environmental engineering ReNeWABLe energies

Similar documents
HOW PYROLYSIS WASTE TO ENERGY WORKS

Anaerobic Digestion not just biogas production. FARM BIOGAS Methane consulting cc

Which Technologies. for SWM Treatment? By Eng. Anis ISMAIL Senior Environment and Solid Waste Specialist

Converting Waste into Electricity as a Sustainable Source of Energy

R.I.S.A. Srl Ricerca Ingegneria Sviluppo Ambiente

TECHNOLOGY. E-COMPANY Holding, s.e., Europe

PYROLYSIS EQUIPMENT COMPLEX

This is a draft revision of the briefing, and any comments are welcome please them to Becky Slater on

Kompogas dry anaerobic digestion Energy from organic waste

Chapter page 1

(c) Tertiary Further treatment may be used to remove more organic matter and/or disinfect the water.

Biogas Production from Municipal Solid Waste in Havana, Cuba

Technology Fact Sheet Mechanical-biological treatment (MBT) i

/05. sustainability. of the production chain. From biodegradability. to the second life of. Mater-Bi: our fundamental. concepts for.

Waste-To-Energy New Technologies

Thermal Treatment. For more information, contact us: E :

Biological Treatments

SOLID WASTE DISPOSAL A BURNING PROBLEM TO BE RESOLVED

Kompogas Dry Anaerobic Digestion Energy from Organic Waste

Energy from digester gas. Optimised biogas utilisation

Municipal Solid Waste To Energy Project Overview

THE ITALIAN BIOMETHANE

Options to Approach Zero Waste: Management of Organic Residues

CONTINUOUS PYROLYSIS EQUIPMENT COMPLEX WASTE TO ENERGY SOLUTION

Design and operation of composting plants. Federico Valentini Consorzio Italiano Compostatori

DRY TYPE ANAEROBIC DIGESTION ENVIRONMENT. Endeco

Fuel preparation Phil White, MCIWM

MATERIAL RECYCLING AND BIOLOGICAL WASTE TREATMENT FOR BIOGAS AND NUTRIENT RECOVERY Important parts in a CO2 smart and circular economy

A tognum Group Brand COMBINED HEAT AND POWER FROM BIOGAS

CalRecovery, Inc. 2017, CalRecovery, Inc.

Jenbacher gas engines

Biomass. The latter is not a new concept, homes and industries were, at one time, heated and powered by wood.

DESCRIPTION OF A SYSTEM THAT TRANSFORM S ORGANIC MATER IALS INTO SYNTETIC FUEL S

Solutions for Waste Recycling and Zero-Emission


POLO ECOLOGICO. Energy for the future of the environment

1/14/2017. Treatment options: thermal EST 3201 Waste Management. Chapter outline. Main objectives of treatment. Chapter References

Renewable gases : What are the challenges? François CAGNON CEDEC Gas DAY, February 18, 2013

BIOLOGICAL TREATMENT OF ORGANIC WASTE WE MAKE THE WORLD A CLEANER PLACE

Guidance on use of Disposal and Recovery Codes (Waste Management Act, 1996 as amended)

Torrefaction, Pyrolysis, and Gasification- Thermal Processes for Resource Recovery and Biosolids Management

ENVIRONMENTAL TECHNOLOGY

Chapter 13. Thermal Conversion Technologies. Fundamentals of Thermal Processing

FOOD WASTE TO LOW CARBON ENERGY CONFERENCE APRIL 27-28, 2016 DRY ANAEROBIC DIGESTION FOR MSW ORGANICS

This document is a preview generated by EVS

Chapter Five Waste Processing, Treatment and Recycling Joe Green Dr Chris Wooldridge Cardiff University

CANADA-WIDE APPROACH FOR THE MANAGEMENT OF WASTEWATER BIOSOLIDS. October 11, 2012 PN 1477

Biodegradable Municipal Waste Landfill Ban

Frequently Asked Questions

Hydrous pyrolysis of digestate as alternative to post composting in a biowaste anaerobic digestion facility

State-of-the-art Anaerobic digestion of solid waste

Biodegradable plastics fact sheet

Smart Energy Technologies. Welcome to SET ENERGY SERVICES Green energy and 100% clean mobility integrated within an unique high potential system

MARSS Workshop. Prof. Dr. Ing. Thomas Pretz

Air Clean. Environmental rehabilitation plants Air treatment

INNOVATIONS IN COMBINING AD AND COMPOSTING: PRODUCTION OF BIOGAS, HIGH QUALITY COMPOST AND RECYCLABLE FRACTIONS FROM MIXED WASTE

Small Scale CDM Projects

International Experience: MSW Solutions for Urban Centres in India Waste-to-Energy Options

Recycling urban organic waste to agriculture and horticulture

India s First MSW Treatment Facility

Introduction. Klean Industries is committed to providing commercially viable, environmentally sound waste recycling technologies and systems.

Technical overview and benefits

AŞAĞI ÖVEÇLER MAHALLESİ LİZBON CADDESİ NO:43/4 ÇANKAYA ANKARA ETAB ENERGY

HARVESTING ENERGY FROM WASTEWATER TREATMENT PLANTS

Study of the Conversion of Municipal Solid Waste (MSW) into Liquid Fuel

GIZ Support to Ministry of Urban Development Training on Preparation of City Sanitation Plan Part III State of Telangana

EXECUTIVE SUMMARY PROCESS AND SITE SELECTION

REnescience DONG Energy Enzymatic treatment of waste Value from waste

Ir Dr. Barry Lee. Director, Environmental Engineering Operation, ATAL Engineering Limited 21 st April,

The status of Mechanical and Biological Treatment (MBT)

Biothane Anaerobic Technology Memthane 2.0 WATER TECHNOLOGIES

Anaerobic Digestion (AD) to Manage Food Waste Worth Considering? Lori Scozzafava Gershman, Brickner & Bratton, Inc.

Self-Sustaining Plastic Waste Pyrolyzer/Combustor Power Plant

UNIT 5. Biomass energy

Wastewater Sludge Recycling/Reuse in Japan

Re-use of waste Recycling of waste Recovery of waste Use of waste as source of energy Incineration without energy recovery

CDM OPPORTUNITIES UNDER WASTE MGT IN TZ : By Damian Casmiri, Environmental Protection and Management Services (EPMS).

WASTE & RECYCLING SERVICES

THERMOPHILIC SOLID STATE ANAEROBIC DIGESTION OF OFMSW IN SEQUENTIAL BATCH REACTORS

HISTORY. Sirmet was established in 1989 in order to provide high quality products and services to the business field.

Preparation of City Sanitation Plan Part III. Session 2: Technical Options for CSPs

3R and Zero waste principles realization in Sweden. by. Hans Björk, Swedish Center for Resource Recovery, University of Borås Sweden

Guidelines for Qualifying and Quantifying Waste Diversion from Landfill Claims

Introduction of WEST. Oct WEST Co. Ltd

In nature nothing is created, nothing is lost, everything changes. Antoine-Laurent de Lavoisier

Bio-drying Municipal Solid Waste in a rotary Drum Reactor. The effect of Biomass Temperature and Inoculation

Waste to Energy Assessment Results and Recommendations. Comox Strathcona Waste Management Select Committee Meeting November 28, 2017

Industrial Air Purification. The Promise of Clean Air

Aiming for the Realization of a Low- Carbon Society through Natural Gas

Resource recovery from waste streams: H2020 SMART Plant. Francesco Fatone and SMART Plant Consortium

Two phase AD and composting a way of handling waste and converting it to resources

Think sustainable. thermochemical conversion processes of biomass and waste. torrefaction pyrolysis gasification.

Experimental characterization of municipal solid waste bio-drying

COMPANY PRESENTATION

Management of solid wastes in India - Status and initiatives

Table of Contents. LASAN CLARTS OPF Abbreviated Feasibility Report November 17, Page 1 of 10

WP 3.3: Policy Roadmap for large-scale biogas implementation in Latvia

Mechanical Biological Treatment (MBT) - Processes and Products - Dr. Barbara Zeschmar-Lahl BZL Kommunikation und Projektsteuerung GmbH

"Alternative ways for managing urban organic waste: Current practices and future trends" Prof. Maria Loizidou

MULTI-WASTE TREATMENT AND VALORISATION BY THERMOCHEMICAL PROCESSES. Francisco Corona Encinas M Sc.

Transcription:

environmental ENGINEERING RENEWABLE ENERGIES

The energy of change and innovation for a sustainable development Bioener S.p.A. was estabilished in the 2010 to develope the idea of biomass digestion plants, idea which was concretized with the patent myhenergy and the relative plant. In 2012 Bioener S.p.A. built two Anaerobic Digestion plants for the treatment of animal manure and agricultural by-products. Company Profile Bioener S.p.A is an engineering society that operates in the environmental field, in advice sevices and high level engineering. It offers specialistic skills to private and public clients finding innovative solution. Bioener S.p.A is a Customer Oriented society which satisfies clients through dedicated soluzions with continued support. Since 2013 Bioener S.p.A. deals with separation of solid urban waste through Mechanical-Biological treatment (MBT). Our Mission From 2014 Bioener S.p.A. deals with treatment of special infected waste from different sources. Our work is based on values which provide a truly sustainable development, for the benefit of the population and the environment and economically profitable for those investing in our technology. We believe in the energy of change and innovation for a clean future that respects the environment. In 2015 Bioener S.p.A. presented two initiatives of Project Financing for the plants of treatment of OFMSW and organic waste for the town of Udine and the towns of ARO2 BAT Barletta-Andia-Trani. Our VISION In 2016 Bioener S.p.A. won the project for the construction of the plant of treatment of OFMSW and organic waste for the town of Udine. Thanks to our economic-engineering skills and the know-how from the past experiences we can compete on the italian and international market.

Interventions Areas Renewable Energy MBT plant for MSW Anaerobic Digestion plant of OFMSW and agricultural byproducts Photovoltaic solar plant WATER TREATMENT Wastewater purification Treatments of sludge with anaerobic treatment ENERGY EFFICIENCY Innovative solutions to satisfy the market demand Performance improvement of plant to reduce costs and consumption

The great flexibility of our technology allows the use of a wide variety of organic matrices and not Efficient technology to transform resources into electrical energy, thermal energy, biogas, biomethane, Biochar and products for agriculture and industry

Technology Bioener S.p.A. researches and develops innovative solutions in terms of technology and respect for the environment, according to an eco-sustainable approach both to prevent the formation of possible pollutants (solid waste treatment) and in the pollutants removal processes (water and sludge treatment). Starting from passive prevention activities and pollutants removal, the company maintains an active approach, using virtuously wastes to produce biogas, biomethane, RDF and the generation of renewable energy. Selection of Municipal Solid Waste Goals ENHANCEMENT MATERIALS Energy Recovery: waste becomes valuable resource for energy production; Energy optimization: plants are made by choosing high-quality equipment and studying the process that optimizes the use of input materials; M.S.W. RECEPTION. BAG OPENER SCREEN SEPARATION ORGANIC FRACTION Reduction of CO 2 emissions: for Anaerobic Digestion plants this reduction is attributable to the exploitation of the fermentation process under confinement, with a reduction of 95% compared to the aerobic one, and to the use of biomethane as a fuel for automotive purpose in place of conventional fuels, with a 20-25% reduction; for sorting plants it is due to the reduction of waste sent to the burners or landfills; Abatement emissions from the engine cogeneration: systems for the reduction of NOx, such as the regulation on lenox combustion, and CO, using an oxidizing catalyst, are provided; Safe working environment with zero emissions: suitable collection systems of dust, resulting from all processing phases, allow a change of air into the work rooms, to guarantee the respect of the relative standards for the workplace and dust and odor abatement before the emission into the atmosphere. Acoustic reduction systems are used, such as the soundproof container for the cogeneration module, and it is also provided the respect of the differential noise level near residential areas; Polluting waters abatement: the process water to the purification plant is about 30% water of the total process and it is treated with the SBR (Sequencing Batch Reactors) technology to remove pollutants; Abatement of air emissions: the pyrolysis process takes place in a condition to avoid the formation of dioxins, solving the serious problem of the organic pollution. The pyrolysis gas is chlorinated organic compounds (PCDD-PCDF) free. RDF Bioener S.p.A. realizes plants for the selection of the waste coming from both the differentiated and undiferrentiated collection, to maximize the recovery of secondary raw materials such as plastic, paper and cardboard, and non-ferrous materials, glass, for recycling, a dry fraction usually used for the production of RDF (Refuse Derived Fuel) and an organic fraction, for the biostabilization. PLANT DESCRIPTION: Waste is sent to the shredder with the function of bag secondary materials. This phase can be characterized opener to obtain a waste with appropriate particle size. by separation through machineries or by manual A sieve separates matter into three fractions, a fraction separation. of oversize and two fractions of undersize. The undersize When all the recoverable fractions are separated, the fraction is made of biodegradable material and polluting fraction used for production of RDF, which is triturated material, subsequently removed, the other is made of and pressed. recyclable materials exploitable on the market. The next phase of separation is used to select the

Anaerobic Digestion Composting Biogas COGENERATION RECEPTION PRETREATMENT Liquid ANAEROBIC DIGESTION Digestate Solid BIOGAS CLEANING UPGRADING ORGANIC MATERIALS GREEN MIXER BIOCELLS MATURATION FERTILIZER DEPURATION SEPARATOR COMPOSTING COMPOST Bioener S.p.A. realizes plants for the treatment of organic waste and biomass through anaerobic digestion. These systems are addressed to public reality for disposal of the Organic Fraction of Municipal Solid Waste, to the industries, agricultural and zootechnical activities. Our systems have the advantage to enhance the Organic Fraction, with a production of electricity and heat by cogeneration or otherwise biogas and bio-methane and the production of a high quality stabilized compost. Bioener S.p.A. realizes composting plants to treat the Organic Fraction of Municipal Solid Waste, the Putrescible Organic Fraction and green. PLANT DESCRIPTION: PLANT DESCRIPTION: The organic fraction is pre-treated through a separation centrifuge; the liquid fraction is partly purified while the Biomass arrives to the mixing section. At the end of the accelerated maturation period, system and by biosqueezing before being loaded into solid part is for the composting treatment. Mixer prepare the composting mixture to guarantee the the material is extracted from the bio-cells through the anaerobic digester. The composting process happens in the dedicated quality of the mix, the effectiveness of the maturation mechanical shovel and conferred to the final operations. The anaerobic digestion process consists in the sections to the preparation of the mixture to be processes, the convenience of the operations and the degradation of the organic substance by bacteria in the composted, the biocells for accelerated maturation, optimal management of the reguired green structuring. absence of oxygen. The process produces the biogas the final maturation and the refining of the high quality The mechanical shovel loads the biocells for accelerated and digestate. compost. maturation. The design of accelerated maturation section The biogas is collected in the gasometer and partly sent The upgrading of biogas consists of a desulfurization has high modularity and high theoretical residence time to a cogeneration system for the production of electrical system, a compressor, a scrubber to remove the to guarantee the optimum completion of operations. and thermal energy, partly sent to upgrading system to ammonia, a water and CO 2 removal system. produce biomethane. The digestate is sent to a solid / liquid separator by

Pyrolysis Treatment of waste water and sludge Bioener S.p.A. operates in the area of purification with specific solutions for the treatment of industrial waste and sewage sludge; it has many technologies for the treatment and purification of water that allow to produce energy from renewable PYROGAS THERMAL ENERGY RANKINE CYCLE sources. WASTEWATER TREATMENT: SLUDGE TREATMENT: INPUT MATERIAL PYROLYZER BIOCHAR PURIFIED BIOCHAR MAGNETIC AND NON-MAGNETIC SEPARATOR Bioener S.p.A. realizes pyrolysis plants of RDF, biomass, asphalt and tires. Pyrolysis is a thermochemical process of decomposition of materials, at elevated temperature and in the complete absence of oxygen. Chemical - Physical processes: pollutants removal by a coagulant. Odor treatment with activated carbon or ozone biofilter. Chemical Oxidation processes : to purify highly toxic and inorganic wastes. Aerobic Bio-processes: to remove pollutants through the use of aerobic bacteria. Bio-Anaerobic processes: degradation of organic matter into biogas by bacteria that working in the absence of oxygen. Systems to dispose of substances produced from industrial processes and from the purification of waste waters. Treatments to inhibit, to remove any odors and to control emissions of volatile organic harmful substances. Solar energy PLANT DESCRIPTION: Bioener S.p.A. designs, develops and manufactures equipment for the solar energy recovery from the photovoltaic and solar-thermal technology. The plants are made either as stand-alone structures and in integration with other bio-energy plants. The pyrolytic reactor, said Pyroboiler, is able to in landfill. The biochar is subjected to a removal process PHOTOVOLTAIC SYSTEMS: THERMAL SOLAR PANELS: generate a gas with a high calorific value (pyrogas) and a vegetable charcoal (biochar). The generated pyrogas is extracted from the pyrolysis reactor and sent to a special combustion chamber. The pyrogas used in burners provides the thermal energy required to the pyrolytic process. The combustion exhausted gas of the pyrogas warms the rotating drum. The biochar, containing inert compounds, is extracted from the reactor and treated before being disposed of of magnetic and non-magnetic metals, that are recycled In this way there is a CO 2 sequestration process, since carbon is fixed in a stable form, the biochar, for very long periods (hundreds of years). The thermal energy is used by a Rankine cycle for the production of electrical energy. The photovoltaic panels can directly transform solar energy into electricity. The system can be set up in stand-alone mode or in grid-connected mode, giving the produced energy to the electricity grid. Bioener offers to the customer the management of the complete service, from design to the supply and laying of the panels, to the network attachment and assistance, to perform the request of the public contribution Solar panels allow to capture solar energy to get thermal energy. In the industrial sector thermal solar can save most of the energy normally used for the washing processes with water at temperatures below 100 C. practices.

Our Services Energy efficiency improvement Bioener S.p.A. provides services with a flexibility to support customers at 360 degrees. Bioener S.p.A. is an Energy Service Company, offering integrated services, starting with the energy audit, aim to identify the best achievable actions. The actions in the energy field are aimed to reduce consumption to the rational use of energy, to the use of renewable energy resources and the conservation of the environment and natural heritage to achieve a sustainable development of the territory. The energy efficiency improvement is a process that improve the performance of plants and facilities, to substantially reduce costs and power consumption. Bioener S.p.A., thanks to its experience and high specialization, offers its innovative services through: Technical-Economic-Financial Feasibility Preliminary-Final-Executive Project Project Financing Construction Management Construction Supervision Coordination, Safety and Health Preliminary verification plant; Supervision, Start-up phase and Operating assistance Plant Management Energy system diagnosis; Normative fulfillments; Plant Restructuring and upgrading; Automation and continuous monitoring of the plant; Bioener S.p.A. has achieved the certifications: ISO 9001: Quality Management System; ISO 14001: Environmental Management System. Ordinary and extraordinary maintenance. The duty of the engineering team is to adapt and optimize the best technology available on the market for each type of Thanks to the consolidated know-how, Bioener S.p.A. is able to study and develop customized solutions, calibrate to the different needs of the customer. The only cost to the customer, starting from the signing of the energy service contract, is the energy consumed. Cogeneration plants are not a cost to the customer because all costs for repairs and maintenance will be paid by Bioener S.p.A. The energy is accounted by special instruments placed in plants and the cost sharing with the customer happens by deducting the fuel costs and amortization from the revenues. Bioener S.p.A. maximizes system efficiency and avoids occurring anomalies that affect the operation. intervention to the customer s specific efficiency, size and saving requirements. Bioener S.p.A takes care of customers: BEFORE studying and choosing the best solutions, starting from the analysis to optimize the energy consumption of customers, the planning, through pilot tests, the assistance during the authorization process. AFTER when required, dealing with the management and maintenance of plants, following, on behalf of customers, the authorization procedures and operation management of the incentives for renewable energy.

Bioener S.p.A Via Paolo Emilio Taviani 52-19125 La Spezia Tel. +39 0187 28131 www.bioener.it/en info@bioener.it