Optimization, Design and Construction of an Experimental Biogas System in a Small Dairy in Colombia

Optimization, Design and Construction of an Experimental Biogas System in a Small Dairy in Colombia PDF Author: Juan Alvaro Gil Donato
Publisher:
ISBN:
Category : Agricultural wastes as fuel
Languages : en
Pages : 256

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Book Description
With the global population reaching approximately 9.7 billion by 2050, questions on how life's necessities - food, energy, water, and infrastructure - will be supplied are becoming more relevant. These necessities generate specific challenges and demand prompt and appropriate solutions. Energy, with its ability to power cities, industry, rural farms, and everyday households, poses a challenge to many regions of the world, especially to those populations located outside major metropolises. This is part of the reason why the development and implementation of alternative energies are being held in the forefront of affordable sustainability. Alternative energies have already played a critical role in today's world by providing on-site energy generation with the adoption of different technologies. For example, anaerobic digestion (AD) is a technology that is being employed by rural communities in emerging countries to improve the quality of life. This alternative technology offers several benefits that could address some of the energy and environmental needs that these communities have incurred. Among those benefits, AD provides clean fuel for cooking, heating, and electricity generation. It is also used to treat wastewater, capture greenhouse gases (GHGs), and produce as an excellent fertilizer for crops. These benefits are more evident in agricultural operations where biomass residues can be used to generate heating or electric energy while offsetting part or all of the operational costs. Biogas systems can be a practical and cost-effective solution to energy generation, allowing small, remote, urban, or rural communities to establish and take full advantage of the benefits. Countries all over the world are promoting and incentivizing rural communities and farms to adopt and utilize this technology, substituting electricity, propane, butane, natural gas, and kerosene. Several countries in Central and South America are implementing AD on a smaller scale compared with eastern countries, normally encouraged by private and public initiatives. Colombia, as an example, is working on determining whether alternative energies should be heavily promoted and subsidized, and if programs encouraging and facilitating people to adopt renewable energies should be carried out. Several challenging factors of this technology need to be addressed to guarantee its success in the most demanding conditions. Currently, most of these solutions are neither cost-effective nor practical. Biogas systems in Colombia have been adopted, mostly by small and medium agricultural operations to generate biogas. However, the extent of the technology implementation is not known. One of the objectives of the World Bank, World Health Organization and United Nations Environmental Programme is to reduce the reliance on fuel wood as a heating and cooking system. The use of indoor biomass as a fuel has been attributed to respiratory illness at an estimated loss in human productivity of 110 million disability-adjusted life years (Putti, Tsan, Mehta, and Kammila, 2015). Exposure of children to wood and other biomass burning fumes can result in long-term respiratory illness (WHO, 2012). Due to the rural demographics and availability of costly traditional alternative energy sources being limited, biogas offers a healthy and cost-effective alternative to the traditional wood fuel option. The purpose of this research was to design an optimized, rugged, cost-effective, weather-resistant, low-maintenance biogas system, capable of withstanding UV degradation, and be puncture-resistant while staying cost-effective and easy to use and maintain. The dairy sector was selected due to its location in rural distribution, high organic content load, and large amount of water use, making it a perfect candidate for anaerobic digestion. This research project was composed of three components: (1) an evaluation phase, to determine the best concentration of solids to water ratio, (2) an optimization phase, to determine how physical chemical parameters affect biogas generation, and (3) an implementation phase, where a biogas system was designed and assembled in a dairy operation located in a rural region of Colombia. This system was designed using high-density polyethylene (HDPE) of 40 mil thickness, which has demonstrated a high resistance to environmental factors and physical damage (Topliff, thesis in preparation). This demonstration was conducted to identify construction needs, resistance, biogas output, as well as local acceptance and interest. The biogas system has the secondary benefit of enhancing micro and macro farming operation (dairy and crops) by substituting costly chemical fertilizers with the biogas effluent, increasing farm resilience and reducing operational costs. The research project was demonstrated at a field day to the local rural community of Victoria, Caldas, and also to several private and public institutions. The goal was to demonstrate the benefits of a biogas system and to address any misconceptions regarding the installation requirements, maintenance, and costs. Among the attendees were local political candidates, swine farmers, cattle ranchers, dairy/cheese producers, waste management companies, Servicio Nacional de Aprendizaje -- SENA (Learning National Service), the University of Caldas, and other nearby communities interested in the project. The project proved to be a successful technical and social experience and is, at present, fully operational, generating 1m3 or three hours of continuous burning gas per day. Community members continue to visit the biogas system, to learn, and integrate biogas into their own operations. One valuable lesson was the need for a comprehensive program to involve the women in the project and to inform them of the health and environmental benefits of using clean and safe biogas.

Optimization, Design and Construction of an Experimental Biogas System in a Small Dairy in Colombia

Optimization, Design and Construction of an Experimental Biogas System in a Small Dairy in Colombia PDF Author: Juan Alvaro Gil Donato
Publisher:
ISBN:
Category : Agricultural wastes as fuel
Languages : en
Pages : 256

Get Book Here

Book Description
With the global population reaching approximately 9.7 billion by 2050, questions on how life's necessities - food, energy, water, and infrastructure - will be supplied are becoming more relevant. These necessities generate specific challenges and demand prompt and appropriate solutions. Energy, with its ability to power cities, industry, rural farms, and everyday households, poses a challenge to many regions of the world, especially to those populations located outside major metropolises. This is part of the reason why the development and implementation of alternative energies are being held in the forefront of affordable sustainability. Alternative energies have already played a critical role in today's world by providing on-site energy generation with the adoption of different technologies. For example, anaerobic digestion (AD) is a technology that is being employed by rural communities in emerging countries to improve the quality of life. This alternative technology offers several benefits that could address some of the energy and environmental needs that these communities have incurred. Among those benefits, AD provides clean fuel for cooking, heating, and electricity generation. It is also used to treat wastewater, capture greenhouse gases (GHGs), and produce as an excellent fertilizer for crops. These benefits are more evident in agricultural operations where biomass residues can be used to generate heating or electric energy while offsetting part or all of the operational costs. Biogas systems can be a practical and cost-effective solution to energy generation, allowing small, remote, urban, or rural communities to establish and take full advantage of the benefits. Countries all over the world are promoting and incentivizing rural communities and farms to adopt and utilize this technology, substituting electricity, propane, butane, natural gas, and kerosene. Several countries in Central and South America are implementing AD on a smaller scale compared with eastern countries, normally encouraged by private and public initiatives. Colombia, as an example, is working on determining whether alternative energies should be heavily promoted and subsidized, and if programs encouraging and facilitating people to adopt renewable energies should be carried out. Several challenging factors of this technology need to be addressed to guarantee its success in the most demanding conditions. Currently, most of these solutions are neither cost-effective nor practical. Biogas systems in Colombia have been adopted, mostly by small and medium agricultural operations to generate biogas. However, the extent of the technology implementation is not known. One of the objectives of the World Bank, World Health Organization and United Nations Environmental Programme is to reduce the reliance on fuel wood as a heating and cooking system. The use of indoor biomass as a fuel has been attributed to respiratory illness at an estimated loss in human productivity of 110 million disability-adjusted life years (Putti, Tsan, Mehta, and Kammila, 2015). Exposure of children to wood and other biomass burning fumes can result in long-term respiratory illness (WHO, 2012). Due to the rural demographics and availability of costly traditional alternative energy sources being limited, biogas offers a healthy and cost-effective alternative to the traditional wood fuel option. The purpose of this research was to design an optimized, rugged, cost-effective, weather-resistant, low-maintenance biogas system, capable of withstanding UV degradation, and be puncture-resistant while staying cost-effective and easy to use and maintain. The dairy sector was selected due to its location in rural distribution, high organic content load, and large amount of water use, making it a perfect candidate for anaerobic digestion. This research project was composed of three components: (1) an evaluation phase, to determine the best concentration of solids to water ratio, (2) an optimization phase, to determine how physical chemical parameters affect biogas generation, and (3) an implementation phase, where a biogas system was designed and assembled in a dairy operation located in a rural region of Colombia. This system was designed using high-density polyethylene (HDPE) of 40 mil thickness, which has demonstrated a high resistance to environmental factors and physical damage (Topliff, thesis in preparation). This demonstration was conducted to identify construction needs, resistance, biogas output, as well as local acceptance and interest. The biogas system has the secondary benefit of enhancing micro and macro farming operation (dairy and crops) by substituting costly chemical fertilizers with the biogas effluent, increasing farm resilience and reducing operational costs. The research project was demonstrated at a field day to the local rural community of Victoria, Caldas, and also to several private and public institutions. The goal was to demonstrate the benefits of a biogas system and to address any misconceptions regarding the installation requirements, maintenance, and costs. Among the attendees were local political candidates, swine farmers, cattle ranchers, dairy/cheese producers, waste management companies, Servicio Nacional de Aprendizaje -- SENA (Learning National Service), the University of Caldas, and other nearby communities interested in the project. The project proved to be a successful technical and social experience and is, at present, fully operational, generating 1m3 or three hours of continuous burning gas per day. Community members continue to visit the biogas system, to learn, and integrate biogas into their own operations. One valuable lesson was the need for a comprehensive program to involve the women in the project and to inform them of the health and environmental benefits of using clean and safe biogas.

Biogas Processes for Sustainable Development

Biogas Processes for Sustainable Development PDF Author: Uri Marchaim
Publisher: Food & Agriculture Org.
ISBN: 9789251031261
Category : Business & Economics
Languages : en
Pages : 244

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Book Description
Intended to assist engineers, government officials and funding agencies to meet present and future challenges and make decisions on the promotion of anaerobic digestion as an alternative source of energy.

Biogas Technology, Transfer and Diffusion

Biogas Technology, Transfer and Diffusion PDF Author: Mahmoud M. El-Halwagi
Publisher: Springer Science & Business Media
ISBN: 940094313X
Category : Science
Languages : en
Pages : 735

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Book Description
The International Conference on the State of the Art on Biogas Technology, Transfer and Diffusion was held in Cairo, Egypt, from 17 to 24 November 1984. The Conference was organized by the Egyptian Academy of Scientific Research and Technology (ASR T), the Egyptian National Research Centre (NRC), the Bioenergy Systems and Technology project (BST) of the US Agency for International Development (US/AID) Office of Energy, and the National Academy of Sciences (NAS). A number of international organizations and agencies co-sponsored the Conference. More than 100 participants from 40 countries attended. The purpose of the Conference was to assess the viability of biogas technology (BGT) and propose future courses of action for exploiting BGT prospects to the fullest extent. The Conference emphasized a balanced coverage of technical, environ mental, social, economic and organizational aspects relevant to biogas systems design, operation and diffusion. It was organized to incorporate experiences that are pertinent, for the most part, to developing countries. In addition to the wide spectrum of presentations and country programs, structured and non-structured discussions among the participants were strongly encouraged in thematic sessions at round-table discussions, and through personal contacts during poster sessions and field trips. It was clear from the enthusiastic response of most participants that the Conference, in large measure, succeeded in fulfilling its mission. Although draft papers were distributed to all participants, it was felt that the results obtained were worthy of organized and refined documentation. And this is precisely what this book intends to do.

Updated Guidebook on Biogas Development

Updated Guidebook on Biogas Development PDF Author: United Nations. Economic and Social Commission for Asia and the Pacific
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 204

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Book Description


Handbook of Bioenergy Crops

Handbook of Bioenergy Crops PDF Author: N. El Bassam
Publisher: Earthscan
ISBN: 1849774781
Category : Business & Economics
Languages : en
Pages : 545

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Book Description
This completely revised second edition includes new information on biomass in relation to climate change, new coverage of vital issues including the "food versus fuel" debate, and essential new information on "second generation" fuels and advances in conversion techniques. The book begins with a guide to biomass accumulation, harvesting, transportation and storage, as well as conversion technologies for biofuels. This is followed by an examination of the environmental impact and economic and social dimensions, including prospects for renewable energy. The book then goes on to cover all the main potential energy crops.

Biogas Production

Biogas Production PDF Author: Nagamani Balagurusamy
Publisher: Springer Nature
ISBN: 3030588270
Category : Science
Languages : en
Pages : 465

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Book Description
This book focuses on biogas production by anaerobic digestion, which is the most popular bioenergy technology of today. Using anaerobic digestion for the production of biogas is a sustainable approach that simultaneously also allows the treatment of organic waste. The energy contained in the substrate is released in the form of biogas, which can be employed as a renewable fuel in diverse industrial sectors. Although biogas generation is considered an established process, it continues to evolve, e.g. by incorporating modifications and improvements to increase its efficiency and its downstream applications. The chapters of this book review the progress made related to feedstock, system configuration and operational conditions. It also addresses microbial pathways utilized, as well as storage, transportation and usage of biogas. This book is an up-to-date resource for scientists and students working on improving biogas production.

Guidebook on Biogas Development

Guidebook on Biogas Development PDF Author:
Publisher:
ISBN:
Category : Biogas
Languages : en
Pages : 148

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Book Description


Livestock's Long Shadow

Livestock's Long Shadow PDF Author: Henning Steinfeld
Publisher: Food & Agriculture Org.
ISBN: 9789251055717
Category : Business & Economics
Languages : en
Pages : 418

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Book Description
"The assessment builds on the work of the Livestock, Environment and Development (LEAD) Initiative"--Pref.

Nature Based Solutions for Wastewater Treatment

Nature Based Solutions for Wastewater Treatment PDF Author: Katharine Cross
Publisher: IWA Publishing
ISBN: 9781789062250
Category : Science
Languages : en
Pages : 344

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Book Description
There are 2.4 billion people without improved sanitation and another 2.1 billion with inadequate sanitation (i.e. wastewater drains directly into surface waters), and despite improvements over the past decades, the unsafe management of fecal waste and wastewater continues to present a major risk to public health and the environment (UN, 2016). There is growing interest in low cost sanitation solutions which harness natural systems. However, it can be difficult for wastewater utility managers to understand under what conditions such nature-based solutions (NBS) might be applicable and how best to combine traditional infrastructure, for example an activated sludge treatment plant, with an NBS such as treatment wetlands. There is increasing scientific evidence that treatment systems with designs inspired by nature are highly efficient treatment technologies. The cost-effective design and implementation of ecosystems in wastewater treatment is something that exists and has the potential to be further promoted globally as both a sustainable and practical solution. This book serves as a compilation of technical references, case examples and guidance for applying nature-based solutions for treatment of domestic wastewater, and enables a wide variety of stakeholders to understand the design parameters, removal efficiencies, costs, co-benefits for both people and nature and trade-offs for consideration in their local context. Examples through case studies are from across the globe and provide practical insights into the variety of potentially applicable solutions.

Waste Valorisation and Recycling

Waste Valorisation and Recycling PDF Author: Sadhan Kumar Ghosh
Publisher: Springer
ISBN: 981132784X
Category : Science
Languages : en
Pages : 587

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Book Description
This book gathers high-quality research papers presented at the Seventh International Conference on Solid Waste Management, held at Professor Jayashankar Telangana State Agricultural University, Hyderabad on December 15-17, 2017. The Conference, IconSWM 2017, is as an official side event of the high-level Intergovernmental Eighth Regional 3R Forum in Asia and the Pacific. As a pre-event, it also aims to generate scientific inputs to the policy consultations at the Eighth Regional 3R Forum co-organised by the UNCRD/UNDESA, MoEFCC India, MOUD India and MOEJ, Japan. At the IconSWM 2017, researchers from more than 30 countries presented their work on Solid Waste Management. Divided into three volumes, this book shares their papers, which address various issues related to innovation and implementation in sustainable waste management, segregation, collection and transportation of waste, treatment technologies, policies and strategies, energy recovery, life cycle analysis, climate change, and research and business opportunities.