Archive: July 27, 2021

Shenzhen Baedal Electronics

May 22, 2019 Performance and case 386 views

Shenzhen Baedal Electronics

Project name: Baedal electronic clean shed

Project Introduction: Design, Production and Installation of Clean Shed

Undertaking time: 2014.5


   Hanbida Electronic Technology Co., Ltd. is an enterprise engaged in the professional R&D, manufacturing, and sales of smart cameras. At present, the company is headquartered in Shenzhen, has a business department in Hong Kong, and has top R&D teams in Seoul, South Korea and China. Business development team. The company has an industry-leading clean room workshop and a variety of imported production equipment, and has a development team composed of top overseas software, hardware and structural engineers, and has a comprehensive R&D design strength and production process technology.

More content URL: www.ecolead.cn Tel: 025-57138032

Google快讯 – incinerator

Google
incinerator

实时更新 2021年7月27日
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… Stadt-Anzeiger newspaper reported the incident occurred at a garbage incineration plant in the chemical park, located in the Bürrig neighborhood.

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Google快讯 – medical waste

Google
medical waste

实时更新 2021年7月27日
新闻

The major players in the unregulated medical waste disposal & management market include Stericycle, Sanpro Waste, Daniels Sharpsmart, Sharps …

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… a large volume of medical waste which might influence the environment. … The grounded powder form of MucoRice-CTB is a bulk drug preparation, …

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Unaccepted items include but are not limited to commercial waste, industrial waste, medical or radioactive waste, explosives, ammunition, electronics, …

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small scale municipal solid waste inceneration technologies

small scale municipal solid waste inceneration technologies including key  point is high temerature combustion. the chamber made with heavy duty refractory material,
 
we fix oil or gas burner to direct fire and auto control the system. 
 
HICLOVER Solution for Fighting COVID-19, with ISO9001/CE Certification.
 
Medical Waste Incinerator & Auto Roll Air Filter(Air Purification)

 

What do hospitals do with human waste?
When the medical waste is removed from facilities, it is then disposed of in a manner that is safe for the environment. In the past, medical waste would simply be sent to a landfill for disposal. Now a days, it is sterilized and recycled before heading to a special sanitary landfill.
What are the 4 major types of medical waste?
There are generally 4 different kinds of medical waste: infectious, hazardous, radioactive, and general.

 
Nanjing Clover Medical Technology Co.,Ltd.
materials not recommended for incineration
incinerator bin ram
price of an incinerator
waste management companies in lusaka
incinerator for sale
garden waste incinerator
medical waste disposal pdf
incenetor
incinerator bin

Items/Model TS10(PLC) TS20(PLC) TS30(PLC) TS50(PLC)
Burn Rate (Average) 10-20 kg/hour 20-30 kg/hour 30-50 kg/hour 50-100 kg/hour
Control Mode PLC Auto. PLC Auto. PLC Auto. PLC Auto.
Combustion Chamber 100L 210L 330L 560L
Internal Dimensions 50x50x40cm 65x65x50cm 75x75x60cm 100x80x70cm
Secondary Chamber 50L 110L 180L 280L
Smoke Filter Chamber Dry Scrubber Dry Scrubber Dry Scrubber Dry Scrubber
Feed Mode Manual Manual Manual Manual
Voltage 220V 220V 220V 220V
Power 0.75Kw 0.83Kw 0.99Kw 1.2Kw
Diesel Oil Consumption (kg/hour) Ave.8.4 Ave.10.9 Ave.13.3 Ave.16.9
Natural Gas Consumption (m3n/hour) Ave.10.1 Ave.13 Ave.16 Ave.20.2
Temperature Monitor Yes Yes Yes Yes
Temperature Protection Yes Yes Yes Yes
Items/Model TS100(PLC) TS150(PLC) TS300(PLC) TS500(PLC)
Burn Rate (Average) 100-150 kg/hour 150-200 kg/hour 300-400 kg/hour 500-600 kg/hour
Control Mode PLC Auto. PLC Auto. PLC Auto. PLC Auto.
Combustion Chamber 1200L 1500L 2000L 3000L
Internal Dimensions 120x100x100cm 150x100x100cm 170x120x100cm 210x120x120cm
Secondary Chamber 600L 750L 1000L 1500L
Smoke Filter Chamber Dry Scrubber Dry Scrubber Dry Scrubber Dry Scrubber
Feed Mode Manual Manual Manual Manual
Voltage 220V 220V 220V 220V
Power 1.38Kw 1.69Kw 2.57Kw 4.88Kw
Diesel Oil Consumption (kg/hour) Ave.20.4 Ave.24.2 Ave.33 Ave.44
Natural Gas Consumption (m3n/hour) Ave.24.5 Ave.29 Ave.39.6 Ave.52.8
Temperature Monitor Yes Yes Yes Yes
Temperature Protection Yes Yes Yes Yes

 

The control system shall include an electronic performance monitoring and logging system. 
The system shall be capable of monitoring and logging chamber temperatures at regular intervals 
(not less than once per minute, with the capacity to vary the logging frequency). The system shall include 
the capacity to download the performance data by USB connection. 
All the measuring devices attached with the incinerator should have digital display and should have provision 
of connecting to the recording system, which should include fuel meter and separate energy meter.
The temperature shall be determined against the inside wall of the combustion chambers. An audible and 
visible alarm shall be installed to warn the operator when the secondary temperature drops to below the required temperature.
The primary chamber must meet or exceed the following criteria:
“• Heavy steel construction.
• Fixed hearth geometry and starved air gasification operational mode. 
• Hot face refractory concrete-ceramic suitable for thermal shock up to 1400 Celsius and abrasion. Minimum thickness 150mm. 
• Cold face refractory lining of calcium silicate or superior material, minimum thickness 100mm. 
• Refractory lining of all the ducts shall be done with refractory castings. Superior quality ceramic wool shall be used at all hot duct flanges and expansion joints.
• Multiple electric ignition fuel burners designed to use automotive diesel fuel.
• Flame of the primary burner shall be oriented towards the center of the unit which does not impinge 
directly on the refractory floor or wall. The secondary burner shall be positioned in such a way that the flue gas passes through the flame. 
• The unit shall prevent leakage of the hot flue gas and any backfire. 
• An electrically powered fan forced air supply, with the capacity for variation by the operator.
• Digital thermometers connected to electronic dataloggers. The thermometers shall be located on the chamber walls away from the fuel burner.
• A differential air pressure gauge connected to an electronic datalogger
The secondary chamber must comply with the following minimum criteria:
“• Heavy steel construction
• An excess air and high temperature operational mode.
• Sufficient size and appropriate geometry to achieve a gas temperature of at least 1000 Celsius for a retention time of at least 2 seconds when pre-heated and correctly operated.
• Sufficient forced air inflow and airflow and fuel supply controls to ensure an exhaust gas oxygen content range of 6-12% at all times. 
• Hot face refractory concrete-ceramic suitable for thermal shock up to 1400 Celsius and abrasion. Minimum thickness 150mm. 
• Cold face refractory lining of calcium silicate or&nbsp
;superior material, minimum thickness 100mm. 
• Refractory lining of all the ducts shall be done with refractory castings. Superior quality ceramic wool shall be used at all hot duct flanges and expansion joints
• An electrically powered fan forced air supply, with the capacity for variation by the operator.
• One or more fuel burners designed to use diesel fuel type 2 (vehicle standard) equipped with a spark igniter.  
• A digital thermometer with connected to an electronic datalogger. The thermometer shall be located on the chamber wall away from the fuel burner.

 

HICLOVER Solution for Fighting COVID-19, with ISO9001/CE Certification.
Medical Waste Incinerator & Auto Roll Air Filter(Air Purification)

 
Mobile: +86-138139 31455(WhatsApp)

Website: www.hiclover.com 
Email:     [email protected]       
Email:    [email protected]    

requested to incinerate clinical waste at your hospital

customer requested to incinerate clinical waste at your hospital, the first questions or technical requirements have to conform is weight output per day of the waste.
 
we will proposal waste incinerator up on this, like 50kgs per hour, 200kgs per hour and then confirm like fuel type, material designed, smoke filter chamber, etc.
 

What kind of waste is hospital medical waste?
Medical waste is any kind of waste that contains infectious material (or material that’s potentially infectious). 
This definition includes waste generated by healthcare facilities like physician’s offices, hospitals, dental practices, laboratories, 
medical research facilities, and veterinary clinics.


 

Do hospitals incinerate medical waste?
Two common methods of disposing of hospital-generated medical waste include incineration or autoclaving. Incineration is a process that 
burns medical waste in a controlled environment. Some hospitals have on-site incineration technology and equipment available.

 
Nanjing Clover Medical Technology Co.,Ltd.

• An excess air and high temperature operational mode.
• Sufficient size and appropriate geometry to achieve a gas temperature of at least 1000 Celsius for a retention time of at least 2 seconds when pre-heated and correctly operated.
• Sufficient forced air inflow and airflow and fuel supply controls to ensure an exhaust gas oxygen content range of 6-12% at all times. 
• Hot face refractory concrete-ceramic suitable for thermal shock up to 1400 Celsius and abrasion. Minimum thickness 150mm. 
• Cold face refractory lining of calcium silicate or superior material, minimum thickness 100mm. 
• Refractory lining of all the ducts shall be done with refractory castings. Superior quality ceramic wool shall be used at all hot duct flanges and expansion joints
• An electrically powered fan forced air supply, with the capacity for variation by the operator.
• One or more fuel burners designed to use diesel fuel type 2 (vehicle standard) equipped with a spark igniter.  
• A digital thermometer with connected to an electronic datalogger. The thermometer shall be located on the chamber wall away from the fuel burner.
A heat exchanger to pre-heat air destined for the primary chamber is not compulsory but recommended. 
The combustion air systems and fans shall be designed to ensure high combustion efficiency and avoid a reducing (corrosive) atmosphere, incomplete burnout of the flue gases and related problems. It should also be possible to heat the primary air from 10°C to approximately 145°C, depending on the waste composition and moisture content.
“The incinerator shall be designed and equipped to be installed, commissioned and operated in such a way as to prevent emissions into the air giving rise to significant ground-level air pollution; in particular, exhaust gases shall be discharged in a controlled fashion by means of a stack the height of which is calculated in such a way as to safeguard human health and the environment.
All incinerators shall meet the following emission and operating standards:
• Combustion efficiency (C.E.) shall be at least 99.0%
• The combustion efficiency shall be computed as follows:
o C.E = (CO2 X 100) / (%CO2 +%CO)
Suitably designed pollution control devices such as scrubbers, filters or electrostatic precipitators, shall be installed/retrofitted with the incinerator to achieve emission limits.”
“Each unit shall include a complete vertical exhaust and stack system, including the following features:
• Steel construction.
• Refractory lining in the lower section.
• The exit height of the stack shall be not less than a range of 3-12 metres above ground level depending on the capacity of the incinerator unit. 
• The diameter of the stack shall be selected by the Contractor&nb
sp;to deliver an exhaust exit velocity of not less than 10 metres per second vertically upwards when at full scale operation.
• An emission stack sampling port shall be included immediately above the secondary chamber.
Feeding Controlled hygienic, mechanical or automatic feeding methods must not negatively influence the air supply and temperature in the primary and secondary chambers of the incinerator.
Bottom ash removal system Units shall include an integral and mechanized bottom ash removal system, via rams or similar mechanisms that evacuate bulk ash from below the primary chamber without the need for frequent manual evacuation.
Diesel fuel storage and supply “Each unit shall include a diesel fuel storage tank of sufficient capacity to enable operation of the unit for 5 working days of 10 hours each.
• The unit shall include a pumping system and lines to supply the burners from the tank and the diesel-electric generator.  The pumping system will have two pumps in parallel for redundancy.
• The supply lines will be fabricated from steel tubing and adequately protected and supported against damage during operations and include shutoff valves for each line. 
• The unit shall be equipped with a fuel meter.
Electrical supply, generation and wiring “The waste incinerators shall be designed for the following electricity supply:
• 3 phase, 4 wire, 415 V a.c. ±10%, 50 Hz ±3%  
• 3 phase 4 wire, 220 V a.c. ±10%, 60 Hz ±3%
“The primary power supply shall be a diesel electric generator. The secondary power supply shall be a plug for connection to an externally supplied power source, such as the local grid or a compound scale mini-grid.
Items/Model TS10(PLC) TS20(PLC) TS30(PLC) TS50(PLC)
Burn Rate (Average) 10-20 kg/hour 20-30 kg/hour 30-50 kg/hour 50-100 kg/hour
Control Mode PLC Auto. PLC Auto. PLC Auto. PLC Auto.
Combustion Chamber 100L 210L 330L 560L
Internal Dimensions 50x50x40cm 65x65x50cm 75x75x60cm 100x80x70cm
Secondary Chamber 50L 110L 180L 280L
Smoke Filter Chamber Dry Scrubber Dry Scrubber Dry Scrubber Dry Scrubber
Feed Mode Manual Manual Manual Manual
Voltage 220V 220V 220V 220V
Power 0.75Kw 0.83Kw 0.99Kw 1.2Kw
Diesel Oil Consumption (kg/hour) Ave.8.4 Ave.10.9 Ave.13.3 Ave.16.9
Natural Gas Consumption (m3n/hour) Ave.10.1 Ave.13 Ave.16 Ave.20.2
Temperature Monitor Yes Yes Yes Yes
Temperature Protection Yes Yes Yes Yes
Items/Model TS100(PLC) TS150(PLC) TS300(PLC) TS500(PLC)
Burn Rate (Average) 100-150 kg/hour 150-200 kg/hour 300-400 kg/hour 500-600 kg/hour
Control Mode PLC Auto. PLC Auto. PLC Auto. PLC Auto.
Combustion Chamber 1200L 1500L 2000L 3000L
Internal Dimensions 120x100x100cm 150x100x100cm 170x120x100cm 210x120x120cm
Secondary Chamber 600L 750L 1000L 1500L
Smoke Filter Chamber Dry Scrubber Dry Scrubber Dry Scrubber Dry Scrubber
Feed Mode Manual Manual Manual Manual
Voltage 220V 220V 220V 220V
Power 1.38Kw 1.69Kw 2.57Kw 4.88Kw
Diesel Oil Consumption (kg/hour) Ave.20.4 Ave.24.2 Ave.33 Ave.44
Natural Gas Consumption (m3n/hour) Ave.24.5 Ave.29 Ave.39.6 Ave.52.8
Temperature Monitor Yes Yes Yes Yes
Temperature Protection Yes Yes Yes Yes

 
• An excess air and high temperature operational mode.
• Sufficient size and appropriate geometry to achieve a gas temperature of at least 1000 Celsius for a retention time of 
at least 2 seconds when pre-heated and correctly operated.
• Sufficient forced air inflow and airflow and fuel supply controls to ensure an exhaust gas oxygen content range of 6-12% at all times. 
• Hot face refractory concrete-ceramic suitable for thermal shock up to 1400 Celsius and abrasion. Minimum thickness 150mm. 
• Cold face refractory lining of calcium silicate or superior material, minimum thickness 100mm. 
• Refractory lining of all the ducts shall be done with refractory castings. Superior quality ceramic wool shall be used at all hot duct flanges and expansion joints
• An electrically powered fan forced air supply, with the capacity for variation by the operator.
• One or more fuel burners designed to use diesel fuel type 2 (vehicle standard) equipped with a spark igniter.  
• A digital thermometer with connected to an electronic datalogger. The thermometer shall be located on the chamber wall away from the fuel burner.
A heat exchanger to pre-heat air destined for the primary chamber is not compulsory but recommended. 
The combustion air systems and fans shall be designed to ensure high combustion efficiency and avoid a reducing (corrosive) 
atmosphere, incomplete burnout of the flue gases and related problems. It should also be possible to heat the primary air from 10°C to approximately 145°C, depending on the waste composition and moisture content.
“The incinerator shall be designed and equipped to be installed, commissioned and operated in such a way as to prevent emissions 
into the air giving rise to significant ground-level air pollution; in particular, exhaust gases shall be discharged in a controlled fashion by means of a stack the height of which 
is calculated in such a way as to safeguard human health and the environment.
All incinerators shall meet the following emission and operating standards:
• Combustion efficiency (C.E.) shall be at least 99.0%
• The combustion efficiency shall be computed as follows:
o C.E = (CO2 X 100) / (%CO2 +%CO)
Suitably designed pollution control devices such as scrubbers, filters or electrostatic precipitators, shall be installed/retrofitted with 
the incinerator to achieve emission limits.”
“Each unit shall include a complete vertical exhaust and stack system, including the following features:
• Steel construction.
• Refractory&nb
sp;lining in the lower section.
• The exit height of the stack shall be not less than a range of 3-12 metres above ground level depending on the capacity of the incinerator unit. 
• The diameter of the stack shall be selected by the Contractor to deliver an exhaust exit velocity of not less than 10 metres per 
second vertically upwards when at full scale operation.
• An emission stack sampling port shall be included immediately above the secondary chamber.
Feeding Controlled hygienic, mechanical or automatic feeding methods must not negatively influence the air supply and temperature in the 
primary and secondary chambers of the incinerator.
Bottom ash removal system Units shall include an integral and mechanized bottom ash removal system, via rams or similar mechanisms that evacuate bulk ash 
from below the primary chamber without the need for frequent manual evacuation.
Diesel fuel storage and supply “Each unit shall include a diesel fuel storage tank of sufficient capacity to enable operation of the unit for 5 working days of 10 hours each.
• The unit shall include a pumping system and lines to supply the burners from the tank and the diesel-electric generator.  The pumping system will have two pumps in parallel for redundancy.
• The supply lines will be fabricated from steel tubing and adequately protected and supported against damage during operations and include shutoff valves for each line. 
• The unit shall be equipped with a fuel meter.
Electrical supply, generation and wiring “The waste incinerators shall be designed for the following electricity supply:
• 3 phase, 4 wire, 415 V a.c. ±10%, 50 Hz ±3%  
• 3 phase 4 wire, 220 V a.c. ±10%, 60 Hz ±3%
“The primary power supply shall be a diesel electric generator. The secondary power supply shall be a plug for connection to an 
externally supplied power source, such as the local grid or a compound scale mini-grid.

HICLOVER Solution for Fighting COVID-19, with ISO9001/CE Certification.
Medical Waste Incinerator & Auto Roll Air Filter(Air Purification)

 
Mobile: +86-138139 31455(WhatsApp)

Website: www.hiclover.com 
Email:     [email protected]       
Email:    [email protected]    

Google快讯 – incinerator

Google
incinerator

实时更新 2021年7月27日
新闻

LiDAR data enables waste density measurement solution to prioritize waste incineration. Quanergy's LiDAR sensors feature industry-leading accuracy …

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The blast, which sent huge plumes of smoke into the sky, occurred in a hazardous-waste incinerator in Leverkusen's Chempark, its operator said.

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medical incinerator pictures

medical incinerator pictures as below for reference. the picture including primary combustion chamber, secondary combustion chamber, auto control plc case, feeding door. other parts including air fan, burners, scrubber, chimney, temperature probe, etc.
 
we supply 10kgs per hour incinerator to 1000kgs per hour incinerator(per set). contact with us for further questions.

 

Why are incinerators used in hospitals?
Medical incinerators are designed safely to dispose of harmful materials at high temperatures. 
The process ensures no harmful gases are released into the environment. Medical waste incinerators 
have scrubbers to clean the polluted gases and other particulate matter.
 
What are the advantages and disadvantages of incineration?
Advantages Disadvantages
Waste weight reduction by 70% It has high investment and operating costs
Energy recovery possibility (electricity or heat) It has high maintenance costs
If managed well, release of pollutants into the air is low Requires qualified personnel

 
Nanjing Clover Medical Technology Co.,Ltd.
burning of rubbish
cage incinerator
helth center drug inceneration
incinerator jobs usa
medical waste incinerators in namibia
incinerator v 750m

Items/Model TS10(PLC) TS20(PLC) TS30(PLC) TS50(PLC)
Burn Rate (Average) 10-20 kg/hour 20-30 kg/hour 30-50 kg/hour 50-100 kg/hour
Control Mode PLC Auto. PLC Auto. PLC Auto. PLC Auto.
Combustion Chamber 100L 210L 330L 560L
Internal Dimensions 50x50x40cm 65x65x50cm 75x75x60cm 100x80x70cm
Secondary Chamber 50L 110L 180L 280L
Smoke Filter Chamber Dry Scrubber Dry Scrubber Dry Scrubber Dry Scrubber
Feed Mode Manual Manual Manual Manual
Voltage 220V 220V 220V 220V
Power 0.75Kw 0.83Kw 0.99Kw 1.2Kw
Diesel Oil Consumption (kg/hour) Ave.8.4 Ave.10.9 Ave.13.3 Ave.16.9
Natural Gas Consumption (m3n/hour) Ave.10.1 Ave.13 Ave.16 Ave.20.2
Temperature Monitor Yes Yes Yes Yes
Temperature Protection Yes Yes Yes Yes
Items/Model TS100(PLC) TS150(PLC) TS300(PLC) TS500(PLC)
Burn Rate (Average) 100-150 kg/hour 150-200 kg/hour 300-400 kg/hour 500-600 kg/hour
Control Mode PLC Auto. PLC Auto. PLC Auto. PLC Auto.
Combustion Chamber 1200L 1500L 2000L 3000L
Internal Dimensions 120x100x100cm 150x100x100cm 170x120x100cm 210x120x120cm
Secondary Chamber 600L 750L 1000L 1500L
Smoke Filter Chamber Dry Scrubber Dry Scrubber Dry Scrubber Dry Scrubber
Feed Mode Manual Manual Manual Manual
Voltage 220V 220V 220V 220V
Power 1.38Kw 1.69Kw 2.57Kw 4.88Kw
Diesel Oil Consumption (kg/hour) Ave.20.4 Ave.24.2 Ave.33 Ave.44
Natural Gas Consumption (m3n/hour) Ave.24.5 Ave.29 Ave.39.6 Ave.52.8
Temperature Monitor Yes Yes Yes Yes
Temperature Protection Yes Yes Yes Yes

 

The Incinerator units shall be designed to last in operation in a tropical environment for a minimum period of 
10 years if the specified maintenance schedule is followed. All metal surfaces (except combustion chamber internal fittings) 
shall be either galvanized, enameled, painted or otherwise treated against atmospheric and process induced corrosion
The incinerator combustion chamber(s) should be designed for easy maintenance of all internal parts including the refractory and insulation. Materials used in 
the individual parts of the incinerator shall be heat resistance and also be protected against oxidation, corrosion, etc.
The incinerator shell shall be made of mild steel with an adequate thickness for small units of between 3-6mm and larger units 5-10 mm depending on the construction part and painted externally with heat resistant aluminum paint suitable to withstand 250° C.  
The outside surface temperature of the incinerator casing should not exceed 50° C above ambient temperature and shall 
include a safety mesh around all hot surfaces. Cold face refractory lining of calcium silicate or superior material, minimum thickness 100 mm. 
The incinerator units shall include a temperature based electronic combustion control system that utilizes temperature 
and other data to inform automated or programmed cycling through the standard burn cycle: pre-heat, burn with 
waste addition, burn completion, cool-down. The system shall be capable of varying auxiliary fuel and air supply in both combustion chambers to achieve 
optimum combustion conditions. As far as practicable, the incinerator shall be of a plug and play type for ease of installation and commissioning in remote locations.
“The control system shall have a separate push button-based work station, which shall be located adjacent to the loading bay and protected from weather and impact 
damage. The system shall allow for rapid and straightforward intervention by the operator if the automatic system is not achieving the desired results during a burn cycle. 

 
 

HICLOVER Solution for Fighting COVID-19, with ISO9001/CE Certification.
Medical Waste Incinerator & Auto Roll Air Filter(Air Purification)

 
Mobile: +86-138139 31455(WhatsApp)

Website: www.hiclover.com 
Email:     [email protected]       
Email:    [email protected]    

treatment of clinical waste using the incinerator

How medical waste is incinerated?
The pyrolytic incinerator comprises a pyrolytic chamber and a post-combustion chamber. Medical waste is thermally decomposed in the pyrolytic chamber through 
an oxygen-deficient, medium-temperature combustion process (800– 900°C), producing solid ashes and gases.


 

What are the treatment methods for treatment of bio medical waste?
Thermal processes
    Low-heat systems (operates between 93 -177oC) use steam, hot water, or electromagnetic radiation to heat and decontaminate the waste
    High-heat systems employ combustion and high temperature plasma to decontaminate and destroy the waste. …
    Incineration.
    Autoclaving.
    Microwaving.
    Deep Burial.

 
Nanjing Clover Medical Technology Co.,Ltd.
waste to energy plant suppliers
medical waste incinerator types
hospital waste disposal methods
ovens incineration sale
medical waste incinerators in south africa
where and how incinerator install

Items/Model TS10(PLC) TS20(PLC) TS30(PLC) TS50(PLC)
Burn Rate (Average) 10-20 kg/hour 20-30 kg/hour 30-50 kg/hour 50-100 kg/hour
Control Mode PLC Auto. PLC Auto. PLC Auto. PLC Auto.
Combustion Chamber 100L 210L 330L 560L
Internal Dimensions 50x50x40cm 65x65x50cm 75x75x60cm 100x80x70cm
Secondary Chamber 50L 110L 180L 280L
Smoke Filter Chamber Dry Scrubber Dry Scrubber Dry Scrubber Dry Scrubber
Feed Mode Manual Manual Manual Manual
Voltage 220V 220V 220V 220V
Power 0.75Kw 0.83Kw 0.99Kw 1.2Kw
Diesel Oil Consumption (kg/hour) Ave.8.4 Ave.10.9 Ave.13.3 Ave.16.9
Natural Gas Consumption (m3n/hour) Ave.10.1 Ave.13 Ave.16 Ave.20.2
Temperature Monitor Yes Yes Yes Yes
Temperature Protection Yes Yes Yes Yes
Items/Model TS100(PLC) TS150(PLC) TS300(PLC) TS500(PLC)
Burn Rate (Average) 100-150 kg/hour 150-200 kg/hour 300-400 kg/hour 500-600 kg/hour
Control Mode PLC Auto. PLC Auto. PLC Auto. PLC Auto.
Combustion Chamber 1200L 1500L 2000L 3000L
Internal Dimensions 120x100x100cm 150x100x100cm 170x120x100cm 210x120x120cm
Secondary Chamber 600L 750L 1000L 1500L
Smoke Filter Chamber Dry Scrubber Dry Scrubber Dry Scrubber Dry Scrubber
Feed Mode Manual Manual Manual Manual
Voltage 220V 220V 220V 220V
Power 1.38Kw 1.69Kw 2.57Kw 4.88Kw
Diesel Oil Consumption (kg/hour) Ave.20.4 Ave.24.2 Ave.33 Ave.44
Natural Gas Consumption (m3n/hour) Ave.24.5 Ave.29 Ave.39.6 Ave.52.8
Temperature Monitor Yes Yes Yes Yes
Temperature Protection Yes Yes Yes Yes

 

All incinerators shall meet the following emission and operating standards:
• Combustion efficiency (C.E.) shall be at least 99.0%
• The combustion efficiency shall be computed as follows:
o C.E = (CO2 X 100) / (%CO2 +%CO)
Suitably designed pollution control devices such as scrubbers, filters or electrostatic precipitators, 
shall be installed/retrofitted with the incinerator to achieve emission limits.”
“Each unit shall include a complete vertical exhaust and stack system, including the following features:
• Steel construction.
• Refractory lining in the lower section.
• The exit height of the stack shall be not less than a range of 3-12 metres above ground level depending 
on the capacity of the incinerator unit. 
• The diameter of the stack shall be selected by the Contractor to deliver an exhaust exit velocity of not 
less than 10 metres per second vertically upwards when at full scale operation.
• An emission stack sampling port shall be included immediately above the secondary chamber.

HICLOVER Solution for Fighting COVID-19, with ISO9001/CE Certification.
Medical Waste Incinerator & Auto Roll Air Filter(Air Purification)

 
Mobile: +86-138139 31455(WhatsApp)

Website: www.hiclover.com 
Email:     [email protected]     &n
bsp; 
Email:    [email protected]    

treatment of clinical waste using the incinerator

How medical waste is incinerated?
The pyrolytic incinerator comprises a pyrolytic chamber and a post-combustion chamber. Medical waste is thermally decomposed in the pyrolytic chamber through 
an oxygen-deficient, medium-temperature combustion process (800– 900°C), producing solid ashes and gases.


 

What are the treatment methods for treatment of bio medical waste?
Thermal processes
    Low-heat systems (operates between 93 -177oC) use steam, hot water, or electromagnetic radiation to heat and decontaminate the waste
    High-heat systems employ combustion and high temperature plasma to decontaminate and destroy the waste. …
    Incineration.
    Autoclaving.
    Microwaving.
    Deep Burial.

 
Nanjing Clover Medical Technology Co.,Ltd.
waste to energy plant suppliers
medical waste incinerator types
hospital waste disposal methods
ovens incineration sale
medical waste incinerators in south africa
where and how incinerator install

Items/Model TS10(PLC) TS20(PLC) TS30(PLC) TS50(PLC)
Burn Rate (Average) 10-20 kg/hour 20-30 kg/hour 30-50 kg/hour 50-100 kg/hour
Control Mode PLC Auto. PLC Auto. PLC Auto. PLC Auto.
Combustion Chamber 100L 210L 330L 560L
Internal Dimensions 50x50x40cm 65x65x50cm 75x75x60cm 100x80x70cm
Secondary Chamber 50L 110L 180L 280L
Smoke Filter Chamber Dry Scrubber Dry Scrubber Dry Scrubber Dry Scrubber
Feed Mode Manual Manual Manual Manual
Voltage 220V 220V 220V 220V
Power 0.75Kw 0.83Kw 0.99Kw 1.2Kw
Diesel Oil Consumption (kg/hour) Ave.8.4 Ave.10.9 Ave.13.3 Ave.16.9
Natural Gas Consumption (m3n/hour) Ave.10.1 Ave.13 Ave.16 Ave.20.2
Temperature Monitor Yes Yes Yes Yes
Temperature Protection Yes Yes Yes Yes
Items/Model TS100(PLC) TS150(PLC) TS300(PLC) TS500(PLC)
Burn Rate (Average) 100-150 kg/hour 150-200 kg/hour 300-400 kg/hour 500-600 kg/hour
Control Mode PLC Auto. PLC Auto. PLC Auto. PLC Auto.
Combustion Chamber 1200L 1500L 2000L 3000L
Internal Dimensions 120x100x100cm 150x100x100cm 170x120x100cm 210x120x120cm
Secondary Chamber 600L 750L 1000L 1500L
Smoke Filter Chamber Dry Scrubber Dry Scrubber Dry Scrubber Dry Scrubber
Feed Mode Manual Manual Manual Manual
Voltage 220V 220V 220V 220V
Power 1.38Kw 1.69Kw 2.57Kw 4.88Kw
Diesel Oil Consumption (kg/hour) Ave.20.4 Ave.24.2 Ave.33 Ave.44
Natural Gas Consumption (m3n/hour) Ave.24.5 Ave.29 Ave.39.6 Ave.52.8
Temperature Monitor Yes Yes Yes Yes
Temperature Protection Yes Yes Yes Yes

 

All incinerators shall meet the following emission and operating standards:
• Combustion efficiency (C.E.) shall be at least 99.0%
• The combustion efficiency shall be computed as follows:
o C.E = (CO2 X 100) / (%CO2 +%CO)
Suitably designed pollution control devices such as scrubbers, filters or electrostatic precipitators, 
shall be installed/retrofitted with the incinerator to achieve emission limits.”
“Each unit shall include a complete vertical exhaust and stack system, including the following features:
• Steel construction.
• Refractory lining in the lower section.
• The exit height of the stack shall be not less than a range of 3-12 metres above ground level depending 
on the capacity of the incinerator unit. 
• The diameter of the stack shall be selected by the Contractor to deliver an exhaust exit velocity of not 
less than 10 metres per second vertically upwards when at full scale operation.
• An emission stack sampling port shall be included immediately above the secondary chamber.

HICLOVER Solution for Fighting COVID-19, with ISO9001/CE Certification.
Medical Waste Incinerator & Auto Roll Air Filter(Air Purification)

 
Mobile: +86-138139 31455(WhatsApp)

Website: www.hiclover.com 
Email:     [email protected]       
Email:    [email protected]    

Operating Regulations for Automatic Rolling-up Air Filter

May 22, 2019 Industry News 189 views

When we buy anything new, we always have to get familiar with it for a period of time. Although any product comes with a manual, most people still don’t bother to look through the lengthy manual. Therefore, Nanjing Yixiou lists the necessary operating procedures for the automatic roller shutter air filter for each customer:

Roll-up filter start preparation and operation before operation

l Check whether the equipment around is firm and swaying

l Check if sealing measures are done around the equipment to prevent unfiltered air from directly entering the back end of the filter

l Check whether the external power supply is properly connected

l PLC control system debugging (omitted), linked with the main control PLC system, debugged by the main control system manufacturer

Replacement operation of the old filter material of the roll-up filter

l When the entire roll of filter material is finished, the upper travel switch will act, the control system will transmit a signal, and the buzzer will alarm to remind the filter to be replaced;

l Operate the control panel on the electric control box, enter the manual mode, and roll up the dirty filter material;

l Raise the dirty filter material from the left to the right and lift it diagonally upwards to move it out of the right shaft. Then pull the dirty filter material to the right as a whole, and remove it from the winding tube of the old filter material;

    Installation operation of new filter material of roller shutter filter

l Press down the lock of the new filter box above to open the new filter box;

l Remove the stainless steel clip strips at both ends, take out the new filter material winding round tube, stuff it into the paper tube in the middle of the new filter material roll, and then stuff the new filter material into the new filter material box;

l Both ends of the round tube are clamped between the two short profiles, and then the clip is clamped into the profile groove, and the round tube is pressed tightly;

l After completion, pass the filter material through the lower part of the compression frame made of the square tube, and then pass through the gap between the top profile and the adjustment tube, pull down at a constant speed, pass through the front and rear steel bars all the way to the end, and cover the filter box. Lock the lock.

Precautions for the operation of the roller shutter filter

l The new filter material round tube must be stuck between the two short profiles, the plug is inserted, and the filter material needs to be placed forward to confirm the winding direction. If the surface where the filter material box is located is the front, look from the right side, the filter The material is rolled down clockwise;

l The new filter material must pass under the compression frame made of the square tube, between the front and rear compression bars;

l The new filter material should be pulled down at a constant speed, and the distance between the two sides should be symmetrical, and the edges of both sides should be stuck in the baffle plates on both sides to prevent air leakage;

l After the new filter material is installed, it must be manually wound to prevent it from falling off and causing the phenomenon of inclined winding;

l When the size of the equipment is too large, especially the height is high, safety protection measures must be taken when replacing the filter material.

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