INEKON GROUP in addition to rail transportation activities (trams and locomotive deliveries and modernization) also ensures exports of investment units, industrial technologies and machinery. The largest contracts have been implemented by INEKON so far in waste water treatment plants as well as in the power engineering sector. Main areas of business activity in investment units: • Water treatment units (waste water treatment plants) • Power engineering (water, steam and wind power plants) • Production of construction materials (cement plants) • Food production (mills, breweries, distilleries) In the area of investment units, INEKON GROUP offers services ranging from deliveries of individual machines and equipment or projects studies to deliveries of turn-key constructions. Technical background and technological equipment is ensured according to the customer requirements, mainly in collaboration with our technical partners in the Czech Republic. The construction part of investment units is usually implemented in collaboration with local civil-construction partners. Offer of services: • Concept study/proposal • Feasibility study • Plant design and engineering • Delivery of machinery and equipment including plant construction • Equipment assembly, testing and commissioning • Putting plant into operation, training of local staff in plant operation and equipment maintenance • After-sales equipment servicing according to need of our clients Our proposal describes the proposed collaboration with M/s Metal MB Fulnek on very advanced and effective water treatment FBBR (fixed bed biological reactor) technology but other required technologies could be also offered. The offer also includes financial services. In cooperation with partners in the banking sector, INEKON GROUP arranges for credit financing. The worldwide references of INEKON GROUP in the area of waste water treatment are enclosed.
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INEKON GROUP in addition to rail transportation activities (trams and locomotive deliveries and
modernization) also ensures exports of investment units, industrial technologies and machinery. The
largest contracts have been implemented by INEKON so far in waste water treatment plants as well as
in the power engineering sector.
Main areas of business activity in investment units:
• Water treatment units (waste water treatment plants)
• Power engineering (water, steam and wind power plants)
• Production of construction materials (cement plants)
• Food production (mills, breweries, distilleries)
In the area of investment units, INEKON GROUP offers services ranging from deliveries of individual
machines and equipment or projects studies to deliveries of turn-key constructions. Technical
background and technological equipment is ensured according to the customer requirements, mainly
in collaboration with our technical partners in the Czech Republic. The construction part of investment
units is usually implemented in collaboration with local civil-construction partners.
Offer of services:
• Concept study/proposal
• Feasibility study
• Plant design and engineering
• Delivery of machinery and equipment including plant construction
• Equipment assembly, testing and commissioning
• Putting plant into operation, training of local staff in plant operation and equipment
maintenance
• After-sales equipment servicing according to need of our clients
Our proposal describes the proposed collaboration with M/s Metal MB Fulnek on very advanced and
effective water treatment FBBR (fixed bed biological reactor) technology but other required
technologies could be also offered.
The offer also includes financial services. In cooperation with partners in the banking sector, INEKON
GROUP arranges for credit financing.
The worldwide references of INEKON GROUP in the area of waste water treatment are enclosed.
INNOVATE SOLUTIONS FOR WASTE WATER TREATMENT
The company Metal MB s.r.o. is an engineering and production company, whose production program
includes production of components for wastewater treatment plants, designing and deliveries of
complete technological equipment of water treatment plants. The technological part of the equipment
is designed as a mechanical-biological treatment plant with a controlled de-nitrification, nitrification
and simultaneous aerobic sludge stabilisation.
Technology Description
The classic technology of biological treatment of sewage waste waters is based on the separation of
undissolved substances from the treated sewage water by means of agglomeration processes with the
subsequent gravitation sedimentation of the formed agglomerates. The sedimentation speed of the
activated sludge depends on many parameters, among others mainly on its concentration in the
system causing that the sedimentation speed is rather limited. While conventional technology uses the
suspension of the activated sludge freely dispersed in the sewage water, the Metal MB provides its
reactors with the advanced Brentwood FBBR technology enabling the fixation of micro-organisms on
various types of solid internal carriers. This leads to the significant increase in the amount of the
biomass in the system and therefore to the remarkable increase of the treatment capacity of water
treatment plants.
Fixed Bed Bio Reactor (FBBR)
The difference in the composition of the bio film enlargement in comparison with the classic activated
sludge also makes it possible to stabilize the system relatively easily. That effect could eliminate some
potential problems of the water treatment, such as sludge washing up necessity during overload,
occurrence of filamentous sludge bulking and others. The other advantage of FBBR technology is the
very efficient contact between pollution components contained in the sewage water and the bio film
itself. FBBR technology is therefore the progressive treatment solution allowing the use of ultra-light
tank directly in the activation space, makes thus possible to rapidly increase the treatment
performance. That solution allows for a decrease of construction cost as well as limits required space
for the treatment plant and it also ensures a remarkable intensification of existing wastewater
treatment plants through reconstruction and/or upgrading exercises.
FBBR advantages
• Energy efficiency in comparison to other attached growth process due to fine bubble diffusers
• System is compatible with most diffuser brands and types (tubular or disk, ceramic or
membrane)
• No necessity for frequent treatment equipment wash outs or need for periodic replacement
• Easy maintenance of diffusers without removing the media
• No plugging or clogging of the media due to air lifting pump behaviour
• Zero impact on the Hydraulic Profile
• Consistent cold weather nitrification
• Resists hydraulic and organic shock loads
• If IFAS, Operates like Activated Sludge System
• Improves SVI and eliminates foaming FBBR reactors work with higher concentrations of
activated sludge (usually around 6 g/l) than conventional systems.
• Production of excess sludge and the sludge itself is stabilized aerobically
FBBR Activation area design
FBBR reactor AccuFAS® systems are consist of Submerged Structured-Sheet Media that is typically
placed in wastewater aeration tanks to improve the BOD removal, nitrification, or TN removal
efficiency and increases treatment capacity by adding to the biomass inventory of the system as
bacteria grow on the surface of the media.
The system provides inexpensive solution
for BOD removal and nitrification,
through higher kinetic rates, flexible
designs and applications, and resisting
wash-out. The manufacturer design team
draws on over 25 years of fixed-growth
process experience to guide the design
and application of their wastewater
treatment products.
Conventional clarifier combined with Brentwood lamellas
• The conventional clarifier-settling tank with a concrete structure and a complicated system of
collection of settled sludge by means of the rotating bridge use to be costly and its area
requirement is also large.
• Lamellar fittings installed into the clarifier tank with special manifolds or a funnel for collection
of settled sludge, are used for intensification of the gravitation sedimentation. The purpose of
lamellar fittings is to prevent formation of disruptive density flows and therefore to increase
the efficiency of the separation of the activated sludge (undissolved substances) from the
treated sewage water. The inner fitting directs the flow of the mixture in the settlement tank
and enables an increase of concentration of the collected sludge. Such solutions of the
construction of the biological reactor are protected by a series of registered designs.
• The above described solution enables inserting the stainless steel made clarifiers directly to an
activation area and saves a plant area remarkably.
Metal MB inserting clarifier combined with Brentwood lamellas (typical
solution
Option of technology implementation
FBBR technology can be efficiently used for treating communal and for industrial waste water, water
from food production, agriculture etc. FBBR technology is not limited with the amount of wastewater,
so it covers the capacities of the water treatment from units of few inhabitants equivalent to the
biggest communal or industrial water treatment needs.
Mono-block reactors (capacity 150-1000 PE)
The production series of water treatment plants COMPACT (industrial water treatment) has the
capacity from 150 to 1000 PE = Population equivalent … (7.5–150 m3/day of sewage water) and it is
also the ideal solutions for a larger apartments or hotel complexes or even for small municipalities.
The module structure allows for an easy assembly of any municipal or industrial water treatment plant
using either firm or mobile versions (could be used in more sites, if so required).
Mono-block FBBR reactor (capacity 1000-10000 PE)
Water treatment plants with the category of sizes up to 10 000 PE use FBBR technology with metal
settlement tanks and they are suitable especially for medium-sized spruces of pollution. Their
capacities could therefore cover needs of small towns and municipalities, suburban satellites,
decentralized offices, larger individual building complexes such as high buildings, large hotels etc. Such
types of water treatment plants are designed for treatment of virtually all types of biologically polluted
sewage waters of communal or industrial character. There is also a very important possibility of using
the plants for reconstructions and/or upgrading of old water treatment plants enabling thus the rapid
increase of their treatment capacities and at the same time the efficiency of treatment resulting in