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NEW DASHEN BREWERY PROJECT –
DEBRE BIRHAN, ETHIOPIA
305,3/F,OneCorporatePlaza,845ArnaizAve.MakatiCity,Philippines
CLIENT NAME:
Dashen Brewery Pvt., Ltd.
PROJECT VALUE:
USD 120 Million
SERVICES PROVIDED:
Project Management Consultancy
Services for the Design, Supply,
Installation and Supervision of
the New Brewery Plant
Dashen Brewery Ltd (Dashen), currently the second largest brewing
company in Ethiopia by capacity, Dashen Brewery is currently the only
brewery in the country’s north-west region. It’s existing Gondar brewery is
located 700 kilometres north-west of Addis Ababa. Built in 1996, it is the
youngest major Ethiopian brewery, but it offers very high quality products.
Not many know that Dashen is the only Ethiopian brewery adhering to the
German purity law which regulates the ingredients that can be used to
produce beer.
Dashen engaged Process Technology Solutions, Ltd. (PTS) for the entire
design, process integration and construction management of their new
modern brewery expansion located in Debre Birhan. The new ‘greenfield’
brewery comprises a 30,000 m2 gross floor area facility located on a 12 Ha
site, approximately 130 km northeast of Addis Ababa, Ethiopia.
The plant will initially produce 2,000,000 hl/ annum (capable of ramping up
to 3,000,000 hl/ annum) of lager beer and comprises a state of the art modern
development using continuous brewing, membrane filtration and sterile
filling techniques and a high level of process automation.
The brewery steam is generated using fast, efficient and economical
package electric boilers having a total demand 12TPH c/w standby fuel oil
boilers.
In terms of sustainability, continuous processes are more energetically
efficient, easier to control and consequently lead to a lower production cost.
Specific for the brewhouse process, the main reasons to develop a
continuous brewhouse are as followed:
NEW DASHEN BREWERY PROJECT –
DEBRE BIRHAN, ETHIOPIA
305,3/F,OneCorporatePlaza,845ArnaizAve.MakatiCity,Philippines
CLIENT NAME:
Dashen Brewery Pvt., Ltd.
PROJECT VALUE:
USD 120 Million
SERVICES PROVIDED:
Project Management Consultancy
Services for the Design, Supply,
Installation and Supervision of
the New Brewery Plant
 Reduced peak consumption of utilities - The most important utilities
consumed in the brewhouse are steam and cooling liquid. In a batch
brewhouse, different batches are processed at the same time and
consequently lead to an important steam peak. The wort cooling takes
place normally within 50-60 minutes which is giving peak consumption
in that period.
 Reduced energy and extract losses - Besides the important peaks of
utilities with batch brewhouses, the heat losses are also more important
compared to the continuous process. The batches are pumped from
vessel to vessel and by each transfer air is entering the vessel and at the
same time cooling the vessel down. The transfer of batches is also
responsible for extract losses since vessels are never completely empty.
 Reduced waste disposal - Rinsing water between batches is drained,
leading to increase water consumption, extract losses and charging the
waste water plant. Especially in case of high gravity brewing an
important BOD and COD is sent to the waste water plant.
 Limited space requirements - The most state-of-the-art batch
brewhouses are only making about 14 batches a day. About every 100
minutes 1 batch is produced, which consequently requires vessels
taking the required volumes. Brewhouse vessels of a big size also mean
important piping diameters, big sized valves and pumps at the high
flows. A continuous flow will reduce significantly the plant dimensions.
 Easy process control - In practice, it is difficult to have the same process
conditions between similar batches. The fouling of the mash tun(s) and
wort kettle during the production are changing the heating performance
of these vessels and thus changing the process conditions. Consequently
an important variation in for example colour, bitterness … is noticed
between batches of the same brands. These fluctuations could be limited
with a continuous process.
A comparison between a batch brewhouse at 12 brews/day and a
continuous brewhouse for a brewery with 3 million hl final capacity is
showed in Table 1.
NEW DASHEN BREWERY PROJECT –
DEBRE BIRHAN, ETHIOPIA
305,3/F,OneCorporatePlaza,845ArnaizAve.MakatiCity,Philippines
CLIENT NAME:
Dashen Brewery Pvt., Ltd.
PROJECT VALUE:
USD 120 Million
SERVICES PROVIDED:
Project Management Consultancy
Services for the Design, Supply,
Installation and Supervision of
the New Brewery Plant
TABLE 1
Comparison of a 3 Million hl Final Capacity at 12O
P
BATCH BREWHOUSE CONTINUOUS BREWHOUSE
Capacity 12 brews/day of 400 hl cold wort
at 20°P
200 hl/h of cold wort at 20°P
Pumps Mash: 1500 hl/h – 15 KW
Wort: 3600 hl/h – 30 KW
Mash: 180 hl/h – 5,5 KW
Wort: 225 hl/h – 4 KW
Utilities Steam peak flow: 14 T/h
Water peak flow: 650 hl/h
Electricity installed: 375 kW
Electricity peak: 300 KW
Peak cooling power: 4.650 kW
Steam peak flow: 3T/h
Water peak flow: 220 hl/h
Electricity installed: 250 kW
Electricity peak: 200 KW
Peak cooling power: 2.200 kW
Faster and more consistent fermentation has been achieved in the new plant
without negatively affecting beer quality. Through the use of Jet Mixing
Technology implementation within the 4,800 hl fermentation tanks.
Introducing mixing in the fermentation tanks has positively influenced
three separate process phases namely: primary fermentation, diacetyl
conversion and crash cooling.

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Dashen Brewery Case Study

  • 1. NEW DASHEN BREWERY PROJECT – DEBRE BIRHAN, ETHIOPIA 305,3/F,OneCorporatePlaza,845ArnaizAve.MakatiCity,Philippines CLIENT NAME: Dashen Brewery Pvt., Ltd. PROJECT VALUE: USD 120 Million SERVICES PROVIDED: Project Management Consultancy Services for the Design, Supply, Installation and Supervision of the New Brewery Plant Dashen Brewery Ltd (Dashen), currently the second largest brewing company in Ethiopia by capacity, Dashen Brewery is currently the only brewery in the country’s north-west region. It’s existing Gondar brewery is located 700 kilometres north-west of Addis Ababa. Built in 1996, it is the youngest major Ethiopian brewery, but it offers very high quality products. Not many know that Dashen is the only Ethiopian brewery adhering to the German purity law which regulates the ingredients that can be used to produce beer. Dashen engaged Process Technology Solutions, Ltd. (PTS) for the entire design, process integration and construction management of their new modern brewery expansion located in Debre Birhan. The new ‘greenfield’ brewery comprises a 30,000 m2 gross floor area facility located on a 12 Ha site, approximately 130 km northeast of Addis Ababa, Ethiopia. The plant will initially produce 2,000,000 hl/ annum (capable of ramping up to 3,000,000 hl/ annum) of lager beer and comprises a state of the art modern development using continuous brewing, membrane filtration and sterile filling techniques and a high level of process automation. The brewery steam is generated using fast, efficient and economical package electric boilers having a total demand 12TPH c/w standby fuel oil boilers. In terms of sustainability, continuous processes are more energetically efficient, easier to control and consequently lead to a lower production cost. Specific for the brewhouse process, the main reasons to develop a continuous brewhouse are as followed:
  • 2. NEW DASHEN BREWERY PROJECT – DEBRE BIRHAN, ETHIOPIA 305,3/F,OneCorporatePlaza,845ArnaizAve.MakatiCity,Philippines CLIENT NAME: Dashen Brewery Pvt., Ltd. PROJECT VALUE: USD 120 Million SERVICES PROVIDED: Project Management Consultancy Services for the Design, Supply, Installation and Supervision of the New Brewery Plant  Reduced peak consumption of utilities - The most important utilities consumed in the brewhouse are steam and cooling liquid. In a batch brewhouse, different batches are processed at the same time and consequently lead to an important steam peak. The wort cooling takes place normally within 50-60 minutes which is giving peak consumption in that period.  Reduced energy and extract losses - Besides the important peaks of utilities with batch brewhouses, the heat losses are also more important compared to the continuous process. The batches are pumped from vessel to vessel and by each transfer air is entering the vessel and at the same time cooling the vessel down. The transfer of batches is also responsible for extract losses since vessels are never completely empty.  Reduced waste disposal - Rinsing water between batches is drained, leading to increase water consumption, extract losses and charging the waste water plant. Especially in case of high gravity brewing an important BOD and COD is sent to the waste water plant.  Limited space requirements - The most state-of-the-art batch brewhouses are only making about 14 batches a day. About every 100 minutes 1 batch is produced, which consequently requires vessels taking the required volumes. Brewhouse vessels of a big size also mean important piping diameters, big sized valves and pumps at the high flows. A continuous flow will reduce significantly the plant dimensions.  Easy process control - In practice, it is difficult to have the same process conditions between similar batches. The fouling of the mash tun(s) and wort kettle during the production are changing the heating performance of these vessels and thus changing the process conditions. Consequently an important variation in for example colour, bitterness … is noticed between batches of the same brands. These fluctuations could be limited with a continuous process. A comparison between a batch brewhouse at 12 brews/day and a continuous brewhouse for a brewery with 3 million hl final capacity is showed in Table 1.
  • 3. NEW DASHEN BREWERY PROJECT – DEBRE BIRHAN, ETHIOPIA 305,3/F,OneCorporatePlaza,845ArnaizAve.MakatiCity,Philippines CLIENT NAME: Dashen Brewery Pvt., Ltd. PROJECT VALUE: USD 120 Million SERVICES PROVIDED: Project Management Consultancy Services for the Design, Supply, Installation and Supervision of the New Brewery Plant TABLE 1 Comparison of a 3 Million hl Final Capacity at 12O P BATCH BREWHOUSE CONTINUOUS BREWHOUSE Capacity 12 brews/day of 400 hl cold wort at 20°P 200 hl/h of cold wort at 20°P Pumps Mash: 1500 hl/h – 15 KW Wort: 3600 hl/h – 30 KW Mash: 180 hl/h – 5,5 KW Wort: 225 hl/h – 4 KW Utilities Steam peak flow: 14 T/h Water peak flow: 650 hl/h Electricity installed: 375 kW Electricity peak: 300 KW Peak cooling power: 4.650 kW Steam peak flow: 3T/h Water peak flow: 220 hl/h Electricity installed: 250 kW Electricity peak: 200 KW Peak cooling power: 2.200 kW Faster and more consistent fermentation has been achieved in the new plant without negatively affecting beer quality. Through the use of Jet Mixing Technology implementation within the 4,800 hl fermentation tanks. Introducing mixing in the fermentation tanks has positively influenced three separate process phases namely: primary fermentation, diacetyl conversion and crash cooling.