Opponents of Covanta rail development want more time for public comment

mobile incinerator
Residents have less than a week left to file formal comments with a state agency overseeing plans for a controversial rail development project at a local waste incineration facility.

The timeframe offered by the New York State Department of Environmental Conservation and the agency’s handling of the announcement have angered several opponents of the project which would allow Covanta Niagara to ship hundreds of thousands of tons of waste, via rail, to Niagara Falls from New York City each year.

“I’m very disappointed with the DEC’s relationship with the public,” said Shirley Hamilton, a Falls resident who was part of a group that protested plans for the rail expansion last year. “I thought the DEC was created to ensure that people, residents, us, were going to be protected.”

Covanta Niagara has been converting waste into clean renewable energy since 1980. The waste-to-energy facility incinerates municipal garbage. The electricity and steam produced at the facility supplies surrounding businesses and the regional electrical grid.

The company’s current permit application proposes the renovation of an inactive, 15-acre rail yard adjacent to the existing facility’s property. According to the DEC’s website listing for the application, the expansion will “more efficiently deliver up to 500,000 tons per year of waste by train in place of delivering the waste by truck.”

The DEC outlined procedures for public comment on the project in an Environmental Notice Bulletin on Sept. 24 and in the Niagara Gazette’s classified section a day later. The deadline to submit comments is Oct. 10.

DEC spokesman Peter Constantakes noted that copies of the application documents are available for review in two repositories in Niagara Falls, including the Doris Jones Family Resource Center on 9th Street and the Earl Brydges Library on Main Street. The documents are also available at the DEC Region 9 office on Michigan Avenue in Buffalo and on the region’s website.

Hamilton and other project critics aren’t pleased with what they have described as a lack of adequate, advanced public notice about the start of the comment period. They argue that 15 days is not enough for residents to digest voluminous materials tied to the proposed expansion plan.

“DEC ought to respond officially as to why they think it’s appropriate to give the community 15 days notice to start shipping New York City garbage to Niagara Falls for 30 years,” said Amy Witryol, a Lewiston resident who has questioned several aspects of the Covanta proposal and raised concerns about its potential impact on the surrounding community. “Why is that a question that deserves 15 days of comment, no hearing, and not even a press release?”

Biomedical Waste Incinerator, 10-15 KG 

Biomedical Waste Incinerator, 10-15 kg

Incinerator Introduction
Manufacturer:
Brand:
Type / Model:
Country of Origin:
Description of Function
The Biomedical Waste Incinerator is used for Incineration of each type of Biomedical Waste.
The Disposal of such Biomedical waste is a very important as it is a dangerous wastes for
human life, and It is only possible with a perfect incinerator.
Operational Requirements
It shall be operated by manual and automated mode.
The combustion efficiency (CE) shall be at least 99.00%.
The combustion efficiency is computed as follows:
C.E.= __%CO2______ x 100
%CO2 + %CO
Emission Standards: Lower emission rates are preferred.
Parameters                   Concentration in mg/Nm3 (12% CO2 correction
Max total dust              30mg/m3
Max Sulphur Dioxide      200mg/m3
Max Nitrogen dioxide    400mg/m3
Max Carbon                     100mg/m3
Monoxide
Minimum stack height shall be 30 metres above ground.
Volatile organic compounds in ash shall not be more than 0.01%.
System Configuration
Biomedical Waste Incinerator, complete unit.
Technical Specifications
Incinerator:
It shall be Electrical or Diesel Fired Incinerator or Controlled Air & pyrolytic.
Type of Waste: Biomedical Waste
It shall have burning capacity 10-15 kg/hr.
Fuel: Diesel
Burner: Monoblock fully automatic burners.
Temperature: Primary Chamber 800 ± 50 oC, Secondary Chamber 1050 ± 50 oC.
Type of Waste: Biomedical waste with moisture content up to 85%.
Destruction Efficiency: 99%.
It shall have separate digital display of temperature for both chambers.
It shall have provision for measuring primary & secondary chamber temperatures using external
thermo coupler.
Secondary chamber gas residence time shall be minimum 1 second at 1050 oC.
Primary Chamber:
Type: Static Solid Hearth
Material of Construction: Mild Steel, 5mm thick
Refractory thickness: approx.115mm thick
Material: Refractory bricks confirming to international standard.
Temperature resistance: 1400 oC
Insulation thickness: approx.115mm thick
Material: Insulation bricks confirming to international standard.
Waste Charging: Manual & Automatic waste charging.
Ash Removal: Manual/automatic
Secondary Chamber:
Type : Static Solid Hearth
Material of Construction: Mild Steel, 5mm thick
Refractory thickness: approx.115mm thick
Material: Refractory bricks confirming to international standard.
Temperature resistance: 1400 oC.
Insulation thickness: approx.115mm
Material: Insulation bricks confirming to international standard.
Waste Charging: Manual & Automatic waste charging.
Emergency Stack:
Type: cylindrical, top mounted on venturi ejector.
Material of Construction: Mild Steel, 3mm thick.
Refractory: 75mm thick castable.
Insulation: 25mm thick castable.
Quencher:
Material of construction of outer body: Mild Steel refractory lined from inside.
Shall have water circulation system with centrifugal pump.
It shall have to reduce flue gas temperature before venturi scrubber.
Shall provide pump motor of suitable capacity.
Air Pollution Control Device – Venturi Scrubber
Type: High pressure jet type.
MOC: Stainless steel – 316L.
Temperature at the outlet: 78-80 oC
Scrubbing Media: Water with 5% caustic
Re- Circulation Pump for Venturi Scrubber
Type: Centrifugal
Application: PP/SS
Piping : PPR
Droplet Separator & Re-Circulation Tank (Integral)
Type: Cyclonic
Application: To separate water droplets from flue gases
Material of Construction: Mild Steel Rubber lined 3mm thick
I.D. Fan:
Type: High pressure centrifugal
Material of Construction: Stainless steel 304, impeller and mild steel rubber lined casting
Drive: Bel
Combustion Fan:
Type: Centrifugal
Modulation: Manual damper control
Material of Construction: Mild Steel
Drive: Direct drive
Burners:
No. of burners: 2 Nos. (1 No. in Primary Chamber and 1No. in Secondary Chamber)
Type: Monoblock fully automatic
Fuel: Diesel
Fuel Oil Storage Tank:
Shall provide suitable capacity of oil storage tank.
Material of Construction: Mild steel.
Facility for visual checking of fuel shall be there.
It shall have diesel consumption monitoring system.
It shall come with diesel oil level indicator, piping with valves & N.R. valve.
Control Panel:
Type: Manual & Automated PLC based control panel with printer & recording device.
Material of Construction: CRCA sheet
It shall have digital temperature controller.
Epoxy powder coated washable paint finish.
It shall have audio-visual alarm system.
Chimney of 30 meters Height:
Material of Construction: Mild Steel
It shall be self-supporting type.
Height shall be 30 meters from ground level.
Paint The chimney is painted externally with two coats of heat resistant aluminum paint
Shall provide ladder till the top.
It shall have 3mm thick rubber lining from inside for protection.
It shall come with aviation lamp, lightening arrestor, stack, drain, inspection platform, sampling
port.
Consumption certificate:
The bidder must submit diesel consumption for a daily operation of 6 hours.
Turnkey:
Prices offered shall be inclusive of all civil works, electrical requirements including cabling and
switches required for installation & commissioning of the equipment.
Bidder shall submit detail drawings, design, and layout plan of civil works.
The bidder shall submit the details of BOQ of civil and electrical works.
Accessories, spares and consumables
All standard accessories, consumables and parts required to operate the equipment, including
all standard tools and cleaning and lubrication materials, to be included in the offer. Bidders
must specify the quantity of every item included in their offer (including items not specified
above).
Operating Environment
The system offered shall be designed to store and to operate normally under the conditions of
the purchaser’s country. The conditions include Power Supply, Climate, Temperature,
Humidity, etc.
Power supply: 220-240 VAC, 50Hz single phase/400 – 420 VAC, 50Hz three phase as
appropriate fitted with appropriate plug. The power cable must be at least 3 meter in length.
Standards and Safety Requirements
It shall have approval of “Pollution Control Board” of purchaser’s country.
All mandatory approvals required for the installation and operation of incinerator shall be done
by the bidder.
Must submit ISO 9001 AND
CE or USFDA approved product certificate.
User Training
Must provide user training (including how to use and maintain the equipment).
Warranty
Comprehensive warranty for 2 years after acceptance.
Maintenance Service during Warranty Period
During the warranty period supplier must ensure preventive maintenance along with
corrective/breakdown maintenance whenever required.
Installation and Commissioning
The bidder must arrange for the equipment to be installed and commissioned by certified or
qualified personnel; any prerequisites for installation to be communicated to the purchaser in
advance, in detail.
Documentation
User (Operating) manual in English.
Service (Technical / Maintenance) manual in English
List of important spare parts and accessories with their part number and costing.
Certificate of calibration and inspection from factory.

incinerator operation video

hospital incinerator manufacturers

SECTION V

 

  • TECHNICAL SPECIFICATIONS OF THE INCINERATOR

 

  • General Description

 

The plant must have four distinct sections that demonstrate three principles of turbulence, residence time and temperature retention. The regulated sections may include but not limited to:

 

  1. Overall plant layout
  2. Feed chamber/charging
  3. Primary combustion chamber
  4. Particulate scrubbers
  5. Acid gas
  6. The stack/chimney.
  7. Minimum capacity of primary chamber = 10cubic meters
  8. Burn rate (rate of waste incineration) = 10 kg per hour
  9. Should have a full width counterbalance loading door allowing easy access to the main chamber for loading and removing ash.
  10. The INCINERATOR should be NEMA approved in accordance with Environmental management and coordination (Waste management) Regulations of 2006.

 

  • Scope Of Work

 

The work specified in the contract will include.

 

  1. Supply, install and commission an incinerator as provided   in the technical specifications

 

  1. Provision for adherence to OSHA and other statutory requirement relating to Health and Safety of workers during execution of the works covered in this

 

  1. Assessment and preparation  and construction of  a standard incinerator shed with one waste  storage room  ( see the design )

 

  1. Provision of operation and maintenance manuals and drawings complete with maintenance schedule and

 

  1. Fuel oil storage tank- Mild steel 1000 liters capacity

 

  1. Onsite training for operation and maintenance

 

IMPORTANT

To enable the Employer undertake conclusive evaluation of the tender, tenderers are requested to submit with their offers the detailed specifications, drawings and catalogues with Commissioning and maintenance instructions for the Incinerator they intend to Supply, install and commission.

Tenderers who fail to comply with this requirement fully shall have their tender rejected.

 

  1. TECHICAL SPECIFICATIONS OF THE INCINERATOR

 

3.1  Feeding and Charging

 

Controlled hygienic mechanical feeding that does not negatively influence the air temperature in the primary and secondary chambers of the incinerator shall be used.

 

  • Primary Combustion

 

  • This chamber should be equipped with burners that use low sulphur
  • The chamber should ensure a minimum exit temperature of 850 degrees
  • This unit should operate at over 1100 deg C to ensure complete
  • This chamber should be equipped with burners that use low sulphur
  • Heavy-duty steel casing
  • High quality refractory lining and insulation
  • Large full size top load door and liquid retention
  • 1 x oil fired ignition burners operated on/off

 

 

  • Secondary Combustion Chamber (After burner)

 

  1. Heavy-duty steel casing
  2. High quality refractory lining and insulation
  3. 1 x oil burner
  4. Should be fitted with burners that use low sulphur
  5. Ensure secondary air supply is controlled.
  6. Ensure residence time is not less than two seconds.
  7. Ensure that the gas temperature as measured against the inside wall in the secondary chamber and not in the flame zone is not less than 1100 degrees
  8. Ensure the emitted oxygen content of the emitted gases is not less than 11%
  9. Ensure both primary and secondary combustion temperatures are maintained until all waste is completely

 

  • Particulate Removers

A mechanical particulate collector must be incorporated after secondary combustion chamber for removal of particulate pollutants entrained in the flue gas stream. The particulate collectors may include any of the following or a combination thereof:

 

  1. Cyclone separator
  2. Electrostatic precipitators
  3. Fabric filters

 

  • Chimney/Stack

 

  1. The chimney should have a minimum height of 10 meters above ground level and clear the highest point of the building by not less than 3 meters for all The topography and height of adjacent buildings within 50 meters radius should be taken into account.
  2. The chimney should be visible to the operator from the feeding

 

  1. The minimum exit velocity should be 10 meters per second and at least twice the surrounding wind speed (Efflux velocity = wind speed x 2) whichever is higher to ensure no down washing of exiting
  2. The point for measurement of emissions shall be

 

  • Instrumentation

 

  1. Instrument for determining the inside wall temperature and not burner flame temperature must be provided for both primary and secondary
  2. An audible and visible alarm must be installed to warn the operator when the secondary chamber temperature drops to below the required
  3. A carbon monoxide and oxygen meter/recorder should be
  4. A smoke density meter/recorder should be
  5. A solid particulate meter/recorder should be
  6. Any other instrument that may be considered

 

  • Location / Siting of the Incinerator

 

  1. a) The incinerator must be sited in accordance with the relevant local municipal authority planning regulations and the topography of the site must be compatible with premises in the

 

  • Emission Limits

 

  1. Combustion efficiency (C.E) shall be at least00% where C.E = %Carbon dioxide x 100 / [% Carbon dioxide + carbon monoxide]
  2. The temperature of the primary chamber shall be 800 +/- 50 degrees centigrade
  3. The secondary chamber gas residence time shall be at least 1 second at 1050 +/- 50 degrees centigrade with 3% oxygen in the stack
  4. Opacity of the smoke must not exceed 20% viewed from 50 metres with naked
  5. All the emission to the air other than steam or water vapour must be odourless and free of mist, fume and
  6. A 99.99% destruction and removal efficiency (DRE) for each principal organic hazardous constituent (POHC) in the waste feed where DRE [ ( Win – Wout) /Win ] x

100 where Win = mass feed rate of the POHC in the waste stream fed to incinerator and Wout = mass emission rate of POHC in the stack prior to the release to the atmosphere.

  1. The average dioxin and furan concentration in the emission should not exceed 80mg/m3 total dioxins and furans if measured for a period of 6 to 16

 

  • Ease of Use

 

  1. Auto
  2. No pilots to
  3. Automatic control and temperature monitoring
  4. Built-in skid facilitates placement

 

  • Fuel Efficiency

 

  1. Rapid incineration means low fuel

 

  1. Up to 20kgs per hour (dependant on application).
  2. Thick refractory lining rated to 1400 deg C in main chamber retains heat, increasing

 

  • Quality Built to Last

 

  1. Heat resistant 3mm
  2. Stainless steel

 

  • Key Features

 

  1. Low running and maintenance costs
  2. Fully Automatic and simple to operate control panel
  3. Afterburner Preheat
  4. Incineration Temperatures in Excess of 900 degrees C
  5. 3 mm Steel Casing and Fully insulated
  6. Dense Refractory Concrete Lining Rated to 1400 degrees C
  7. Solid Hearth to Allow Maximum Burnout
  8. Large Top Opening Lid For Easy Loading
  9. Stainless Steel Flue as standard
  10. 12 Months or 1000 hours
  11. Optional Stainless Steel Casing
  12. Heat Recovery System option

 

3.13 Fuel and Capacity  
1. Low sulphur fuel
2. Capacity (Cubic Mtr) .10
3. Average Capacity 40kg
4. Fuel Consumption (ltrs / hr) 3

 

  • External Dimensions

 

1. Length (mm)               735  
2. Width (mm)                500
3. Height Incl. Flue (mm) 1960
4. Door Opening (mm) 325 x 325

 

  • Internal Dimensions

 

1. Length (mm) 620
2. Width (mm) 390
3. Height 500

 

  • Operation

 

  1. Minimum Operating Temperature 950
  2. Maximum Operating Temperature 1320

 

 

3. Burn rate per hour 5-20kgs
4. Temperature Monitoring Available

 

 

  • Particulate Removers

 

 

A mechanical particulate collector must be incorporated after secondary combustion chamber for removal of particulate pollutants entrained in the flue gas stream. The particulate collectors may include any of the following or a combination thereof:

 

  1. Cyclone separator
  2. Electrostatic precipitators
  3. Fabric filters

 

  • Chimney /Stack

 

 

  • The chimney should have a minimum height of 10 meters above ground level and clear the highest point of the building by not less than 3 meters for all The topography and height of adjacent buildings within 50 meters radius should be taken into account.
  • If possible the chimney should be visible to the operator from the feeding
  • The addition of dilution air after combustion in order to achieve the requirement of these guidelines is
  • The minimum exit velocity should be 10 m/s and at least twice the surrounding wind speed (Efflux velocity = wind speed x 2) whichever is higher to ensure no down washing of exiting
  • Point for the measurement of emissions shall be

 

  • Control Panel

 

  1. Control of 2 burners
  2. Timer control 0- 12 hours
  3. Integral fan timer control
  4. Temperature and thermostatic control

 

 

 

 

 

 

 

SCHEDULE 2

 

 

NO: REQUIREMENTS SUPPLIER’S REMARKS
1. Experience

 

Previous experience in the supply, installation and commissioning of  incinerators

 
2. 1 Year Maintenance Contract  
3. Work rate

 

at least10kg per day

 
4. Design

 

Basic Plan design to Provide Overall plant layout. With Feed chamber/ charging, Primary Combustion Chamber. Secondary Combustion Chamber. Particulate Scrubbers, Acid Gas Scrubbers, The stack/ chimney.

 

Fuel oil tank storage should be   Mild steel 1000 liters capacity

 

Chimney Height should be of 10 meters above ground level.

Housing facility with one waste storage room

 

 

Provide Housing designs with adequate cross ventilation

 

Chamber (Afterburner Maximum exit temperature should not be less than 1100oC

 
5. Standard control panel

 

Safety interlock, Fan Starter, Burner on/ off switch/door safety switch, Auto close down switch, temperatures control mechanism.

 
6. Combustion Chambers

 

Primary Combustion Chamber Minimum exit temperature should not be less than 850oC

 

Secondary Combustion Maximum exit temperature should be not less than 1100oC

 

 

SECTION VII

 

PRICE SCHEDULE FOR GOODS

 

Price schedule for Supply, Installation, Testing and Commissioning of an incinerator for Turkwel Power Station

 

1 2 3 4 5 6
Item Description Unit of sale Quantity Unit price Total price
1. Supply, install, and commission the incinerator as specified. LOT 1    
2. Construct a standard incinerator housing facility as per the drawing and architectural notes provided  

LOT

 

1

   
4. Construct one  waste  storage  room (provide specs on room size, construction material etc) LOT 1    
5. Supply / adhere to  the requirement of OSHA 2007 act

49,50,51,60,61,77,78,79,80,81,100

LOT 1    
6. Onsite training of Operation and Maintenance staff. LOT 1    
7. All the key Spares (Attach a separate List) LOT 1    
8. Supply and install 1000 liters Fuel oil storage tank and its secondary containment with Diesel oil level indicator and necessary piping with valves for visual checking of fuel level. LOT 1    
9. Supply of Operation and Maintenance Manuals.  

LOT

1    
10. All other items not specified but necessary to complete the Installation.   A separate list of these items to be attached.  

LOT

1    

 

 

11. Fencing of  a compound  of 10 meter length  by 10 meter  width   using Concrete  poles  high Gauge mesh wire , and a lockable gate. (Indicate size and design of gate) LOT 1    
  Sub Total        
           
  Discount  (%) if any        
  Applicable Taxes and Duties        
           
  Total Cost in Kshs        

 

containerised Hospital waste incinerator

One 40′ Standard – containerised Incinerator, and understand you can help us with the procurement of the same.Waste type or application  : General and Medicine

Capacity kgs / hour             : 75 to 350
Hospital and Laboratory equipment. .

One of our valued customer is interested to purchase a Hospital Waste incinerator as per following specifications:

Hospital waste incinerator
Capacity: 50 Kg / Hour
Brand new complete working unit
Burners: Dual fired (Gas and diesel)
20ft container with an incinerator plant for burning solid waste including the following main items:

1. INCINERATOR
2. SPARK ARRESTER
3. FLUE GAS STACK / EXHAUST PIPE
4. DIESEL OIL DAYTANK 400 L NET
5. INTEGRATED FIRE FIGHTING SYSTEM
6. INSTRUCTION MANUALS
7. SPARE PARTS FOR 1 YEARS OPERATION
medical waste  incinerator is from 2.5 to 3 cubic meters and it’s capacity is from 60 t0 100kg per hour.

INCINERATOR DIESEL FIRED

Incinerator 20 Kg
Incinerator electrically operated
including:
 A cage for receipt of biomedical waste;
 A combustion chamber with fireplace with a filter to retain ashes;
 A cover;
 An air supply;
A turbine  allowing supply air.
 Combustion temperature: 1800 ° C.
Comes with all accessories.     ▪      The incinerator should be a modern waste disposal unit, designed
to bum medical waste in a clean and environmentally efficient
manner. It should employ a temperature based logic control system
to provide optimum control of the operating conditions and
incorporate a high capacity thermal oxidizing secondary chamber.
It should be designed to retain the exhaust gases, for at least 2
seconds to ensure the unit’s effective destruction of the combustion
products.
▪      All the incinerators to be supplied and installed meet the
Waste Management Regulation 2006, legal notice No. 121 of
29th September 2006 and in particular 3rd schedule regulation
(26, 47) pertaining classification, standards, criteria, and
procedure for installing and operating incinerators.
▪      The capacity of the incinerator required should be to the
specifications with a capacity to burn 100kgs/Hr.
▪      The incinerator shall be run on a three-phase power supply
(mains).
▪      For the technical evaluation, not only the treatment plant but
the entire system will be considered. It will be the responsibility
of the Bidder to supply a full system, including all eventually
additionally necessary secondary systems and additional
equipment.
▪      The system offered shall be designed to operate normally under
the conditions of the purchaser’s country. The conditions include
Power Supply, Climate, Temperature, Humidity, etc.
▪      The Bidder must provide a warranty for one year.
▪      All text, parameter etc. on all control operating interfaces as
well as on information displays and on print-outs shall be in
English language.
▪      The Bidder is responsible for all permits and approvals for
importation. The Bidder shall provide all the necessary
documentation in order to facilitate the legal requirements for the
installation and putting into use of the equipment.

▪      Period of Execution is 90 days from contract signature for
delivery to site and completion of all verification operations
required for the issuance of provisional acceptance.
▪      Representatives of the Contracting Authority and the
Beneficiary, together with the Bidder’s representative, shall
carry out the controls, testing and initial approval for provisional
and final acceptance. The provisional and final acceptance shall
take place at the final destination.
▪     After-Sales Service: The Bidder is required to ensure that a
maintenance, service and repair centre, which is authorized by
the Manufacturer, and which is able to rapidly supply genuine
spare parts and consumables recommended by the Manufacturer
is available throughout the one year warranty period. In
fulfillment of this requirement with their offer, bidders must
submit a statement signed by the manufacturer or representative
of the manufacturer:
ͦ Providing the name and address of its authorized
maintenance, service and repair centre,
ͦ Confirming that this authorized maintenance, service and
repair centre is able to rapidly supply genuine spare parts and
the consumables recommended by the Manufacturer; and
▪      The Bidder will be responsible to deliver and install all
equipment supplied to the hospitals in the
Republic of Kenya. The Bidder shall deliver a time schedule over
the complete construction and assembling period. The delivery
and installation time must be agreed between bidders, target
Hospital and the Contracting Authority. The treatment plant must
arrive pre-assembled. The Bidder shall ensure that all parts of
the plant transported by sea shall not be shipped as “deck
cargo”.
▪      It is expected that the Bidder cooperates closely with the
contractor for the new waste handling building/ housing and will
make available all needed technical information, drawing, etc. to
the contractor.
▪      The Bidder shall supply and install the incinerator with the
following attached specifications

For the Supply, installation & commissioning of a Medical Waste Incinerator as detailed below:
i.    Waste type    Health care waste
ii.    Waste density    125 to 350Kg/M3
iii..    Waste Calorific Value    4000 KCAL/Kg
iv.    Moisture content    10-25%
v.     Estimated ash  residue    5-10%
vi.     Nominal capacity     100Kg/hour batch load
vii.     Secondary chamber    2 seconds @ 1100°C
viii.    Environmental    Environmental Management Coordination Act, 1999 and in particular, Waste management regulations, 2006
2    Equipment
2.1    Primary Combustion Chamber
▪       The primary combustion chamber is the main structure of the
incinerator, fabricated from mild steel plate and stiffened with
rolled steel sections. It is carried from the floor level on a
substantial steel support frame. Internally the shell is lined with
calcium silicate insulation and a hot face combination of super
duty brickwork or high strength castable.
▪       The primary combustion chamber must ensure minimum exit
temperature is not less than 850°C.
One Manual Load Incinerator comprising:
▪       Manual Loading door (heavy duty steel door with appropriate
refractory lining)
▪       Horizontal solid hearth, refractory lined primary combustion
chamber. Approximate dimensions 800 mm diameters x 2100mm
long
▪       Full sized bulk load/ash removal door
▪       1 off diesel-fired ignition burner — temperature controlled
▪       1 off combustion air supply fan and distribution system, automatic
control
▪       High capacity secondary combustion chamber with residence time
not less than 2 seconds @ >1100°C
▪       1 off diesel-fired afterburner — temperature controlled
▪       Control panel — automatic operation
▪      Temperature indication primary and secondary chambers 0-
1200°C. Both chambers must be insulated with refractory
material (super duty 100mm thick firebrick with 25mm thick
calcium silicate insulation)
Note: The secondary combustion chamber must ensure that the gas temperature as measured against the inside wall in the secondary chamber & not in the flame zone, is not less than 1100°C.
2.2     Throughput
100kg/hour at a nominal calorific value of 4,000 kcal/kg and an average bulk density of I20kg/ M3 for general waste and l60kg/ M3 for health care waste.
2.3    Ash
The waste will be reduced by 90~95% to leave 10 -5% ash
2.4    Quality/Environmental Standards
▪       Environment Management and Coordination Act, 1999
▪       BS3316
2.5    Operating Period
▪      Anticipated daily operating period 8 hours
▪      Maximum operating period 12 hours
2.6    Chamber
▪      Should be refractory lined to the following standard; Hearth and
lower section of chamber walls
2.7    Hot face material
▪      Super duty firebrick
▪      Limiting continuous service limit 1500°C
▪      Thickness 100mm
▪      Thermal conductivity 1.3 W/mk
2.8    Insulation
▪      Calcium silicate
▪      Limiting continuous service limit 1000°C
▪      Thickness 25mm
▪      Thermal conductivity 0.095 W/mk
2.9     Chimney / Stack
▪      Should be manufactured from refractory lined mild steel or high
quality air-cooled stainless steel. The chimney/stack should have a
minimum height of 10 meters above ground level.
▪      Refractory lined flanged chimney must be above the height of
any existing roof adjacent to the incinerator
▪      Provide lifting gear to hoist, erect and mount chimney, and
provide supports slings as necessary. Allow for cutting of tree
branches to facilitate the exercise.
▪      The chimney shall be painted with approved heat resistant
paint after installation.
2.10     Ignition Burners
Fully packaged oil type, complete with electric ignition and flame failure controls, wired with continuous running fan and complete with all valves, fan and motor.
·         Maximum rating:            at least 450kW/hour
·         Burner:                            arranged for on/off operation
·         Maximum consumption: at least 6 litres/hour
·         Average consumption:    at least 3 litres/hour
2.11    Afterburner
Fully packaged oil type, complete with electric ignition and flame failure controls wired with continuous running fan and complete with all valves, fan and motor.
Maximum rating:    at least 450kW/hour
Burner:    arranged for on/off operation
Maximum consumption:    at least 9 litres/hour
Average consumption:    at least 4.5 litres/hour
2.12    Flue gas treatment
▪      Should have particulate remover (scrubbers). A mechanical
particulate collector must be incorporated after secondary
combustion chamber for removal of particulate pollutants
entrained in the flue gas stream.
2.13    Diesel Tank
▪      To provide for diesel services tank (Capacity 400 litres)
including level indicator
▪      The tank should be connected to the incinerator at higher level
to enable free-flow of diesel from the tank to the incinerator.
The connecting pipe must be a black pipe of approved gauge
and diameter. Include other accompanying accessories and
fittings
▪      Connect burners to fuel supply.
2.14     Electrical Supply
▪      Three phase 415 V a.c., 50/60 Hz.
3    Documentation:
Operation manual    2 sets
Service/maintenance manual    2 sets
4    Certification
▪      National Environment Management Authority (NEMA)
certification
5    Capacity to service equipment
▪      The agent/supplier shall have adequate facilities, spare parts,
consumables and qualified and skilled technical staff.
Installation works
▪      Provide lifting gears as forklift, gantry, rollers, and lifting
jacks and position incinerator.
6    Commissioning and Training
▪      The Agent will test all set operating parameters

▪     The agent shall conduct a two days operation & maintenance
training to the Biomedical engineering personnel and incinerator
operators after installation & commissioning of the equipment.
7    Commissioning Maintenance Contract
▪     Before the expiry of the warranty/ signing off, the supplier shall
provide a one-year replacement service parts (e.g. oil filters, air
filters), the Quarterly routine maintenance price per quarter
for three (3) quarters.

Maintenance control proposal.
▪      The maintenance contract price includes labour, transport and
accommodation for the attending technicians.

Supply, Installation and commissioning of Waste Incineration system

De manera atenta solicito me colabore con la cotizacion del incinerador incluyendo envió.Puri group a hospitality business in Indonesia is interested to introduce renewable energy in Indonesia or to use the energy sources for its facility around Indonesia. Kindly request to have more information on incinerator technology as it is needed to process 100 ton to 500 ton waste aday. In the Frame of our Specialized Projects Management, we are currently in search for supplier of Waste Incineration system for hazardous waste, the incineration system will be used for incineration of Prohibited Drugs and toxic materials, waste poultry, Dead Animals “cows, goats”, Spoiled vegetables, Etc. at customs Ports. For that we would like to request for your technical and Financial Proposal for supply , installation and Commissioning of Hazardous Waste Incineration system with incineration capacity of at least 400 Kg/ hr.

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The proposal should include the complete description of the whole system: Total cost of supply, Installation, commissioning, Automatic feeding, automatic de- ashing during operation, and efficient gas cleaning system (wet, dry or high temperature ceramic filters), continuous emission monitoring system (CEMS), and all    other    accessories, Control    panel    for    all     components     of     the system, Troubleshooting alarm system covering all components of the system, to notify the operator for the fault that may arise during the operation, and to perform immediate corrective action, Emergency Stop button that can easily shut off / shut down all major part of the system in case of emergency situation. Primary chamber capacity/ Average capacity per patch Load: 3000 Kg, Incineration capacity per hour 400 Kg/hr., Loading system: side loading, Number of burners: minimum 7 burners, (5 for primary chamber, 2 for secondary chamber), Fuel: Diesel, The system should work continuously for at least 12 hours per day, The primary chamber: Heavy- duty anodized Rust resistant steel casing with minimum thickness 7mm. painted with heat reflective paint, internal heavy duty refractory cement lining and insulation for maximum heat retention. Cost of supply, installation, operation cost including fuel consumption per hour, and cost of other consumable materials treatment materials (consumption rate per hour and unit cost each), delivery time till operation, Layout for the whole three units and gas cleaning systems, considering minimum are required for the system “including enough area for operation and handling”, Confirmation letter that gas emission from the system after gas cleaning should comply with Saudi regulations for gas emissions (stamped letter and Emission comparison table showing the emissions from your system compared with Saudi regulations “attached”)

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•    Incinerator should have two (2) chambers: primary chamber with five (5) burners to incinerate materials and the secondary chamber with two (2) burners to incinerate exhaust gases.
•    The main body of the incinerator shall be stainless steel and the outside insulation thickness of not less than 7 mm made from zinc or phosphate for temperature insulation
•    The main gate of the Incinerator should be 150 mm thick and strength not less than 170 kg/m3. The door should be automatic with remote to operate.
•    The Incinerator should be designed in accordance of the environmental regulation followed in country of  origin or  as per  Saudi Arabian PME Regulations.
•    The incinerator should have fuel storage with capacity of 1000 liter.
•    The incinerator shall have the capacity to operate with temperature up to 1300 OC in the primary chamber and it can remove the residual while the incinerator is in operation
•    The inside body of the incinerator should have insulation layer made of calcium with thickness of 50 mm while the thickness of the internal surface should be 100 mm in order to stand with 1300 OC.
•    All the supporting braces of the incinerator shall be installed on stainless steel.
•    The gap between the internal and external body shall be filled with the special insulation material.
•    The exhaust shall not stay more than two (2) seconds in the secondary chamber and this chamber shall be built with high density of ceramic oasis.
•    There should be a stack with four (4) meter from the top surface of the incinerator and can be removed and installed.
•    The incinerator shall have control device for exhaust gases so that the emission shall meet the PME source standards
•    The power supply should be 220 – 380 Volts, 60 Hz. and the incinerator shall be provided with control panel showing the following:

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•    Temperature of primary and secondary chamber.
•    Condition of pressure gages.
•    Alarm showing if there is any leakage or misconducting in the electricity.
•    Indicator for overloading the burner.
•    Timer for automatically switching off the incinerator.
•    All the incinerator parts including fuel pumps, fans, valves and pipes can be operated in high ambient temperature (50OC)
•    All  parts  of  the  incinerator  shall  be  painted  in  one  color  which  should  be resistant to high humidity, high temperature and high dust / sandstorm.
•    3 years warranty with spare parts and technical supply and
•    10 years warranty for  providing spare  parts starting from the  date  of first warranty expiry
•    Provide all the list of consumable items like, filters, sorbents, etc.

The bidder shall provide all necessary details related to the facility dimensions, space area required for the whole system and all operation requirements, Details about required facility (hanger) including Layout, civil work and electromechanical details including electricity, water pipes, fuel pipes, tanks, etc. Complete Drawing & 3D drawing Clearly Show All Sections and Details of the System. List of spare parts and checklist. Required Operation staff, Fuel consumption rate of the whole system. Since our project is a turnkey project including Design, Build & Operate of central incineration facility covering all the above mentioned details and we have to coordinate all civil works and necessary requirements to operate the system.

waste incinerator manufacturer china

waste incinerator manufacturer china, Waste chamber
Chamber capacity 300 kg
Chamber volume .54m3
Chamber size (outside) Width: 91cm, Height: 86cm Length: 152cm
Door opening 66 x 76 cm
Height to door 84 cm
Height to top of stack 5.4 m
Suggested slab size (L x W x Thickness) 1.8 m x 2.4 m x 10 cm
Burn rate: Approximately 45 kg/hr.
Stack:
2′-14″” dia. (36 cm), 14 gauge (1.90 mm) aluminized steel, refractory lined
8′-12″” dia. (30.5 cm), 16 gauge (1.52″
“Burners Diesel
Operation Manual timer
Electrical service Standard – 115 volt, 60 HZ, 20 amp
General Description:
Primary Chamber: Heavy-duty steel casing
High quality refractory lining and insulation
Large full size top load door and liquid retention sill
1 x diesel oil fired ignition burners operated on/off
Ash removal door
Chimney: Heavy-duty stainless steel casing
1.5m length
0.6m refractory lined stack
Control Panel: Control of 1 burner
Timer control 0-12 hours
Integral fan timer control
Temperature monitoring
Automatic Control
Cycle time set up
Ancillaries: Operating and maintenance manuals
Spares list
Ash Rake
Containerization: 20 foot shipping container with incinerator fitted
500 litre fuel tank