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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 444
ANALYTICAL STUDY OF VACUUM CONTROLLED GREEN TOILET SYSTEM
FOR INDIAN RAILWAYS
Mr.S.A.Burande1, Prof. J.J. Salunke2
1P.G.Student, Dept. of Mechanical Engineering, D.I.E.M.S., Aurangabad, Maharashtra, India
2Professor, Dept. of Mechanical Engineering, D.I.E.M.S, Aurangabad, Maharashtra, India
---------------------------------------------------------------------***----------------------------------------------------------------------
Abstract - The disposal of human waste is a very big
problem for Indian railway. Incineration and chemical
treatment of human waste has also been used to overcomethe
problem. However, all these methods are either unhygienic or
not practically feasible alternatives. Controlled discharge
toilet system having limitation to solve problem of sanitation.
Bio-toilet system is used are quite good approach & providing
hygienic condition of their biodegradation procedure, but
problem of more water consumption, foul smell & chocking.
Overcoming these problems with Alteration&upgradation we
prefer for modern vacuum controlled green toilet system.
Vacuum controlled green toilet for Indian railways, It secured
the environment and make eco-Friendly. The aesthetic
appearance of track should be good and nuisance from the
human excreta on the track can be eliminated. Water
consumption also saved &corrosioncausedbythefecalmatter
can be minimized. By using Vacuum controlled green toilet
system we can convert the solid waste into the pure water by
means of biodegradation with anaerobic bacteria afterword
with chlorination of discharged water. We can be utilized this
water for washing of track and bogies and the remaining
sludge can be used as fertilizer for agriculture purpose. Sothis
vacuum controlled green toilet is very useful and essential for
Indian Railways.
Key Words: Human waste, Indian railway, Incineration,
Chemical treatment, Green toilet, Bogies, Odour,
1. INTRODUCTION
Indian Railway plays an important role as being a
lifeline of India. Railways were the most important
development from the point of view of the infrastructure in
India from 1852. Railways in India are the only reliable and
feasible source on land for transportation. Indian Railways
(IR) is one of the largest railway systems in the World.
Indian railways having Vision 2020 which would be focuses
on Track Enhancement, Environmental Sustainability,
Network Expansion of Railway, Capacity Creation, Train
Safety, Reducing Carbon Footprint, High Speed Train
Introduction and Technological Excellence. There are
enormous challenges. It aims to develop a world class rail
infrastructure & technology as countries like USA, China,
Japan etc.
On any regional or intercity train, the toilet system is an
important part and the reliability of the system is critical.
Without working toilets, the train cannot be put in service.
The disposal of human waste is very big problem in high
altitude areas. In non- glacier region the waste is collected
and used as a fertilizer in the field. Incinerationandchemical
treatment of human waste also has been attempted to
overcome problem. However, all this methods are either
unhygienic or not practically viable alternatives. Biological
treatment is an attractive approach forsolvingtheproblems,
but decreased metabolic activities of the micro-organisms,
freezing of the substrate non-availability of conventional
energy sources and hilly terrains are some of hurdles which
need to be solving to make the process practically possible.
IR-DRDO has developed an innovative technology for
disposal of human waste in eco-friendly manner at high
altitude location at low temperature.Theprocessculminates
into treated effluent, whichisfreefrompathogensandis also
environmental friendly.
1.1 Types of toilet system in Indian railways
1. Conventional Toilet System.
2. Controlled Discharge Toilet System.(CDTS)
3. Bio-Toilet system.
4. Vacuum Controlled Bio-Toilet System.
1.1.1 Conventional Toilet System
The traditional method of disposing human waste
from trains is merely to deposit the waste onto the tracks
using a method known as a 'Hopper Toilet'.Thisranges from
the toilets being a hole in the floor of the train, to a full flush
system. The hole in the floor system where waste is
deposited on the track is still in use in many parts of the
world but it can be considered crude or unhygienic and it
litters Railway lines and can produce health risks if the train
is passing over a public waterway. Passengers may be
discouraged from using toilets while the train is at a station.
Although there are solutions where toilets areautomatically
locked when the train pulls into a station but that is not the
passenger friendly Solution.
1.1.2 Controlled Discharge Toilet System
Controlled Discharge Toilet System is working on
the principal of speed of train & and high - flush technology
through which the evacuation of toilet bowl is carriedout by
means of water pressure. It operates with a pressurized
water bowl wash that covers 100 % of the toilet bowl area.
The human waste is transferred to the retention tank with a
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 445
control amount of water. The basic purpose of introduction
of Control Discharge toilet system in Indian Railway is to
eliminate the practice of spillage of toiletwasteontorailway
station area & in the populated area of city.
1.1.3 Bio-Toilet system
A Bio-Toiletisa completely biological system.Which
convert solid human waste to Bio-gas and water, with the
help of a bacterial Inoculum by bio- degradation process.
Biological decomposition of Human waste is done in bio-
digester tanks with the help of anaerobic bacteria which is
developed at bacteria generation plant at Motibagh
Workshop SECR, Nagpur & DRDE/Gwalior. Bio-Toilet is an
innovative technology for disposal of solid human waste in
an eco-friendly, economical and hygienic manner.
1.1.4 Vacuum Controlled Bio-Toilet System
The main purpose of introduction of this toilet is
saving the water .As the tank capacity for waste and fresh
water is limited, the most suitable toilet for trains is the
vacuum toilet, which only uses about 0.5-1 liter of water per
flush. The common set-up for the onboard toilet system
comprises a vacuum toilet module, which has all the
required equipment to generate the vacuum, flush and
empty the bowl, a holding tank forthewasteandsupplies for
water, compressed air and electrical power.
Saving space as well as resources, this microprocessor
controlled, all-in-one unit features a local vacuum system,
removing the need for a vacuum-proofwaste watertank.Itis
available with both sliding gate valve and pinch valve. Use
depends on customer preferences and specifications. The
customer has a choice between sit-down, squatting pan and
urinal styles
1.2 Problem Statement
Due to conventional toilet system & Bio toilet system
various problems are produced like,
I. The Comptroller and Auditor General in a 2017
report had found that almost two lakh complaints
regarding choking & foul smell, and non-functional
bio-toilets.
II. More water consumption.
III. Blockage & poor efficiency of Toilet.
IV. Improvement in cleaning and Corrosion of railway
track.
1.3 Objective
I. Eliminate foul smell & chocking.
II. Minimize the water consumption.
III. Increase the life of railway track.
IV. Provide efficient working condition to green toilet.
V. Reduce the cost required for cleaning of platform.
VI. Provide hygienic & healthy condition to Railway
workers, railway staff, track man etc.
1.4 Methodology
CAG report study/Data collection /Initial study
Selection of Coach
Specify requirement/Technical specification
Design/Manufacturing/outsourcing of components
Assembly of components
Testing & analytical study result
Conclusion
Fig-1.4.1: Flow of Methodology
1.4.1 Steps in Methodology
1. Study and analysis of conventional toilet system.
2. Study of bio-toilet system, Controlled discharge
toilet system.
3. Searching drawbacks of different toilet systems.
4. Inventing new systems that overcome the
drawbacks of early systems & also upgrade the
system.
5. Specify technical parameter & requirement for our
coach.
6. Collection of material & which are required for
7. Manufacturing new system with the help of
industrial manufacturing unit.
8. Assembly of the different parts on unit.
9. Analysis and testing of new invented system.
10. Conclusion of new invented system.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 446
1.5 Literature Gap
The Research work done by most of researchers brief in
I. Controlled discharge toilet system.(CDTS)
II. Automatic discharge toilet system.(ADTS)
III. Central vacuum toilet system.
IV. Bio-toilet
V. Bio-gas generation
VI. Sanitation technology.
Very few of researchers had carried out research in
vacuum green toilet for Indian railways & had focused on
water conservation for Indianrailways toiletsystem.HenceI
had chosen this area as my research area.
1.6 Parts of vacuum control green toilet System
1. Vacuum commode/latrine pan-To holds human
waste in bowl. It has water nozzle to supply high
pressure water.
2. Biodigester Tank -It is divided in to 7 partitions It
consist anaerobic bacteria which is used for
degradation of human waste.
3. Intermediate tank- To hold the waste during the
flush cycle.
4. Inlet valve -Will open briefly for the waste to be
moved from the bowl to the intermediate tank
5. Outlet valve- Will open briefly to expel the waste
from the Intermediate tank to the holding tank.
6. Ejector-Generates the vacuum by a flow of
Compressed air
7. Pinch (hose) valve-Normally open, but closed
when the intermediate tank is pressurized
8. Water pressuriser- Amplifies the water pressure
to generate enough flow through the flush nozzles
to clean the toilet bowl
9. Air filter/regulator- Cleans andregulatestheairto
nominated working pressure for the toilet
10. Solenoid valves-For actuating all operations.
Fig-1.6.1: Flow process of vacuum green toilet system
1.7 Working of vacuum control green toilet System
1. Firstly Human waste is hold invacuumcommodebowl.
2. High pressure water is supplied to nozzle in bowl
through water pressuriser.
3. By actuating solenoid valve ejector generates vacuum
in intermediate tank.
4. Inlet valve is open by actuatingsolenoidvalve&human
waste sucked in retention tank.(out let valve is closed
at that time)
5. Then Inlet valve is closed and air is passing through
pinch valve and pressure is created in retention tank.
6. Then outlet valve is open and with high pressure
human waste is discharged to Bio-digester tank.
7. In bio-digester bio degradation of human waste take
place & human waste is converted to water. Later this
water is chlorinated & discharge.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 447
Fig-1.7.1: Vacuum control green toilet system
2. CALCULATION & STASTICAL ANALYSIS
1. Approx use of toilet by passenger in per day percoach
100 times toilet and 500 times urinal used per coach
per day.
2. Water consumption in one use of Toilet 8-9litre & for
urinal 4-5litre
3. Water consumption per coach in one day =
(100*8.5)+(4.5*500)=3100lit/coach/day
4. for vacuum toilet in one use - 1 to 1.5 liter
5. Water consumption per coach in vacuum toilet in one
day = (100*1.25) + (500*1) = 625 liter/coach/day
6. Water conservation per day per coach= 3100-625 =
2475 liter
7. Water conserved per coach by vacuum toilet in
service = (2475*344*25) = 2,12,85,000 liters
a. Note -21day per year are assumed for POH,
8. Life of vacuum controlled unit 25years
9. Average rate of water 0 .1Rs Per liter
10. Cost of water saved by vacuum toilet in his life span
=2,12,85,000 *0.1=21,28,500Rs.
11. Difference in the cost of Bio toilet andCostofvacuums
toilet - 2.5 lakh /unit
Using Vacuum toilet we can save Revenue of railway for
water is Rs 11.28 lakh per coach in life span.
3. ADVANTAGES & DISADVANTAGES
3.1 Advantages
1. As there is no sludge formation, there is no need for
de-slugging and treatment.
2. No bad smell in toilets from the tanks.
3. Fecal matter in the tank not visible
4. Effluent is free from off odor and solid waste
5. Indication facility of Choke up & failure.
6. It is more economical in the long-term as it
conserves water
7. Night soil degradation occurs through microbial
reaction which converts it into biogas and odorless
water.
8. Permits use of toilet cleansing agents.
9. Lifelong usage bio-digester tank does not need
recharging, re-shifting or maintenance.
10. Easy to transport and install.
11. One-third to one-fourth capacity of septic tank
12. Space requirement is less.
3.2 Disadvantages
1. Relatively high initial cost.
2. Robust construction.
3. Depended on electric power & air supply
4. Due to new technology for maintenance required
skilled staff
5. Coarse materials can lead to blockage of collection
system
6. By pass system or dual mode system not available
in the case of enroute failure
7. Requires space for connection
8. Passenger Awareness Required.
4. CONCLUSIONS
From the Present study of vacuum controlled Green-
Toilet system following points are concluded
1. Using Vacuum green toilet water conservation can
be done.
2. Unhygienic environmentchangedtohealthy&clean
environment.
3. Problem of foul smell & bad odor in Lavatories can
be resolved.
4. Better environment for biodegradation processcan
be maintained.
5. Vacuum green toilet system is future of Indian
Railway Toilet system.
5. APPLICATON
1. Indian Railways.
2. High speed trains & foreign railways.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 448
ACKNOWLEDGEMENT
The author’s gratefully acknowledge the Technical
support provided by Central Railway, Mumbai division.This
work would not have been materialized without the great
guidance given by our guide, Prof.J.JSalunkewhohadgivena
constant source of ideas and inspiration. The author
expresses gratitude towards Dr. Ulhas Shiurkar (Director of
Deogiri Institute of Engineering And Management Studies)
and Prof. P.G.Taur (Head of Mech. Department) for their
continuous motivation and encouragement.
REFERENCES
1. “A Concept for Eco-friendly sanitary system in
Indian railways”, Pradip Gunaki, Karthik.S and
Sachin Prabha International Journal of Advances in
Scientific Research and Engineering (ijasre) Vol.3,
Special Issue (2017).
2. A Study on control discharge Toilet System” by
G.Bhvani Prasad SSE/NC/LGDS Indian railway
Conference Association New Delhi (2012)
3. “Automatic Discharge Toilet System” [ADTS] in
Indian Railway Dr. Vijay Kumar, Kaushal Yadav,
Kamal Yadav Indian Journal of Research
Paripex(2016)
4. “Antarctic Bacteria Hold Key to Zero-WasteToilets”
Bulletin of Environment, Pharmacology and Life
Sciences Raaz Maheshwari (2012)
5. “The sanitation Economy of India”, Prabhat Pani
Head of Partnerships and Technology, Tata Trust
TBC Steering Committee (2014).
6. “Developing smart toilet using IOT”Mrs.K.Elavarasi,
Mrs.V.Suganthi, Mrs.J.Jayachitra, International
Journal of Pure and Applied Mathematics (2018)
7. “Field testing of a prototype mechanical dry toilet
flush Jan Hennigs, Kristin T. Ravndal ,
ThubelihleBlose , AnjuToolaram, Rebecca C. Sindall
,Dani Barrington ,Matt Collins , Bhavin Engineer ,
Athanasios J. Kolios (2019)
8. “Design of vacuum controlled discharge Lavatory
system”K.Santhapriyan,R.Rajad Sing, S.Sasikumar,
M.Thirumoorthy IJREAT International Journal of
Research in Engineering & Advanced Technology,
(2015)www.ijreat.org
9. “Early testing of new sanitation technology for
urban slums” The case of the Blue Diversion Toilet,
Robert Tobias, Mark O’Keefe, Rahel Künzle, Heiko
Gebauer , Harald Grund(2016)
10. “Application of a Vacuum Water Closet System in a
Brazilian Airport” O. Oliveira Junior , J. Silva Neto
11. “Sewage Disposal System for Trains” Current
System and Future Prospects ,Devwrat Vegad and
Sunny Paruthi, (2017)
12. “Bio-Toilet used in Indian Railway”Jayshri S.
Nandardhane, Shadab S. Patel, Ashwini V.
Khobragade, A.A.Dhole IARJSET(2017)
13. “Fabrication of Semi Automated Pressurized
Flushing System in Indian Railway Toilet” S
Mohamed Ashiq, K Karthikeyan, S Karthikeyan
IJEAT( 2013)
14. “A Comparative Study Of Indian & Worldwide
Railways” Sunil Kumar Sharma and Anil Kumar
,IJMERR(2014)
15. “Waste Management Analysis in training in trains
using anaerobic bio digester” ,Naik
Nitesh,Manjunath shettear,Ritesh Bhat,
International Journal of Advances in Science
Engineering and Technology(2016)
16. “Toilet & Trains” by G. Raghuram IIM Ahambad,
(2008)
17. Coach maintenance manual by CAMTEC Indian
railways.
18. CAG report 2017.
19. EVAC vacuum toilet Manuals.
20. BAS Rail & Electrical Manual.
BIOGRAPHIES
Mr.Sandeep Burande,
DIEMS
Dept. Of Mechanical Engineering,
Dr.B.A.M.U. Aurangabad

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IRJET - Analytical Study of Vacuum Controlled Green Toilet System for Indian Railways

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 444 ANALYTICAL STUDY OF VACUUM CONTROLLED GREEN TOILET SYSTEM FOR INDIAN RAILWAYS Mr.S.A.Burande1, Prof. J.J. Salunke2 1P.G.Student, Dept. of Mechanical Engineering, D.I.E.M.S., Aurangabad, Maharashtra, India 2Professor, Dept. of Mechanical Engineering, D.I.E.M.S, Aurangabad, Maharashtra, India ---------------------------------------------------------------------***---------------------------------------------------------------------- Abstract - The disposal of human waste is a very big problem for Indian railway. Incineration and chemical treatment of human waste has also been used to overcomethe problem. However, all these methods are either unhygienic or not practically feasible alternatives. Controlled discharge toilet system having limitation to solve problem of sanitation. Bio-toilet system is used are quite good approach & providing hygienic condition of their biodegradation procedure, but problem of more water consumption, foul smell & chocking. Overcoming these problems with Alteration&upgradation we prefer for modern vacuum controlled green toilet system. Vacuum controlled green toilet for Indian railways, It secured the environment and make eco-Friendly. The aesthetic appearance of track should be good and nuisance from the human excreta on the track can be eliminated. Water consumption also saved &corrosioncausedbythefecalmatter can be minimized. By using Vacuum controlled green toilet system we can convert the solid waste into the pure water by means of biodegradation with anaerobic bacteria afterword with chlorination of discharged water. We can be utilized this water for washing of track and bogies and the remaining sludge can be used as fertilizer for agriculture purpose. Sothis vacuum controlled green toilet is very useful and essential for Indian Railways. Key Words: Human waste, Indian railway, Incineration, Chemical treatment, Green toilet, Bogies, Odour, 1. INTRODUCTION Indian Railway plays an important role as being a lifeline of India. Railways were the most important development from the point of view of the infrastructure in India from 1852. Railways in India are the only reliable and feasible source on land for transportation. Indian Railways (IR) is one of the largest railway systems in the World. Indian railways having Vision 2020 which would be focuses on Track Enhancement, Environmental Sustainability, Network Expansion of Railway, Capacity Creation, Train Safety, Reducing Carbon Footprint, High Speed Train Introduction and Technological Excellence. There are enormous challenges. It aims to develop a world class rail infrastructure & technology as countries like USA, China, Japan etc. On any regional or intercity train, the toilet system is an important part and the reliability of the system is critical. Without working toilets, the train cannot be put in service. The disposal of human waste is very big problem in high altitude areas. In non- glacier region the waste is collected and used as a fertilizer in the field. Incinerationandchemical treatment of human waste also has been attempted to overcome problem. However, all this methods are either unhygienic or not practically viable alternatives. Biological treatment is an attractive approach forsolvingtheproblems, but decreased metabolic activities of the micro-organisms, freezing of the substrate non-availability of conventional energy sources and hilly terrains are some of hurdles which need to be solving to make the process practically possible. IR-DRDO has developed an innovative technology for disposal of human waste in eco-friendly manner at high altitude location at low temperature.Theprocessculminates into treated effluent, whichisfreefrompathogensandis also environmental friendly. 1.1 Types of toilet system in Indian railways 1. Conventional Toilet System. 2. Controlled Discharge Toilet System.(CDTS) 3. Bio-Toilet system. 4. Vacuum Controlled Bio-Toilet System. 1.1.1 Conventional Toilet System The traditional method of disposing human waste from trains is merely to deposit the waste onto the tracks using a method known as a 'Hopper Toilet'.Thisranges from the toilets being a hole in the floor of the train, to a full flush system. The hole in the floor system where waste is deposited on the track is still in use in many parts of the world but it can be considered crude or unhygienic and it litters Railway lines and can produce health risks if the train is passing over a public waterway. Passengers may be discouraged from using toilets while the train is at a station. Although there are solutions where toilets areautomatically locked when the train pulls into a station but that is not the passenger friendly Solution. 1.1.2 Controlled Discharge Toilet System Controlled Discharge Toilet System is working on the principal of speed of train & and high - flush technology through which the evacuation of toilet bowl is carriedout by means of water pressure. It operates with a pressurized water bowl wash that covers 100 % of the toilet bowl area. The human waste is transferred to the retention tank with a
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 445 control amount of water. The basic purpose of introduction of Control Discharge toilet system in Indian Railway is to eliminate the practice of spillage of toiletwasteontorailway station area & in the populated area of city. 1.1.3 Bio-Toilet system A Bio-Toiletisa completely biological system.Which convert solid human waste to Bio-gas and water, with the help of a bacterial Inoculum by bio- degradation process. Biological decomposition of Human waste is done in bio- digester tanks with the help of anaerobic bacteria which is developed at bacteria generation plant at Motibagh Workshop SECR, Nagpur & DRDE/Gwalior. Bio-Toilet is an innovative technology for disposal of solid human waste in an eco-friendly, economical and hygienic manner. 1.1.4 Vacuum Controlled Bio-Toilet System The main purpose of introduction of this toilet is saving the water .As the tank capacity for waste and fresh water is limited, the most suitable toilet for trains is the vacuum toilet, which only uses about 0.5-1 liter of water per flush. The common set-up for the onboard toilet system comprises a vacuum toilet module, which has all the required equipment to generate the vacuum, flush and empty the bowl, a holding tank forthewasteandsupplies for water, compressed air and electrical power. Saving space as well as resources, this microprocessor controlled, all-in-one unit features a local vacuum system, removing the need for a vacuum-proofwaste watertank.Itis available with both sliding gate valve and pinch valve. Use depends on customer preferences and specifications. The customer has a choice between sit-down, squatting pan and urinal styles 1.2 Problem Statement Due to conventional toilet system & Bio toilet system various problems are produced like, I. The Comptroller and Auditor General in a 2017 report had found that almost two lakh complaints regarding choking & foul smell, and non-functional bio-toilets. II. More water consumption. III. Blockage & poor efficiency of Toilet. IV. Improvement in cleaning and Corrosion of railway track. 1.3 Objective I. Eliminate foul smell & chocking. II. Minimize the water consumption. III. Increase the life of railway track. IV. Provide efficient working condition to green toilet. V. Reduce the cost required for cleaning of platform. VI. Provide hygienic & healthy condition to Railway workers, railway staff, track man etc. 1.4 Methodology CAG report study/Data collection /Initial study Selection of Coach Specify requirement/Technical specification Design/Manufacturing/outsourcing of components Assembly of components Testing & analytical study result Conclusion Fig-1.4.1: Flow of Methodology 1.4.1 Steps in Methodology 1. Study and analysis of conventional toilet system. 2. Study of bio-toilet system, Controlled discharge toilet system. 3. Searching drawbacks of different toilet systems. 4. Inventing new systems that overcome the drawbacks of early systems & also upgrade the system. 5. Specify technical parameter & requirement for our coach. 6. Collection of material & which are required for 7. Manufacturing new system with the help of industrial manufacturing unit. 8. Assembly of the different parts on unit. 9. Analysis and testing of new invented system. 10. Conclusion of new invented system.
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 446 1.5 Literature Gap The Research work done by most of researchers brief in I. Controlled discharge toilet system.(CDTS) II. Automatic discharge toilet system.(ADTS) III. Central vacuum toilet system. IV. Bio-toilet V. Bio-gas generation VI. Sanitation technology. Very few of researchers had carried out research in vacuum green toilet for Indian railways & had focused on water conservation for Indianrailways toiletsystem.HenceI had chosen this area as my research area. 1.6 Parts of vacuum control green toilet System 1. Vacuum commode/latrine pan-To holds human waste in bowl. It has water nozzle to supply high pressure water. 2. Biodigester Tank -It is divided in to 7 partitions It consist anaerobic bacteria which is used for degradation of human waste. 3. Intermediate tank- To hold the waste during the flush cycle. 4. Inlet valve -Will open briefly for the waste to be moved from the bowl to the intermediate tank 5. Outlet valve- Will open briefly to expel the waste from the Intermediate tank to the holding tank. 6. Ejector-Generates the vacuum by a flow of Compressed air 7. Pinch (hose) valve-Normally open, but closed when the intermediate tank is pressurized 8. Water pressuriser- Amplifies the water pressure to generate enough flow through the flush nozzles to clean the toilet bowl 9. Air filter/regulator- Cleans andregulatestheairto nominated working pressure for the toilet 10. Solenoid valves-For actuating all operations. Fig-1.6.1: Flow process of vacuum green toilet system 1.7 Working of vacuum control green toilet System 1. Firstly Human waste is hold invacuumcommodebowl. 2. High pressure water is supplied to nozzle in bowl through water pressuriser. 3. By actuating solenoid valve ejector generates vacuum in intermediate tank. 4. Inlet valve is open by actuatingsolenoidvalve&human waste sucked in retention tank.(out let valve is closed at that time) 5. Then Inlet valve is closed and air is passing through pinch valve and pressure is created in retention tank. 6. Then outlet valve is open and with high pressure human waste is discharged to Bio-digester tank. 7. In bio-digester bio degradation of human waste take place & human waste is converted to water. Later this water is chlorinated & discharge.
  • 4. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 447 Fig-1.7.1: Vacuum control green toilet system 2. CALCULATION & STASTICAL ANALYSIS 1. Approx use of toilet by passenger in per day percoach 100 times toilet and 500 times urinal used per coach per day. 2. Water consumption in one use of Toilet 8-9litre & for urinal 4-5litre 3. Water consumption per coach in one day = (100*8.5)+(4.5*500)=3100lit/coach/day 4. for vacuum toilet in one use - 1 to 1.5 liter 5. Water consumption per coach in vacuum toilet in one day = (100*1.25) + (500*1) = 625 liter/coach/day 6. Water conservation per day per coach= 3100-625 = 2475 liter 7. Water conserved per coach by vacuum toilet in service = (2475*344*25) = 2,12,85,000 liters a. Note -21day per year are assumed for POH, 8. Life of vacuum controlled unit 25years 9. Average rate of water 0 .1Rs Per liter 10. Cost of water saved by vacuum toilet in his life span =2,12,85,000 *0.1=21,28,500Rs. 11. Difference in the cost of Bio toilet andCostofvacuums toilet - 2.5 lakh /unit Using Vacuum toilet we can save Revenue of railway for water is Rs 11.28 lakh per coach in life span. 3. ADVANTAGES & DISADVANTAGES 3.1 Advantages 1. As there is no sludge formation, there is no need for de-slugging and treatment. 2. No bad smell in toilets from the tanks. 3. Fecal matter in the tank not visible 4. Effluent is free from off odor and solid waste 5. Indication facility of Choke up & failure. 6. It is more economical in the long-term as it conserves water 7. Night soil degradation occurs through microbial reaction which converts it into biogas and odorless water. 8. Permits use of toilet cleansing agents. 9. Lifelong usage bio-digester tank does not need recharging, re-shifting or maintenance. 10. Easy to transport and install. 11. One-third to one-fourth capacity of septic tank 12. Space requirement is less. 3.2 Disadvantages 1. Relatively high initial cost. 2. Robust construction. 3. Depended on electric power & air supply 4. Due to new technology for maintenance required skilled staff 5. Coarse materials can lead to blockage of collection system 6. By pass system or dual mode system not available in the case of enroute failure 7. Requires space for connection 8. Passenger Awareness Required. 4. CONCLUSIONS From the Present study of vacuum controlled Green- Toilet system following points are concluded 1. Using Vacuum green toilet water conservation can be done. 2. Unhygienic environmentchangedtohealthy&clean environment. 3. Problem of foul smell & bad odor in Lavatories can be resolved. 4. Better environment for biodegradation processcan be maintained. 5. Vacuum green toilet system is future of Indian Railway Toilet system. 5. APPLICATON 1. Indian Railways. 2. High speed trains & foreign railways.
  • 5. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 448 ACKNOWLEDGEMENT The author’s gratefully acknowledge the Technical support provided by Central Railway, Mumbai division.This work would not have been materialized without the great guidance given by our guide, Prof.J.JSalunkewhohadgivena constant source of ideas and inspiration. The author expresses gratitude towards Dr. Ulhas Shiurkar (Director of Deogiri Institute of Engineering And Management Studies) and Prof. P.G.Taur (Head of Mech. Department) for their continuous motivation and encouragement. REFERENCES 1. “A Concept for Eco-friendly sanitary system in Indian railways”, Pradip Gunaki, Karthik.S and Sachin Prabha International Journal of Advances in Scientific Research and Engineering (ijasre) Vol.3, Special Issue (2017). 2. A Study on control discharge Toilet System” by G.Bhvani Prasad SSE/NC/LGDS Indian railway Conference Association New Delhi (2012) 3. “Automatic Discharge Toilet System” [ADTS] in Indian Railway Dr. Vijay Kumar, Kaushal Yadav, Kamal Yadav Indian Journal of Research Paripex(2016) 4. “Antarctic Bacteria Hold Key to Zero-WasteToilets” Bulletin of Environment, Pharmacology and Life Sciences Raaz Maheshwari (2012) 5. “The sanitation Economy of India”, Prabhat Pani Head of Partnerships and Technology, Tata Trust TBC Steering Committee (2014). 6. “Developing smart toilet using IOT”Mrs.K.Elavarasi, Mrs.V.Suganthi, Mrs.J.Jayachitra, International Journal of Pure and Applied Mathematics (2018) 7. “Field testing of a prototype mechanical dry toilet flush Jan Hennigs, Kristin T. Ravndal , ThubelihleBlose , AnjuToolaram, Rebecca C. Sindall ,Dani Barrington ,Matt Collins , Bhavin Engineer , Athanasios J. Kolios (2019) 8. “Design of vacuum controlled discharge Lavatory system”K.Santhapriyan,R.Rajad Sing, S.Sasikumar, M.Thirumoorthy IJREAT International Journal of Research in Engineering & Advanced Technology, (2015)www.ijreat.org 9. “Early testing of new sanitation technology for urban slums” The case of the Blue Diversion Toilet, Robert Tobias, Mark O’Keefe, Rahel Künzle, Heiko Gebauer , Harald Grund(2016) 10. “Application of a Vacuum Water Closet System in a Brazilian Airport” O. Oliveira Junior , J. Silva Neto 11. “Sewage Disposal System for Trains” Current System and Future Prospects ,Devwrat Vegad and Sunny Paruthi, (2017) 12. “Bio-Toilet used in Indian Railway”Jayshri S. Nandardhane, Shadab S. Patel, Ashwini V. Khobragade, A.A.Dhole IARJSET(2017) 13. “Fabrication of Semi Automated Pressurized Flushing System in Indian Railway Toilet” S Mohamed Ashiq, K Karthikeyan, S Karthikeyan IJEAT( 2013) 14. “A Comparative Study Of Indian & Worldwide Railways” Sunil Kumar Sharma and Anil Kumar ,IJMERR(2014) 15. “Waste Management Analysis in training in trains using anaerobic bio digester” ,Naik Nitesh,Manjunath shettear,Ritesh Bhat, International Journal of Advances in Science Engineering and Technology(2016) 16. “Toilet & Trains” by G. Raghuram IIM Ahambad, (2008) 17. Coach maintenance manual by CAMTEC Indian railways. 18. CAG report 2017. 19. EVAC vacuum toilet Manuals. 20. BAS Rail & Electrical Manual. BIOGRAPHIES Mr.Sandeep Burande, DIEMS Dept. Of Mechanical Engineering, Dr.B.A.M.U. Aurangabad