonpanich, Paisan Kongkachuichay, Waleeporn Donphai, Thumrongrut Mungcharoen, Donald Huisingh

Journal of Cleaner Production · 2016

Erratum to: 10-year experience with the Thai national LCI database: case study of “refinery products”

Kirana Chomkhamsri, Thumrongrut Mungcharoen, Chantana Yuvaniyama

The International Journal of Life Cycle Assessment · 2016

Perspectives on Life Cycle Assessment Application and Research in Thailand

Shabbir H. Gheewala, Thumrongrut Mungcharoen

Indonesian Journal of Life Cycle Assessment and Sustainability · 2016

Life Cycle Assessment (LCA) has been initiated in Thailand since the late 1990s with the first life cycle inventory (LCI) of the electricity grid mix and the offering of the first full graduate course. Since then it has come a long way through the development of the national LCI database and application in various research, industry as well as policy initiatives. LCA has been used extensively as an evaluation and decision tool in agri-food products, energy as well as many other sectors. Many graduate studies as well as research and industrial LCA projects have been performed. Related activities include the proliferation of carbon footprint labeling and application in green purchasing initiatives. Industry has been very actively participating in the carbon footprinting applications, some of them extending their interest to full LCAs for environmental performance evaluation and sustainability reporting. More recently, efforts have also been moving in the direction of looking at life cycle impact assessment methods from a Thailand perspective. Also, with interest in LCA from the policy making perspective, a capacity building effort has been initiated to train researchers in conducting LCA-related research on a sustained basis and ensure that Thailand keeps abreast of the international trends and discussions.

Evaluating the environmental impacts of graft copolymer prepared by conventional emulsion polymerization, electron beam irradiation, and gamma ray irradiation through life cycle assessment

Paweena Prapainainar, Bulin Boonrod, Varisara Phetarporn, Worayut Saibautrong, Setawit Juntarungsee, Katapon Tiavirat, Thumrongrut Mungcharoen

Journal of Cleaner Production · 2016

Evaluating the environmental impacts of bio-hydrogenated diesel production from palm oil and fatty acid methyl ester through life cycle assessment

Bulin Boonrod, Chaiwat Prapainainar, Phavanee Narataruksa, Kantama Angsana, Worayut Saibautrong, Kandis Sudsakorn, Thumrongrut Mungcharoen, Paweena Prapainainar

Journal of Cleaner Production · 2016

10-year experience with the Thai national LCI database: case study of “refinery products”

Kirana Chomkhamsri, Thumrongrut Mungcharoen, Chantana Yuvaniyama

The International Journal of Life Cycle Assessment · 2016

Green and sustainable innovation for cleaner production in the Asia-Pacific region

Kitikorn Charmondusit, Shabbir H. Gheewala, Thumrongrut Mungcharoen

Journal of Cleaner Production · 2016

Life-Cycle GHG Emissions of Cassava-Based Bioethanol Production

Tapanee Numjuncharoen, Seksan Papong, Pomthong Malakul, Thumrongrut Mungcharoen

Energy Procedia · 2015

This study aims to assess the life-cycle greenhouse gas (GHG) emissions of cassava ethanol production system focusing on utilization of biomass and biogas as energy sources in the steam production process. Scope of life cycle assessment is "cradle to gate" and the functional unit of this study is 1 liter of anhydrous ethanol produced. The use of biogas from wastewater treatment system for steam production greatly affects the GHG reduction. The GHG emissions of bioethanol plant that uses biogas from wastewater for steam production is 0.548 kg-CO2-eq/L-ethanol, while the bioethanol plant without biogas utilization is 1.031 kg-CO2-eq/L-ethanol. From the result, the utilization of biogas in steam production insignificantly reduce the GHG emission, if primary fuel in steam production is biomass. In contrast, using biomass such as wood chip and rice husk substitutes for fossil fuel as primary fuel in steam production greatly affects to GHG emission reduction (approximately 96% reduction compared to literature).

Life Cycle Assessment of Sajor-caju Mushroom (Pleurotus Sajor-caju) from Different Sizes of Farms in Thailand

Siriprapa Ueawiwatsakul, Thumrongrut Mungcharoen, Rungnapa Tongpool

International Journal of Environmental Science and Development · 2014

Sajor-caju (Pleurotus sajor-caju) is one of the most famous mushroom in Thailand. Sajor-caju farming uses plastic bags for cultivation. Energy is needed for sterilization of substrate and waste management of spent plastic bag. Thailand has several sizes of sajor-caju farms which have different cultivation management. Therefore, the environmental performance of sajor-caju produced from three farm sizes was evaluated in this study using life cycle assessment approach. It was found that the main impacts came from i) substrate preparation which are the production and transportation of the substrate raw materials and ii) sterilization process. Medium farm showed relatively large impacts in all impact categories. The climate change caused by 1 kg sajor-caju produced from big, medium and small farms were 3.371, 5.003 and 3.0146 kg CO 2 eq, respectively.

Bioethanol water footprint: life cycle optimization for water reduction

Shinatiphkorn Pongpinyopap, Thumrongrut Mungcharoen

Water Science & Technology Water Supply · 2014

In Thailand, the Alternative Energy Development Plan has set the target to increase the use of bioethanol to 9.00 million liters per day by 2021. To achieve this goal, both freshwater availability for energy crops and best practices in bioethanol production chain management are very important issues. Therefore, this study integrates water footprint technique with the linear programing approach in order to optimize the operations decision, focusing on water footprint of the bioethanol production chains from both tactical and operational levels. A cradle-to-grave approach is adopted to evaluate the water consumption and pollution in bioethanol production from sugarcane and cassava. The results show that the water footprint of bioethanol consumed in Thailand was about 3.23 × 109, 1.72 × 1010, and 2.49 × 1010 m3 per year in 2010, 2016, and 2021, respectively. The share of agriculture water consumption to the total water footprints of bioethanol was 99% and industrial water consumption was 1%. After applying the linear programing, it was found that the water footprint could be reduced by at least 53%, or 1.33 × 1010 m3, annually. The modeling approach and formulation presented could be used as a tool to reduce water consumption and provide the operation plan of bioethanol production chain.

Environmental Mitigation Possibility via Organic Farming: Lettuce Case Study

C. Wongwai, Thumrongrut Mungcharoen, Rungnapa Tongpool

International Journal of Environmental Science and Development · 2014

The contamination of toxic in agricultural food and environment are the concerned issue in Thailand because it could damage the agricultural land and health of people in the long time and it also take many time to recover. This study were studied the environmental impact of organic lettuce (Grand rapids) compared with the conventional lettuce. The study consider 8 impact categories: 1) Climate change, 2) Human toxicity, 3) Terrestrial ecotoxicity, 4) Freshwater ecotoxicity, 5) Water depletion, 6) Fossil depletion, 7) Freshwater eutrophication and 8) Marine eutrophication. The scope considers the material input production, transportation and emission from the farm .The result of this study shown that organic lettuce were lower impact than conventional lettuce in all impact categories especially the three toxicity issue. Therefore, the organic lettuce could be the solution way to mitigation the environmental impact from the conventional lettuce in Thailand.

Biotemplated synthesis of highly stable calcium-based sorbents for CO2 capture via a precipitation method

Thongthai Witoon, Thumrongrut Mungcharoen, Jumras Limtrakul

Applied Energy · 2014

Water Footprint Assessment of Palm Oil Biodiesel Production in Southern part of Thailand

Shinatiphkorn Pongpinyopap, Worayuy Saibuatrong, Jitti Mungkalasiria, Ruthairat Wisansuwannakorn, Thumrongrut Mungcharoen, Thongchai Rohitatisha Srinophkun

Environment and Natural Resources Journal · 2014

The water footprint of palm oil biodiesel depends upon climate and production systems. The weighted average of the total water footprint is 5,714 m3/ton in a study area which has a mean annual rainfall of 1,905 mm per annum and where the average Fresh fruit bunches (FFB) yield is 3.02 tonnes per annum. The share of indirect water footprint to the total water footprint of biodiesel is 99% and that due to direct water footprint is 1% (Only blue water). The highest contributors to the indirect and direct water footprint are the water consumption of the oil palm crop and the water consumption in the production of palm oil biodiesel, respectively. From this study, Surat-Thani is the suitable area for using oil palm crop to produce biodiesel in water perspective.

Permselective properties of graphene oxide and reduced graphene oxide electrodes

Yanisa Sanguansak, Pattarachai Srimuk, Atiweena Krittayavathananon, Santamon Luanwuthi, Natee Chinvipas, Poramane Chiochan, Jakkrit Khuntilo, Panupong Klunbud, Thumrongrut Mungcharoen, Montree Sawangphruk

Carbon · 2013

Development of synthetic CaO sorbents via CTAB-assisted sol–gel method for CO2 capture at high temperature

Akarat Akgsornpeak, Thongthai Witoon, Thumrongrut Mungcharoen, Jumras Limtrakul

Chemical Engineering Journal · 2013

Life Cycle Energy and Environmental Analysis Study of a Model Biorefinery in Thailand

R. Chinnawornrungsee, Pomthong Malakul, Thumrongrut Mungcharoen

DOAJ (DOAJ: Directory of Open Access Journals) · 2013

There is commercial production of biofuels and biochemicals in Thailand. Yet there are no biorefineries at present. This study aims to evaluate the life cycle energy and environmental impacts associated with the production of biofuels and biopolymers for a model biorefinery in Thailand. Since there is currently no biorefinery in the country, secondary data sources from existing bioethanol and biopolymer plants were used for life cycle analysis (LCA). Sugarcane and cassava were chosen as feedstocks for the proposed biorefinery to produce bioethanol and polylactic acid (PLA). The system boundary was defined as cradle-to-gate with LCA methodology based on ISO 14040 series. Data were analyzed by using commercial LCA software, SimaPro 7.1, with Eco-Indicator 95 and CML 2 baseline 2000. The biorefinery system was modeled and its performance was evaluated for several factors such as fuel and biopolymer production, raw materials consumption, and total revenue generation for five scenarios. The results indicated that the biorefinery showed better performance in both global warming potential (GWP) and energy resources with increasing sugarcane usage. This was due to the use of bagasse and biogas as sources of fuel to generate electricity and steam by using a highly efficient electrical energy cogeneration process in the biorefinery. In contrast, increasing PLA production led to higher GWP and energy resource impacts due to high electricity and steam usage in the bioplastic production process. Finally, two Eco-efficiency parameters was developed in order to combine both environmental (GWP and energy resources) and economic (revenue) aspects by using average revenue gained and average impact associated. Among five scenarios studied, the results showed that S4 – high sugarcane usage and ethanol production – was the best scenario as it has higher eco-efficiency in both aspects.

Assessment the Environmental Impacts of Polylactic Acid/Starch and Polyethylene Terephthalate Boxes Using Life Cycle Assessment Methodology: Cradle to Waste Treatments

Unchalee Suwanmanee, Thanawadee Leejarkpai, Thumrongrut Mungcharoen

Journal of Biobased Materials and Bioenergy · 2013

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

Improvement of the environmental performance of broiler feeds: a study via life cycle assessment

Rungnapa Tongpool, Neungruothai Phanichavalit, Chantana Yuvaniyama, Thumrongrut Mungcharoen

Journal of Cleaner Production · 2012

Assessment of Greenhouse Gas (GHG) Emissions of Polylactic Acid (PLA)/Starch and Polyethylene Terephthalate (PET) Trays

Unchalee Suwanmanee, Thanawadee Leejarkpai, Thumrongrut Mungcharoen

Advanced materials research · 2012

This study aims to assess greenhouse gas (GHG) emissions of Poy(lactic acid) (PLA) with cassava starch blend (PLA/starch) and Poly(ethylene terephthalate) (PET) trays from cradle to grave. The various waste treatment scenarios were considered. The functional unit is specified as 10,000 units of 8 x 10 x 2.5 cm. of PLA/starch and PET trays which weigh 597.6 and 582.7.5 kilograms, respectively. The results from cradle to production gate were found that GHG emissions of PLA/starch has 51.38% lower than that of PET. This is because PET has higher weight of the trays. The resin production stage of PET tray has the highest of greenhouse GHG emissions. The results from cradle to grave show that the highest total GHG emissions are observed from PLA/starch or PET trays with 90% of landfill and 10% of incineration. The lowest GHG emissions from disposal PLA/starch and PET trays are from landfill with biogas recovery and incineration with heat recovery. This can be reduced GHG emissions by 3.11103 and 1.28103 kg CO2 equivalent.

Energy Consumption and Greenhouse Gas Emission of Alternative Vehicle Fuels in Thailand Using Well to Wheel Assessment

Worayut Saibuatrong, Thumrongrut Mungcharoen

Advanced materials research · 2012

Energy consumption and Greenhouse Gas (GHG) of major Alternative vehicle fuels (AVFs) in Thailand are estimated and compared with conventional fuels by means of full Life Cycle Assessment (LCA). The tool utilized here is the Well-to-Wheels (WtW) module of own model covering the entire lifecycle including: raw materials cultivation (or feedstock collection); fuel production; transportation and distribution; and application in automobile engines (ICE and hybrid engine), compared with conventional petroleum-based gasoline and diesel pathways. The model is based on Thailand’s national conditions with Tsinghua-CA3EM model. Part of this model structure has been adjusted to Thailand specific situations. Therefore, a majority of the parameters have been modified with local Thailand data. Results showed that the all alternative vehicle fuels can reduce energy consumption and GHG emissions compared to conventional fuels. Hybrid ICE engine to reduce energy consumption and GHG emissions when compared to the ICE engine. Biofuels-ICE engine, especially bioethanol from molasses, had the highest reduce energy consumption and GHG emissions. LPG- Hybrid ICE engine had the highest reduce energy consumption.

Comparative Study of Green Water Footprint Estimation Methods for Thailand: A Case Study of Cassava-based Ethanol

Shinatiphkorn Pongpinyopap, Thumrongrut Mungcharoen

Environment and Natural Resources Journal · 2012

Numerous water footprint studies published over the past decade have evaluated consumptive water use for various products and different contexts. Most of them are based on the FAO CROPWAT model using the USDA-SCS method for green water estimation. The proper estimation method of green water use is essential for improving accuracy of the results. In this study, the USDA-SCS, the Fixed percentage and the FAO/AGLW methods for the estimation of the green water use of cassava-based ethanol were compared against the daily soil water balance method in order to test the suitability of these methods for water footprinting studies in Thailand. One ton of cassava-based ethanol product was set as a functional unit. The reference year of the data was 2010. The study has shown that the USDA-SCS, the Fixed percentage and the FAO/AGLW methods underestimate the green water footprint by the average of 54, 56 and 70 percent, respectively. The effect of this will lead to overestimation of the blue water component of the water footprint and increase the opportunity costs of blue water uses. Therefore, it can be concluded that all three methods commonly used for estimating green water use are not appropriate for the conditions in Thailand

Biodegradable kinetics of plastics under controlled composting conditions

Thanawadee Leejarkpai, Unchalee Suwanmanee, Yosita Rudeekit, Thumrongrut Mungcharoen

Waste Management · 2011

Analysis of steel production in Thailand: Environmental impacts and solutions

Rungnapa Tongpool, Athiwatr Jirajariyavech, Chantana Yuvaniyama, Thumrongrut Mungcharoen

Energy · 2010

Life Cycle Energy Consumption and Greenhouse Gas Emissions of Polylactic acid (PLA) and Polystyrene (PS) Trays

Unchalee Suwanmanee, Thanawadee Leejarkpai, Yosita Rudeekit, Thumrongrut Mungcharoen

Witthayasan Kasetsat Witthayasat · 2010

This study aimed to assess the energy consumption and greenhouse gas (GHG) emissions of three types of materials used for tray production in Thailand. The materials studied were a polystyrene (PS) tray produced in Thailand and derived from petroleum, a polylactic acid (PLA-baseline) tray, which was produced in the USA and derived from corn, with the third one being a PLA tray with process improvement (PLA-improved). The improvements to the hypothetical PLA-improved tray included using PLA pellets produced in Thailand, using biomass feedstocks for PLA pellet production and reducing the amount of raw materials used in the forming process. The functional unit (FU) was 1,000 units of trays, with each tray being 20 · 14 · 1.5 cm. The first part of the study considered the production of PS trays, PLA trays (PLA-baseline) and PLA trays with process improvement (PLA-improved). The energy consumption and GHG emissions of PLA-improved trays was 51.38% and 63.2% lower than that of PS and PLA-baseline trays, respectively. Consequently, PLA-improved trays generated lower GHG emissions than PS trays by 16.04%, but the energy consumption to produce PLA-improved trays was slightly higher (4.06%) than that for PS trays. In the second part of the study, different waste management scenarios using PS, PLA-baseline and PLA-improved trays were considered. It was found that incineration with energy recovery was suitable with PS trays because it could reduce energy consumption and GHG emissions by 22.7% and 3.4%, respectively, whereas, composting and landfill with energy recovery from methane collection were suitable with PLA-baseline and PLA-improved trays. Composting of PLA-baseline and PLAimproved trays produced a reduction in energy consumption of 6.5% and 12.0%, respectively, while GHG emissions were reduced by 267.7 and 253.9 kg CO2 equivalent/FU, respectively. Landfill with energy recovery from methane collection from PLA-baseline and PLA-improved trays resulted in energy consumption reductions of 17.2% and 31.8%, respectively, with reductions in GHG emissions of 138.3 and 114.3 kg CO2 equivalent/FU, respectively.

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.

Current status and research on E-waste issues in Asia

Atsushi Terazono, Shinsuke Murakami, Naoya Abe, Bülent Inanç, Yuichi Moriguchi, Shin-ichi Sakai, Michikazu Kojima, Aya Yoshida, Jinhui Li, Jianxin Yang, Ming Hung Wong, Amit Jain, In‐Suk Kim, Genandrialine Peralta, Chun-Chao Lin, Thumrongrut Mungcharoen, Eric Williams

Journal of Material Cycles and Waste Management · 2006

Special Feature on the Environmentally Sustainable CityWaste Management and Recycling in Asia

Atsushi Terazono, Yuichi Moriguchi, Yuko Yamamoto, Shin-ichi Sakai, Bulent Inanc, Jianxin Yang, Stephen Siu, Ashok V. Shekdar, Donghoon Lee, Azni Idris, Albert Altarejos Magalang, Genandrialine Peralta, Chun-Chao Lin, Pireeyutma Vanapruk, Thumrongrut Mungcharoen

2005

Multimedia e-learning on technologies for efficient water use

Oscar Anson, Diego Gutiérrez, Francisco José Serón Arbeloa, Adolfo Muñoz, Malini Balakrishnan, Vidya S. Batra, Evan Diamadopoulos, P. Paraskeva, Andrzej Krasławski, Yuri Avramenko, N.P. Ratnayake, B Gunawarrdana, Thumrongrut Mungcharoen

Loughborough University Institutional Repository (Loughborough University) · 2004

One of the Millennium Development Goals is “To ensure environmental sustainability”, with a special task dedicated to\nhalve by 2015 the proportion of people without sustainable access to safe drinking water. This task collides with alarming\nstudies that, for instance, foresee an acute water shortage in India and other Asian countries by 2050. In this conflicting\ncontext we present ED-WAVE, a developing project funded by the Asia-Link Programme, participating six countries\n(India, Sri Lanka, Thailand, Greece, Spain and Finland). Its goal is to create a sustainable international cooperation\nframework and to develop a multimedia tool for e-Learning on technologies for conservation, reclamation and reuse of\nnatural resources. We therefore use IT tools aimed at improving people’s education, including analysis of current water\nuse status in Asia and Europe, review of potential technological interventions, simulation of impacts of specific technology\ninterventions and translation of knowledge into electronic teaching material.

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.

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

Selection of an appropriate technology for pulp production from kenaf

Sunun Limtrakul, Thumrongrut Mungcharoen, Metta Chareonpanich, Krittiya Pitrchart

1997

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