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Get a complete Wastewater Treatment Plant Design for Conventional Activated Sludge in a few hours.  

There are two simple steps to get your customized design, enter 

1- Input the basics of a project.   
The design generator checks your data based on extensive regional databases and process validation algorithms.

2- The Design Generator creates a complete basic engineering design package for a Conventional Activated Sludge (CAS) treatment plant. It uses your data to generate simulations, sizing, and rendering

Get your free WWTP design - here

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A regional capacity development workshop on ‘Ensuring Water Security in

Changing Environment Scenario for Water Professionals of South Asian
Countries’ sponsored by UNESCO is being organized jointly by IIT Bombay,
NIH Bhoplal Regional Centre and NIT Hamirpur on November 26-27, 2015. The
venue for the workshop will be the Conference Hall, Victor Menezes
Convention Centre, IIT Bombay, Powai, Mumbai.

Please find enclosed brochure and registration form for the workshop. Your
are invited to attend the workshop.

Brochure%20and%20Registration%20form%20Combined.pdf

For registering online, please read the brochure and follow instructions.
Once you have online reference number or UTR number ready, kindly visit
the following link:

 http://tinyurl.com/Registration-UNESCO-Workshop

Also, you are requested to forward invitation to your colleagues and
friends who might be interested in attending the Workshop.

Thanks and best regards

Prof. A.K. Dikshit
Chairman, UNESCO-Workshop


--
Dr. A.K. Dikshit
Professor, Centre for Environmental Science and Engineering (CESE) Indian
Institute of Technology Bombay
Powai Mumbai 400 076 India.
Tel: (022)-2576-7862(O)/ 2576-8862(R)
Fax: (022)-2576-4650 / 2572-3480
Email:dikshit@iitb.ac.in

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The fast growing economy, rapid industrialization and growing urban population in India along with increasing wastewater generation are some of the major reasons for concern and reiterate the need for appropriate water management practices. Centre for Science and Environment recognizes this need and has developed a five-day hands on training programme aimed at giving practical exposure to participants on wastewater treatment for industrial and urban wastewater management including reuse and recycle.

The objective of this programme is to build capacity and create awareness among regulators, developers, consultants, NGOs, students and academicians to understand wastewater treatment process, technologies and affordable treatment options. The programme further aims at evaluating the performance and design parameters along with the applicable cost implication associated with each treatment system.

WHAT YOU WILL LEARN

  • Issues and challenges of urban and industrial wastewater treatment, conservation/ efficiency including reuse and recycle.

  • Wastewater treatment technologies including advanced treatment options

  • Decentralized approaches in treating urban wastewater (existing and emerging)

  • Planning, designing, monitoring and inspection of wastewater treatment systems

  • Proficiency on water and wastewater accounting

  • Sector specific exposure on wastewater treatment and management such as construction and industrial projects (distillery, tannery, textile, refinery, power plant etc).

  • Concept of zero discharge with case studies

  • Issues and challenges with Common Effluent Treatment Plants and way ahead

  • State of art practices for wastewater management

  • Law, policy options and standards for wastewater treatment

  • Hands on experience in wastewater sampling and analysis

OPEN FOR ALL:Regulators, Consultants, Engineers, Environment Managers, NGOs, Academics and Students

A certificate of participation will be awarded to all at the end of the programme

TOOLS
Lectures by experts, site visits to existing projects, practical group exercises, presentations by participants, reference materials and film screening.

COURSE FEE:

Rs. 15,000 (Concession for Academicians, NGOs and Students) 

Note: Accommodation can be arranged nearby the training centre, would incur extra charges.


COURSE DURATION

Date: August 24-28, 2015

Timings: 10:00 AM to 5:30 PM daily

Venue: Anil Agarwal Green College
Centre for Science and Environment,
38, Tughlakabad Institutional Area (Near Batra Hospital)
New Delhi- 110062

FOR REGISTERATIONdigvijay@cseindia.org

Last Date for Applying: August 20, 2015

 

For information contact:

Digvijay Singh Bisht, Senior Research Associate,
Industry and Environment Unit
Centre for Science and Environment
Tel: + 91-11-29955124/ 6110, Extension: 204
Fax: + 91-11-29955879
Mob. No.: + 91 9891921959
E-mail: digvijay@cseindia.org

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VACANCY FOR ENVIRONMENT PROFESSIONALS

Clover is in the business of devising and implementing ecological and innovative solutions to mitigate solutions. We use microbes for carrying out bio-remediation, plants for carrying out phyto-remediation and bio-mimicry in most of our solutions. Are current models have been well received and have been recognized by Ministry of Environment and Forests and CPCB.We are need of Technical and Marketing professionals for our Company. The details are as follows:

1st Ad: Marketing

  1. Experience: 2 -  5 Years
  2. Location: Delhi/NCR, Farukabad and Guwahati.
  3. Compensation: Best in the industry.
  4. Education: Minimum UG - B.Tech/B.E. - Environmental  PG - M.Sc - Environmental science or Environmental Engineering                      
  5. Industry Type: Wastewater Treatment and Solid Waste Management.
  6. Role: Sales and Marketing Executive / Manager
  7. Functional Area: Sales, Marketing, Business Development
  8. Posted Date: 10 Nov
  9. Job Description: Marketing and implementation of various existing innovative solutions formulated by the Company and documenting the results in the areas of wastewater treatment and solid waste management. Marketing and implementation of various existing innovative models. Should have proven sales track record in similar industry.
  10. Keywords: Waste Management, BD, Sales.
  11. Desired Candidate Profile: Candidate should be minimum M. Sc or B. Tech in Environmental Sciences (Knowledge of MS office is a must) with excellent communication skills. Experience in waste water treatment and solid waste management through bio-remediation shall be given preference.
  12. Company Profile: The Company is just 3 years old and already has gained recognition by many Institutions and State Governments in India. Some of them are CPCB, Ministry of Environment and Forest, Centre for Science and Environment etc.
  13. Contact Details

2nd Ad: Technical

  1. Experience: Minimum 2 -  5 Years
  2. Location: Delhi/NCR, Farukabad and Guwahati.
  3. Compensation: Best in the industry.
  4. Education: PhD in the field of Bacteriophages/ Consortium of microbes/ Biotechnology/ Environmental Microbiology or ME/ M.Tech in Environmental Engineering/ Bio-Technology.        
  5. Industry Type: Wastewater Treatment and Solid Waste Management.
  6. Role: Project management, Implementation and Research
  7. Functional Area: Research through Implementation
  8. Posted Date: 10 Nov
  9. Job Description: Project management and its Implementing and improving the existing models of the Company. Carrying out documentation and trouble shooting, creating and handling a team of field workers, using innovative ways and means to solve problems that may occur from time to time, liaison with different technical Institutes like IIT, CPCB, Ministry of Environment and Forest etc, be able to get work done through different Government agencies etc.                
  10. Keywords: Waste Management, Research, Implementation of projects, Project management, Bio-remediation and Bio-augmentation
  11. Desired Candidate Profile: Preference shall be given to candidates having experience in: In-situ sewage treatment, sewage drain monitoring, analysis of sewage and industrial samples for physico-chemical and bacteriological parameters, bio-remediation of oil sludge. Knowledge of MS office and requisite computer softwares is a must with excellent communication skills.
  12. Company Profile: The Company is just 3 years old and already has gained recognition by many Institutions and State Governments in India. Some of them are CPCB, Ministry of Environment and Forest, Centre for Science and Environment etc.
  13. Contact Details



Regards,
Sanjay Aggarwal
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Food Waste to Energy - Indian Perspectives

 

Food Waste to Energy Conversion - Indian Perspectives

 

 

Setu Goyal 

 

 

 

 

 


 

Introduction

The problem of waste management runs across geographies and its gravest causal agent, i.e. urbanism, is a global phenomenon. However, its ramifications are relatively more pronounced in developing nations on account of improved standards of living and changing consumption patterns. The growing population and increasing consumer demand is leading to excessive consumption of available resources and generation of tremendous amount of different kind of wastes, which is emerging as a chronic problem in urban societies. Their efficient management is needed at the earliest to avoid numerous problems related to public and environmental health.

The waste management hierarchy suggests that reduce, reuse and recycling should always be given preference in a typical waste management system. However, these options cannot be applied uniformly for all kinds of wastes. For examples, organic waste is quite difficult to deal with using the conventional 3R strategy.  Of the different types of organic wastes available, food waste holds the highest potential in terms of economic exploitation as it contains high amount of carbon and can be efficiently converted into biogas and organic fertilizer.

Market Size

A consistent growth rate of 8 to 10 percent for India is symbolic of its increasing production and consumption trends.  The main reasons for such trends have been the increasing disposable incomes and the growing consumerism and urbanism. All this has significantly contributed to the growth and economic development of the country, apart from tremendous increase in waste generation across the country.

The amount of waste generated by any country is directly proportional to its population and the mean living standards of the people.  As per the last census of India, the Indian population was 1027 million with about 5161 urban cities and towns contributing up to 28% of the total population.  A constant rate of increase of about 30% per decade in the number of town/cities urbanized is something to be considered with utmost diligence, since it is the urban areas, which mostly contribute to the waste generation. The situation grows even starker from the observation that the per capita waste generation in India has been rising by about 1-1.3% annually over the past few decades and the population itself has been rising at an annual rate of 1.2-1.5%.

With organic or food waste being one of the main constituents of the total urban waste generated,  it not only makes it essential to seek means for its safe disposal but at the same time, reiterates the huge business potential that ensues the proper utilization of such a widely available potential energy/power resource.

Anaerobic Digestion Technology

Anaerobic digestion is a proven and commercially available technology to handle wastes having high carbon content. It is widely acknowledged as the best means to deal with organic waste in rural as well as urban areas. One of the major benefits of anaerobic digestion is its almost negative impact on the environment since it saves on emissions which would have been caused if the organic waste was dumped into landfills or an equivalent amount of power would be generated using conventional fossil fuel based resources. Another important feature is its scalability and ability to accept varied types of biomass. World over, the technology has been reaching newer and higher scales, with plants of capacity 300 tonnes per day and above already in operation in countries like Austria, Germany, Sweden and Italy.


Process Description

The feedstock to be utlized, e.g. organic waste from various sources, is first collected and then passed through a shredder to reduce the minimum particle size. The homogenated mass is then moved to a mixing tank, wherein it is mixed with the recirculated digestate to bring it in contact with some of the wore out/used microbial biomass to increase the rate of biochemical degradation in the subsequent steps and also to make the input feed more acclimatized to the system or process requirements. This homogenate along with the recirculated digestate from the mixing tank, which is responsible for maintaining the adequate solid content in the feed in terms of volume, is then transferred to a storage tank. The main purpose of placing another tank in between the mixing tank and main bio-digester is to maintain an input reservoir in order to account for a few days of unavailability in feedstock. In certain cases of large-scale power application of this technology, waste heat is utilized from the gas engine exhaust and fed to the storage tank to double it up as a pre-digester by facilitating the growth of thermophilic bacterias and elimination of any pathogens.

 

 

The feed is then directed into the anaerobic digester. The most commonly used biogas plants for power generation using biogas are the Continiuous Stirred Tank Reactors (CSTR). These reactors involve anaerobic digestion at mesophillic temperaturres and generally have a retention time of about 20-25 days. For smaller scales and other domestic and thermal applications of biogas, other reactors are also commercially available like the floating drum KVIC model, fixed dome type model by TERI, the Janata model or the TERI Enhanced Acidification and Methanation (TEAM) setup which is essentially Upflow Anaerobic Sludge Blanket Reactors (UASB).

The quality and quantum of biogass depends on a variety of factors like the technology used, type of waste, moisture content, volatile matter, ash content, C/N ratio etc. An important consideration while generating power using biogas is the desulphurization of the gas. Anaerobic process results in the formation of H2S which on combustion generates SO2. It is not only corrosive to the gas engine but also harmful to the environment. To tackle this situation, chemical or biological desulphurization is carried out. The chemical desulphurization involves the use of FeCl2 in which chloride is replaced by sulphur owing to the higher affinity of the latter with Iron. Biological desulphurization on the other hand, utilizes the sulphur oxidizing bacteria and converts hydrogen sulphide into elemental sulphur, in the presence of air.

An important component of a typical biogas facility is the gas holder which is used to maintain a buffer between the production and consumption rates of the biogas. The gas is drawn into the gas engine from the gas holder and the waste heat generated is utilized to improve the overall efficiency of the system by directing it through the pre digester and the main digester.

Since the water effluent from such a process is expected to possess high BOD and COD characters, the need of a dedicated effluent treatment plant is ineluctable.  This waste water is mainly obtained after the dewatering of the slurry obtained from the above process. The solid content in the slurry increases after going through the de-watering stage in multiple stage screw-presses and it can be sold as high quality compost in the market.

Present Scenario

Although the Municipal Solid Waste Management Directive (2000) mandates source segregation of waste which is easily biodegradable in nature, in reality it has not been able to find widespread implementation till now. The major reasons include lack of proper implementation and reporting mechanism, and lower degree of awareness among the people in general. In addition, urban waste in India is also mixed with a huge amount of rubble, construction and demolition waste and other such wastes, which render the food-waste unsuitable for subsequent conversion to energy.

Most of the organic waste generated in the country is either being dumped into the landfills or composted or sent to piggeries. It is a sheer waste of such biodegradable waste capable of generating energy to be sent into the landfills. There it is not only responsible for large scale green house gas emissions, but also becomes a health hazard and creates terrestrial pollution.

There are numerous places which are the sources of large amounts of food waste and hence a proper food-waste management strategy needs to be devised for them to make sure that either they are disposed off in a safe manner or utilized efficiently. These places include hotels, restaurants, malls, residential societies, college/school/office canteens, religious mass cooking places, airline caterers, food and meat processing industries and vegetable markets which generate organic waste of considerable quantum on a daily basis.

Conclusion

The anaerobic digestion technology is highly apt in dealing with the chronic problem of organic waste management in urban societies. Although the technology is commercially viable in the longer run, the high initial capital cost is a major hurdle towards its proliferation. The onus is on the governments to create awareness and promote such technologies in a sustainable manner. At the same time, entrepreneurs, non-governmental organizations and environmental agencies should also take inspiration from successful food waste-to-energy projects in other countries and try to set up such facilities in Indian cities and towns.

References

  1. http://www.censusindia.gov.in/Census_Data_2001/Census_Newsletters/Newsletter_Links/eci_2.htm
  2. http://www.scribd.com/doc/27348441/Urbanization-in-India
  3. http://www.indiaenvironmentportal.org.in/files/swm_in_india.pdf
  4. http://www.adb.org/Documents/Events/2005/Sanitation-Wastewater-Management/paper-kumar.pdf
  5. http://www.nls.ac.in/CEERA/ceerafeb04/html/documents/Muncipalsoildwaste.htm
  6. http://www.teda.gov.in/page/Bio-wastetoenergy.htm
  7. http://www.worldsecuritynetwork.com/showArticle3.cfm?article_id=13488
  8. http://www.uperc.org/olduperc/Explanatory%20Memorandum.pdf
  9. http://www.mnre.gov.in/annualreport/2009-10EN/Chapter%205/chapter%205_1.htm

 

About the Author

Setu Goyal is pursuing Masters Program in Renewable Energy Engineering and Management at the TERI University (New Delhi), and has an entrepreneurial zeal to improve waste management and renewable energy scenarios in developing countries. He can be reached at setu.goyal@gmail.com

 

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