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รศ.ดร.ธภัทร ศิลาเลิศรักษา

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78 public publications

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A Tier-Wise Method for Evaluating Uncertainty in Life Cycle Assessment

Awais Mahmood, Viganda Varabuntoonvit, Jitti Mungkalasiri, Thapat Silalertruksa, Shabbir H. Gheewala

Sustainability · 2022

As a decision support tool, life cycle assessment (LCA) is prone to multiple uncertainties associated with the data, model structures, and options offered to practitioners. Therefore, to make the results reliable, consideration of these uncertainties is imperative. Among the various classifications, parameter, scenario, and model uncertainty are widely reported and well-acknowledged uncertainty types in LCA. There are several techniques available to deal with these uncertainties; however, each strategy has its own pros and cons. Furthermore, just a few of the methods have been included in LCA software, which restricts their potential for wider application in LCA research. This paper offers a comprehensive framework that concurrently considers parameter, scenario, and model uncertainty. Moreover, practitioners may select multiple alternatives depending on their needs and available resources. Based on the availability of time, resources, and technical expertise three levels—basic, intermediate, and advanced—are suggested for uncertainty treatment. A qualitative method, including local sensitivity analysis, is part of the basic approach. Monte Carlo sampling and local sensitivity analysis, both of which are accessible in LCA software, are suggested at the intermediate level. Advanced sampling methods (such as Latin hypercube or Quasi-Monte Carlo sampling) with global sensitivity analysis are proposed for the advanced level.

Comprehensive review of groundwater scarcity, stress and sustainability index-based assessment

Haseeb Akbar, Pariyapat Nilsalab, Thapat Silalertruksa, Shabbir H. Gheewala

Groundwater for Sustainable Development · 2022

Water-energy-land-food nexus for bioethanol development in Nigeria

Abass A. Gazal, Napat Jakrawatana, Thapat Silalertruksa, Shabbir H. Gheewala

Biomass Conversion and Biorefinery · 2022

Environmental Sustainability of Waste Circulation Models for Sugarcane Biorefinery System in Thailand

Thapat Silalertruksa, Chanipa Wirodcharuskul, Shabbir H. Gheewala

Energies · 2022

Sugarcane leaves and trash burning during harvesting, and vinasse management, are major challenges of the Thai sugarcane industry. Identification of the appropriate valorization pathways for both the biomass waste streams using the sugarcane biorefinery concept is necessary. This study aims to assess the environmental sustainability of five CE models, including (1) sugarcane trash for electricity, (2) sugarcane trash to biochar, (3) sugarcane trash as a soil conditioner, (4) vinasse as a bio-fertilizer, and (5) vinasse for power generation. Life cycle assessment has been conducted using the ReCiPE midpoint impact assessment method. The results revealed that all waste utilization scenarios can help reduce the environmental impacts compared to the base case. The utilization of sugarcane leaves and trash for electricity generation brings about the lowest environmental impacts due to the environmental credits from the substitution of Thai grid electricity. The utilization of sugarcane leaves can reduce impacts on climate change, terrestrial acidification, and ozone formation by about 20–104%, 43–61%, and 12–54%. Recycling vinasse as bio-fertilizer and for biogas production for electricity generation can reduce climate change impact by about 28–29%. There is a significant improvement of the avoidance of pre-harvesting burning of sugarcane in the Thai sugar industry, which has led to the big potential of sugarcane leaves biomass utilization. Recommendations to enhance the efficiency of using sugarcane leaves and vinasse are discussed. The integrated waste circulation scenarios on cane leaves and vinasses in the sugar-electricity-ethanol biorefinery shows advancement in the bio-circular-green economy (BCG) aspects for enhancing the environmental sustainability of the Thai sugarcane industry.

Sustainability assessment of palm oil-based refinery systems for food, fuel, and chemicals

Shabbir H. Gheewala, Ukrit Jaroenkietkajorn, Pariyapat Nilsalab, Thapat Silalertruksa, Thoranin Somkerd, Navadol Laosiripojana

Biofuel Research Journal · 2022

Palm-based biorefinery system has gained attention worldwide because of potentially high economic returns. However, environmental impacts also increase with the additional production. Therefore, this study aims to assess the sustainability of (1) current palm-based biorefinery system in Thailand, including cooking oil and biodiesel, and (2) palm-based biorefinery system with value-added products, i.e., succinic acid, lactic acid, bio-hydrogenated diesel (BHD), and epichlorohydrin (ECH) that represent biomaterial, biofuel, and biochemical products, respectively. Accordingly, seven palm-based biorefinery scenarios were designed, and their sustainability was assessed through life cycle assessment (LCA), net energy balance (NEB) and net energy ratio (NER), employment generation, and eco-efficiency. The results revealed that value-added production increased global warming impacts by around 3 – 79% compared with the current system. Although environmental impacts increased due to the additional processes related to the production of the value-added products, total product values also increased, especially for succinic acid, generally leading to higher eco-efficiency values. The current palm-based biorefinery system with succinic acid production had the highest eco-efficiency among all the scenarios considered. The BHD production scenario had the highest NEB and NER because the products were used for energy. Employment generation increased for all the scenarios between 2 – 86% compared with the current system.

Water-Energy-Food Nexus Review for Biofuels Assessment

Abass A. Gazal, Napat Jakrawatana, Thapat Silalertruksa, Shabbir H. Gheewala

International Journal of Renewable Energy Development · 2021

The appropriate use of limited natural resources for generating basic human needs such as energy, food, and water, is essential to help the society function efficiently. Hence, a new approach called nexus is being considered to resolve the effects of intrinsic trade-offs between the essential needs. A review of different methods and frameworks of the water-energy-food nexus was done in this article to give a detailed repository of information on existing approaches and advocate the development of a more holistic quantitative nexus method. Assessing biofuels under the water-energy-food nexus perspective, this review addresses the sustainability of bioenergy production. The results show the countries that can sustainably produce first-generation biofuels. Only a few methods have varied interdisciplinary procedures to analyse the nexus, and more analytical software and data on resource availability/use are needed to address trade-offs between these interacting resource sectors constituting the nexus. Also, “land” is suggested as an additional sector to consider in future studies using both the nexus index and life cycle assessment methodology. The review reveals that to tackle composite challenges related to resource management, cross-disciplinary methods are essential to integrate environmental, socio-political facets of water, energy, and food; employ collaborative frameworks; and seek the engagement of decision-makers.

A Framework for the Selection of Suitable Waste to Energy Technologies for a Sustainable Municipal Solid Waste Management System

Ahsan Farooq, Piyanon Haputta, Thapat Silalertruksa, Shabbir H. Gheewala

Frontiers in Sustainability · 2021

Municipal solid waste (MSW) generation has been escalated at a global scale and poses drastic impacts on the environment along with many socio-economic problems. Waste to energy (WtE) technologies have been recognized to convert MSW into useful energy and minimize the problems related to it. This study reviewed different WtE technologies according to the conversion pathways, end-products, and their applications, and assessed statistical values of these technologies based on six different factors, viz., environmental performance, suitable waste fractions, capital and operational cost, efficiency, and complexity of the technology, the skillset of the labor, and favorable geographical location for the plant. The results of this review showed that biochemical and physicochemical WtE technologies are more favorable to convert organic waste, while thermochemical WtE technologies are suitable to process combustible fractions of organic and inorganic MSW. Based on the statistical review of considered factors from the literature, the statistical profiles of concerned WtE technologies were observed. Finally, a general framework in the form of a systematic scheme was proposed for the selection of the most suitable WtE technologies for a sustainable MSW management system. The recommended indicators, methods, and models in the proposed framework were selected after a detailed review of the literature published in well-known scientific journals, and reports of leading international organizations such as the World Bank, International Energy Agency (IEA), and International Labour Organization (ILO). Moreover, the databases to extract the data for the estimation of various recommended indicators have also been presented.

Life Cycle Thinking in a Circular Economy

Shabbir H. Gheewala, Thapat Silalertruksa

2020

Epistemic uncertainty and stochastic analysis in the sugarcane production systems in Thailand – Quantifying the confidence in comparative results

Asmat Ullah, Thapat Silalertruksa, Shabbir H. Gheewala

Journal of Cleaner Production · 2020

Environmental and social life cycle assessment to enhance sustainability of sugarcane-based products in Thailand

Jittima Prasara-A, Shabbir H. Gheewala, Thapat Silalertruksa, Patcharaporn Pongpat, Wanchat Sawaengsak

Clean Technologies and Environmental Policy · 2019

Biofuel Production from Sugarcane in Thailand

Shabbir H. Gheewala, Thapat Silalertruksa, Patcharaporn Pongpat, Sébastien Bonnet

2019

Sustainability analysis of bioethanol promotion in Thailand using a cost-benefit approach

Piyanon Haputta, Nattapong Puttanapong, Thapat Silalertruksa, Athikom Bangviwat, Trakarn Prapaspongsa, Shabbir H. Gheewala

Journal of Cleaner Production · 2019

Efficiency analysis of sugarcane production systems in Thailand using data envelopment analysis

Asmat Ullah, Thapat Silalertruksa, Patcharaporn Pongpat, Shabbir H. Gheewala

Journal of Cleaner Production · 2019

Competitive use of sugarcane for food, fuel, and biochemical through the environmental and economic factors

Thapat Silalertruksa, Shabbir H. Gheewala

The International Journal of Life Cycle Assessment · 2019

Water footprint inventory database of Thai rice farming for water policy decisions and water scarcity footprint label

Rattanawan Mungkung, Shabbir H. Gheewala, Thapat Silalertruksa, Sarocha Dangsiri

The International Journal of Life Cycle Assessment · 2019

Water-energy-food nexus of bioethanol in Pakistan: A life cycle approach evaluating footprint indicators and energy performance

Hafiz Usman Ghani, Thapat Silalertruksa, Shabbir H. Gheewala

The Science of The Total Environment · 2019

Water–Energy–Food Nexus of Sugarcane Production in Ethiopia

Wasihun G. Hailemariam, Thapat Silalertruksa, Shabbir H. Gheewala, Napat Jakrawatana

Environmental Engineering Science · 2019

Abstract Globally, the human population is facing difficulties vis-à-vis the ability to secure a sustainable supply of water, food, and energy due to the rising number of population, urbanization, globalization, and so on. The Ethiopian government has given emphasis on sugar and ethanol production from sugarcane, which will highly increase water and energy utilization in Ethiopia. The study aims to assess the water–energy–food nexus (WEFN) in the sugarcane production sector of Ethiopia. The set of indicators considering the consumption, mass, and economic productivity of water and energy in three different sugarcane producing factories in Ethiopia (Wonji-Shoa, Metehara, and Fincha) has been applied. An integrated indicator, so-called “water–energy–food nexus index (WEFNI),” is calculated to identify and compare the WEFN performance of the study sites. The assessment results helped to understand the water–energy–sugarcane relationships. The best nexus performance was found for Wonji Shoa, which has the highest WEFNI score that is, 0.63, followed by Fincha (0.47) and Metehara (0.45). The nexus assessment showed that the higher energy use in Wonji Shoa due to the modern irrigation technology implemented can be compensated by the reduction of water loss and productivity improvement, which finally lead to the increased WEFNI score. Recommendations such as adoption of modern irrigation system and substitution of fertilizers by filter cake are made for improving the WEFN of sugarcane cultivation. This study helps producers and stakeholders to understand their management performance and take actions to improve their productivity, profit, and resource management.

The impact of sugarcane production on biodiversity related to land use change in Ethiopia

Tilahun K. Semie, Thapat Silalertruksa, Shabbir H. Gheewala

Global Ecology and Conservation · 2019

Ethiopia produces sugar and ethanol from sugarcane as an integrated business. Ethanol production is expected to increase from 30,000 to over 300,000 metric tonnes per year in the second growth and transformation plan (GTP II) of 2020. In GTP II, the total sugarcane plantation area will be 320,000 ha. The intense acquisition of land for large-scale Ethiopian sugarcane plantations has a significant impact on biodiversity. The aim of this study is to assess the impact of sugarcane cultivation on terrestrial biodiversity of Ethiopia as well as on the global species status. Countryside species area relationship model was used to assess the number of species that might be driven to extinction because of land use. The impact was assessed by comparing the status of five taxa: mammals, birds, vascular plant , reptiles and amphibian of the same ecoregion in five broad land use type with three management intensity. The results show that sugarcane cultivation has significant impacts on biodiversity at two stages, which are transformation and occupation, with different magnitudes across five taxa in the three ecoregions. Recommendations for minimizing the impacts of sugarcane cultivation in Ethiopia are suggested including changing the management intensity from intense use to light use.

Land–Water–Energy Nexus of Biofuels Development in Emerging Economies

Thapat Silalertruksa, Shabbir H. Gheewala

Elsevier eBooks · 2018

List of Contributors

Mercedes Ballesteros, Natàlia Caldés, María Dolores Curt, Jean-François Dallemand, Cristina de la Rúa, Rocío Díaz‐Chavez, J M. Barreiro Fernández, Uwe R. Fritsche, Benoît Gabriel, Felipe García Cardona, Shabbir H. Gheewala, Francisco Gı́rio, Israel Herrera, Maria Hingsamer, Jorge Islas, Gerfried Jungmeier, Carmen Lago, Yolanda Lechón, Paloma Manzanares, Fabio Manzini, Omar Masera, Siwa Msangi, Paul F. O’Reilly, Francisco José Domínguez Pérez, Aurélie Perrin, Mateo Prada Quintero, Robert Nicolas, Javier Sánchez, Nicolae Scarlat, Thapat Silalertruksa

Elsevier eBooks · 2018

Eco-Efficiency Assessment of Bioplastics Production Systems and End-of-Life Options

Kunnika Changwichan, Thapat Silalertruksa, Shabbir H. Gheewala

Sustainability · 2018

Bioplastics demand has been increased globally due to concerns regarding environmentally friendly consumption and production. Polylactic acid (PLA), polyhydroxyalkanoates (PHAs), and polybutylene succinate (PBS) are promising bioplastics with bio-based feedstocks and property of biodegradability. They are produced by bacterial fermentation of sugars from carbohydrate sources. With flexibility in their properties, PLA, PHAs, and PBS can potentially substitute conventional plastics such as polypropylene (PP), polyethylene terephthalate (PET), and polystyrene (PS). This study aims at evaluating the environmental and economic sustainability of bioplastics production together with end-of-life (EOL) options. The combination of environmental and economic indicators, eco-efficiency (E/E), was selected to investigate the performance of PLA, PHAs, and PBS from sugarcane and cassava in comparison with PP. The environmental impacts were determined using life cycle assessment. The product cost was used to represent the economic value. The E/E results showed that the environmental and economic sustainability could be enhanced with 100% mechanical recycling of all kinds of studied plastics. It is also important to highlight that mechanical recycling showed a better performance in terms of E/E than composting of bioplastics.

Land-water-energy nexus of sugarcane production in Thailand

Thapat Silalertruksa, Shabbir H. Gheewala

Journal of Cleaner Production · 2018

Implications of Water Use and Water Scarcity Footprint for Sustainable Rice Cultivation

Thapat Silalertruksa, Shabbir H. Gheewala, Rattanawan Mungkung, Pariyapat Nilsalab, Naruetep Lecksiwilai, Wanchat Sawaengsak

Sustainability · 2017

Rice cultivation is a vital economic sector of many countries in Asia, including Thailand, with the well-being of people relying significantly on selling rice commodities. Water-intensive rice cultivation is facing the challenge of water scarcity. The study assessed the volumetric freshwater use and water scarcity footprint of the major and second rice cultivation systems in the Chao Phraya, Tha Chin, Mun, and Chi watersheds of Thailand. The results revealed that a wide range of freshwater use, i.e., 0.9–3.0 m3/kg of major rice and 0.9–2.3 m3/kg of second rice, and a high water use of rice was found among the watersheds in the northeastern region, like the Mun and Chi watersheds. However, the water scarcity footprint results showed that the second rice cultivation in watersheds, like in Chao Phraya and Tha Chin in the central region, need to be focused for improving the irrigation water use efficiency. The alternate wetting and drying (AWD) method was found to be a promising approach for substituting the pre-germinated seed broadcasting system to enhance the water use efficiency of second rice cultivation in the central region. Recommendations vis-à-vis the use of the water stress index as a tool for agricultural zoning policy were also discussed.

Preface

Shabbir H. Gheewala, Thapat Silalertruksa, Pomthong Malakul, Trakarn Prapaspongsa

The International Journal of Life Cycle Assessment · 2017

Water stress index and its implication for agricultural land-use policy in Thailand

Shabbir H. Gheewala, Thapat Silalertruksa, Pariyapat Nilsalab, Naruetep Lecksiwilai, Wanchat Sawaengsak, Rattanawan Mungkung, J. Ganasut

International Journal of Environmental Science and Technology · 2017

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