Anaerobic Digestion Of Organic Solid Waste For Energy Production

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Anaerobic Digestion of Organic Solid Waste for Energy Production

Author : Satoto Endar Nayono
Publisher : KIT Scientific Publishing
Page : 152 pages
File Size : 53,9 Mb
Release : 2010
Category : Nature
ISBN : 9783866444645

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Anaerobic Digestion of Organic Solid Waste for Energy Production by Satoto Endar Nayono Pdf

Anaerobic digestion of the organic fraction of municipal solid waste as such or together with food waste, press water or patatoes sludge was investigated to equilibrate methane production within a day or over the weekend, when no OFMSW was available. A stable co-digestion process could be achieved with COD degradation between 60 and 80 %. The max. organic loading rates were 28 kg COD/L, d. For stable methane production the OLR during Co-digestion should not excede 22,5 kg/L,

Biomethanization of the Organic Fraction of Municipal Solid Wastes

Author : J. Mata-Alvarez
Publisher : IWA Publishing
Page : 292 pages
File Size : 51,6 Mb
Release : 2002-08-31
Category : Science
ISBN : 9781900222143

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Biomethanization of the Organic Fraction of Municipal Solid Wastes by J. Mata-Alvarez Pdf

Biomethanization of the Organic Fraction of Municipal Solid Wastes is a comprehensive introduction to both the fundamentals and the more practical aspects of the anaerobic digestion of organic solid wastes, particularly those derived from households, that is, the organic fraction of municipal solid wastes (OFMSW). It can be used as a textbook for specialized courses and also as a guide for practitioners. In the first part, the book covers the relevant aspects of anaerobic digestion (AD) of organic wastes. The fundamentals and kinetic aspects of AD are reviewed with particular emphasis on the aspects related to solid wastes. This introduction is necessary to have a comprehensive view of the AD process and to understand the practical principles as well as the origin of possible problems arising from the management of the process. Chapter 2 emphasizes the role of kinetics in designing the reactor, paying special attention to existing models, particularly the dynamic ones. Through this introduction, it is intended to facilitate the technology transfer from laboratory or pilot plant experiences to full-scale process, in order to implement improvements in current digesters. Laboratory methods are described for the analysis and optimization of reactor performance, such as methanogenic activity tests or experimental evaluation of the biodegradation kinetics of solid organic waste. The different reaction patterns applied to industrial reactors are outlined. Industrial reactors are classified in accordance with the system they use, pointing out advantages and limitations. Co-digestion, enabling the co-treatment of organic wastes of different origin in a more economically feasible way, is described in detail. Examples of co-digestion are given, with OFMSW as a base-substrate. Finally, full-scale co-digestion plants are discussed. Various types (mechanical, biological, physico-chemical) of pre-treatment to increase the biodegradability, and thus the yields of the process, are reviewed in detail. The use of the fermentation products of anaerobic digesters for biological nutrient removal processes in wastewater treatment plants is described. This constitutes an example of integrated waste management, a field in which both economic and technical advances can be achieved. Balances are given to justify the approach, and a full-scale case study is presented. The important topic of economics and the ecological advantages of the process are emphasized. The use of compost, the integration with composting technology, and advantages over other technologies are detailed in the framework of an environmental impact assessment of biowaste treatment. Finally, the anaerobic digestion of MSW in landfills is reviewed in detail, with emphasis on landfill process enhancement and strategies for its application.

Bioenergy Production by Anaerobic Digestion

Author : Nicholas Korres,Padraig O'Kiely,John A.H. Benzie,Jonathan S. West
Publisher : Routledge
Page : 473 pages
File Size : 41,5 Mb
Release : 2013-08-29
Category : Technology & Engineering
ISBN : 9781136489648

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Bioenergy Production by Anaerobic Digestion by Nicholas Korres,Padraig O'Kiely,John A.H. Benzie,Jonathan S. West Pdf

Interest in anaerobic digestion (AD), the process of energy production through the production of biogas, has increased rapidly in recent years. Agricultural and other organic waste are important substrates that can be treated by AD. This book is one of the first to provide a broad introduction to anaerobic digestion and its potential to turn agricultural crops or crop residues, animal and other organic waste, into biomethane. The substrates used can include any non-woody materials, including grass and maize silage, seaweeds, municipal and industrial wastes. These are all systematically reviewed in terms of their suitability from a biological, technical and economic perspective. In the past the technical competence and high capital investment required for industrial-scale anaerobic digesters has limited their uptake, but the authors show that recent advances have made smaller-scale systems more viable through a greater understanding of optimising bacterial metabolism and productivity. Broader issues such as life cycle assessment and energy policies to promote AD are also discussed.

Energy from Toxic Organic Waste for Heat and Power Generation

Author : Debabrata Barik
Publisher : Woodhead Publishing
Page : 225 pages
File Size : 44,8 Mb
Release : 2018-11-07
Category : Science
ISBN : 9780081025291

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Energy from Toxic Organic Waste for Heat and Power Generation by Debabrata Barik Pdf

Energy from Toxic Organic Waste for Heat and Power Generation presents a detailed analysis on using scientific methods to recover and reuse energy from Toxic waste. Dr. Barik and his team of expert authors recognize that there has been a growing rise in the quantum and diversity of toxic waste materials produced by human activity, and as such there is an increasing need to adopt new methods for the safe regeneration and minimization of waste produce around the world. It is predominately broken down into 5 sections: The first section provides and overview on the Toxic waste generation addressing the main components for the imbalance in ecosystem derived from human activity The second section sets out ways in which toxic waste can be managed through various methods such as chemical treatment, cracking and Electro-beam treatment The final 3 sections deliver an insight in to how energy can be extracted and recycled into power from waste energy and the challenges that these may offer This book is essential reference for engineering industry workers and students seeking to adopt new techniques for reducing toxic waste and in turn extracting energy from it whilst complying with pollution control standards from across the world. Presents techniques which can be adopted to reduce toxic organic waste while complying with regulations and extract useable energy it Includes case studies of various global industries such as nuclear, medical and research laboratories to further enhance the readers understanding of efficient planning, toxic organic waste reduction methods and energy conversion techniques Analyses methods of extracting and recycling energy from toxic organic waste products

Biogas Production

Author : Nagamani Balagurusamy,Anuj Kumar Chandel
Publisher : Springer Nature
Page : 465 pages
File Size : 44,7 Mb
Release : 2021-01-11
Category : Science
ISBN : 9783030588274

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Biogas Production by Nagamani Balagurusamy,Anuj Kumar Chandel Pdf

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.

Resource Recovery and Reuse in Organic Solid Waste Management

Author : Piet Lens,B. Hamelers,H. Hoitink,W. Bidlingmaier
Publisher : IWA Publishing
Page : 537 pages
File Size : 51,7 Mb
Release : 2004-03-01
Category : Science
ISBN : 9781843390541

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Resource Recovery and Reuse in Organic Solid Waste Management by Piet Lens,B. Hamelers,H. Hoitink,W. Bidlingmaier Pdf

Uncontrolled spreading of waste materials leads to health problems and environmental damage. To prevent these problems a waste management infrastructure has been set to collect and dispose of the waste, based on a hierarchy of three principles: waste prevention, recycling/reuse, and final disposal. Final disposal is the least desirable as it causes massive emissions, to the atmosphere, water bodies and the subsoil. The emission of methane to the atmosphere is an important source of greenhouse gasses. Organic waste therefore gets a lot of attention in waste management, which for Europe can be illustrated by the issue of the Landfill Directive (99/31/EC) and the Sewage Sludge Directive (86/278/EEC). Proper treatment of organic waste may however turn this burden into an asset. In particular, biological treatment may help in developing more effective resource management and sustainable development. The following advantages may be listed: The greenhouse effect is tackled as methane emissions from landfilling are prevented Soil quality can be restored or enhanced by the use of compost in agriculture Compost may replace peat in horticulture and home gardening, reducing greenhouse emissions and wetland exploitation Anaerobic digestion has the additional benefit of producing biogas that may be used as a fuel Pesticide use can be reduced by proper use of the disease suppressive properties of compost Resource Recovery and Reuse in Organic Solid Waste Management disseminates at advanced scientific level the potential of environmental biotechnology for the recovery and reuse of products from solid waste. Several options to recover energy out of organic solid waste from domestic, agricultural and industrial origin are presented and discussed and existing economically feasible treatment systems that produce energy out of solid waste and recover useful by-products in the form of fertiliser or soil conditioner are demonstrated. The potential of environmental biotechnology is highlighted from different perspectives: societal, technological and practical.

Solid Waste as a Renewable Resource

Author : Jimmy Alexander Faria Albanese,M. Pilar Ruiz
Publisher : CRC Press
Page : 304 pages
File Size : 49,8 Mb
Release : 2015-07-24
Category : Science
ISBN : 9781771882392

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Solid Waste as a Renewable Resource by Jimmy Alexander Faria Albanese,M. Pilar Ruiz Pdf

This title includes a number of Open Access chapters. The twenty-first century world faces several enormous challenges: how to mitigate climate change, meet a growing energy demand without relying on fossil fuels, and manage the escalating quantities of solid waste generated by cities around the world. This compendium volume offers a viable solution to all three: using solid waste as a renewable resource. Intended for a wide audience ranging from engineers and academics to decision-makers in both the public and private sectors, this volume has gathered together research into a range of technologies and methodologies. The editors, two well-published researchers at the top of their field, have selected articles that lay the foundation for this discussion. They have then included chapters for the following waste management scenarios: anaerobic digestion, composting, pyrolysis and chemical upgrading, incineration and carbonization, and gasification. Research has been included from around the world, representing potential international solutions to what are global challenges, as well as crucial implications for ongoing research in this important field of study.

Advances in Waste-to-Energy Technologies

Author : Rajeev Pratap Singh,Vishal Prasad,Barkha Vaish
Publisher : CRC Press
Page : 298 pages
File Size : 52,9 Mb
Release : 2019-11-14
Category : Science
ISBN : 9780429751806

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Advances in Waste-to-Energy Technologies by Rajeev Pratap Singh,Vishal Prasad,Barkha Vaish Pdf

As global populations continue to increase, the application of biotechnological processes for disposal and control of waste has gained importance in recent years. Advances in Waste-to-Energy Technologies presents the latest developments in the areas of solid waste management, Waste-to-Energy (WTE) technologies, biotechnological approaches, and their global challenges. It combines biotechnological procedures, sophisticated modeling, and techno-economic analysis of waste, and examines the current need for the maximum recovery of energy from wastes as well as the associated biotechnological and environmental impacts. Features: Presents numerous waste management practices and methods to recover resources from waste using the best biotechnological approaches available. Addresses the challenges, management, and policy issues of waste management and WTE initiatives. Includes practical case studies from around the world. Serves as a useful resource for professionals and students involved in cross-disciplinary and trans-disciplinary research programs and related courses. Discusses the economic and regulatory contexts for managing waste. This book will serve as a valuable reference for researchers, academicians, municipal authorities, government bodies, waste managers, building engineers, and environmental consultants requiring an understanding of waste management and the latest WTE technologies.

Biogas

Author : Abd El-Fatah Abomohra,Mahdy Elsayed,Zuzeng Qin,Hongbing Ji,Zili Liu
Publisher : BoD – Books on Demand
Page : 190 pages
File Size : 42,8 Mb
Release : 2021-04-28
Category : Science
ISBN : 9781839626685

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Biogas by Abd El-Fatah Abomohra,Mahdy Elsayed,Zuzeng Qin,Hongbing Ji,Zili Liu Pdf

Anaerobic digestion (AD) is by far the most important technology for providing clean renewable energy to millions in rural areas of many developing countries. AD of biowastes produces both biomethane and anaerobic digestate as a byproduct that can be used further as a biofertilizer. Biowastes including sewage, food processing wastes, animal wastes, and lignocellulosic wastes typically produce biogas containing 55%–70% biomethane. In the context of energy consumption, more than 85% of the total energy consumed currently comes from non-renewable fossil resources. Biogas technology can provide sustainable, affordable, and eco-friendly energy through waste recycling. This book provides basic knowledge and recent research on biogas production, focusing on the enhancement of biomethane and production routes integrated with microalgae cultivation or agriculture.

Biological Processing of Solid Waste

Author : Sunil Kumar,Zengqiang Zhang,Mukesh Kumar Awasthi,Ronghua Li
Publisher : CRC Press
Page : 224 pages
File Size : 45,5 Mb
Release : 2019-02-13
Category : Science
ISBN : 9781351589079

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Biological Processing of Solid Waste by Sunil Kumar,Zengqiang Zhang,Mukesh Kumar Awasthi,Ronghua Li Pdf

Offering a comprehensive approach, this title covers fundamentals, technologies, and management of biological processing of solid waste. It discusses kinetic modeling and synergistic impact evolution during bioprocessing of solid waste, environmental impacts such as greenhouse gas emission from biological processing of solid waste, energy recovery from solid waste, and biodrying of solid waste. It also presents cases and challenges from different countries, successful business models, and economic analyses of various processing options. Aimed at researchers and industry professionals in solid and hazardous waste management, this title offers a wealth of knowledge to help readers understand this increasingly important area.

Biogas Energy

Author : Tasneem Abbasi,S.M. Tauseef,S.A. Abbasi
Publisher : Springer Science & Business Media
Page : 181 pages
File Size : 47,9 Mb
Release : 2011-11-03
Category : Science
ISBN : 9781461410409

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Biogas Energy by Tasneem Abbasi,S.M. Tauseef,S.A. Abbasi Pdf

In recent years, the importance of biogas energy has risen manifold and has become universal. This is due to the realization that biogas capture and utilization has great potential in controlling global warming. By capturing biogas wherever it is formed, we not only tap a source of clean energy, but we also prevent the escape of methane to the atmosphere. Given that methane has 25 times greater global warming potential than CO2, methane capture through biogas energy in this manner can contribute substantially towards global warming control.

Post Treatments of Anaerobically Treated Effluents

Author : Vinay Kumar Tyagi,Abid Ali Khan,Ng Wun Jern,Anwar Khursheed,A. A. Kazmi
Publisher : IWA Publishing
Page : 457 pages
File Size : 51,7 Mb
Release : 2019-06-15
Category : Science
ISBN : 9781780409733

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Post Treatments of Anaerobically Treated Effluents by Vinay Kumar Tyagi,Abid Ali Khan,Ng Wun Jern,Anwar Khursheed,A. A. Kazmi Pdf

The anaerobic process is considered to be a sustainable technology for organic waste treatment mainly due to its lower energy consumption and production of residual solids coupled with the prospect of energy recovery from the biogas generated. However, the anaerobic process cannot be seen as providing the ‘complete’ solution as its treated effluents would typically not meet the desired discharge limits in terms of residual carbon, nutrients and pathogens. This has given impetus to subsequent post treatment in order to meet the environmental legislations and protect the receiving water bodies and environment. This book discusses anaerobic treatment from the perspective of organic wastes and wastewaters (municipal and industrial) followed by various post-treatment options for anaerobic effluent polishing and resource recovery. Coverage will also be from the perspective of future trends and thoughts on anaerobic technologies being able to support meeting the increasingly stringent disposal standards. The resource recovery angle is particularly interesting as this can arguably help achieve the circular economy. It is intended the information can be used to identify appropriate solutions for anaerobic effluent treatment and possible alternative approaches to the commonly applied post-treatment techniques. The succeeding discussion is intended to lead on to identification of opportunities for further research and development. This book can be used as a standard reference book and textbook in universities for Master and Doctoral students. The academic community relevant to the subject, namely faculty, researchers, scientists, and practicing engineers, will find the book both informative and as a useful source of successful case studies.

Materials and Energy Recovery from the Final Disposal of Organic Waste

Author : Gabriele Di Giacomo
Publisher : Mdpi AG
Page : 184 pages
File Size : 40,5 Mb
Release : 2022-01-10
Category : Technology & Engineering
ISBN : 3036528520

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Materials and Energy Recovery from the Final Disposal of Organic Waste by Gabriele Di Giacomo Pdf

The book is a collection of scientific contributions that highlight how scientific and technological evolution can change the paradigm of organic waste as an environmental problem into a renewable resource of energy and materials. Numerous researchers and research institutions that are located in different countries with varying levels of socio-economic development and other traditions were involved in this work. The materials that were considered include household waste, including human excreta and those generated by typical urban activities. The organic waste was derived from the agro-industrial sector and from packaging labelled as being biodegradable. Problems related to the detoxification of aquatic plants are discussed and the use of these plants for their ability to produce biomethane is documented simultaneously. An organic waste management strategy that was developed in the Albania context is also presented and discussed. Anaerobic digestion is one of the most widely studied technologies in this field, and this process is responsible for the production of biogas or methane, even in fossil resource-rich countries. On the other hand, aerobic fermentation is considered for the degradation of very toxic organic substances that can be dissolved into aqueous solutions that aid in the recovery of valuable materials from electrical and electronic equipment that do not have further use. There are a wide range of arguments and experiences that support the use of waste as a resource through disposal with simultaneous energy enhancement and the production of new materials, thus limiting the use of non-renewable resources for more sustainable development for the benefit of future generations.