TECHNICAL INCINERATORS SPECIFICATIONS FOR 2 hospitals
INTRODUCTION All the incinerators to be supplied and installed must meet the Government of Kenya waste Management Regulation 2006 in particular 3rdschedule regulation (26, 47) pertaining classification, standards, criteria, and procedure for installing/operating incinerators as authored by the National Environmental Management and Coordination (waste management) regulation 2006, legal...
1) Policy
– Waste disposal management shall be taken special note to prevent hospital infection.
– Infections wastes shall be managed, stored strictly and burned by a incinerator located at hospital site.
2) Waste Disposal Plan a)Classification – Medical wastes in hospital are classified as follows;
Infections Waste
Specially-controlled waste
Organ, needle, etc. Industrial waste
Rubber gloves, etc. General...
“PYROLYTIC” combustion, by controlling the gasification of waste
The incinerator manufacturer must avoid the release of black smoke and fine dust, during the loadings.
It shall be able to reduce the volume of wastes by 98%.
It shall be able to hold emission in the second burn with gas residence of not less than 2 seconds.
The incineration should be completely free from visible smoke as well as offensive odours.
1.0The primary ignition...
The incinerator plant shall incorporate a control panel for its operation. On the control panel we shall have a visual
display of the chamber temperatures. This visual display must control and monitor the incinerator and his performance.
Capacity of destruction in weight shall be 60 Kg/h.
It should be able to operate not less than 10 hours/day
This incinerator must be able to destruct all combustible wastes produced by hospitals, private...
Petrol: diesel Consumption: 8-10liter/hour Capacity: to cremate (carrion and spoils) 350-400kg/hour Temperature: 900-1350?C Operation temperature: -30~40?C Incinerator weight: 1800-2000 kg Volume: 0.70-0.80m/cube Exterior dimension: 1.4-1.6*1.0-1.15m (L*W) An incinerator represents a complete solution to the problem of disposal of all hospital waste types. The liquid fuel
is diesel. The...
Complete combustion converts waste into inert bottom ash with minimal creation of smoke, fly ash and hazardous
gases. Several factors influence this process including the heating value, wetness and chemical composition of the
waste itself, operating conditions in the burn chamber (i.e. temperature, holding time and turbulence) and
operator skill.
The method used is important in determining what can safely be burned. Certain wastes can only be...
* Burner with fuel, mono-bloc casting guiding type with horizontal flame, lighting and safety of electronic ignition, permanent ventilation, electromagnetic sluice gate of regulation and isolating valve.
* A secondary injection of air to ensure perfect oxygen content.
19. A control box ensuring the complete cycle of combustion.
20. Fan:
* Electro-ventilator distributing the secondary air, the regulation of the...
* medical incinerators, The insulation of the combustion chamber should be composed of refractory bricks, having a
high content of aluminium and insulates bricks in order to assure a minimum temperature on
the outside sheet metal.
* Composition of the refractory;
? Refractory concrete :
? . Thickness : ≥100 mm
? . Nature: 42% of Al203
? Insulate in...
1. Capacity of destruction in weight: 60 Kg/h.
2. It should be able to operate not less than 10 hours/day
3. This incinerator must be able to destruct all combustible wastes produced by hospitals, private clinics, laboratories, institutes, etc…
4. Design Specification : Types A, B, C, D, and E of medical waste
5. “PYROLYTIC” combustion, by controlling...