Technology

Water is life, essential for daily sustenance and healthy living. With plummeting groundwater levels, contamination of water sources and increasing consumption, challenges in the water sector have increased manifold. Safe, sustainable and affordable water in the face of growing water needs is a severe challenge. With fresh water supplies already hard pressed to meet growing demand, technology plays an important role in managing and using the limited available water in a cost effective and critical manner.

Water contamination occurs both due to human activities and natural processes. Depending upon the purpose for which the water is needed--municipal, industrial or agriculture--treatment is carried out. The technology used will depend upon the current water quality, future standards required and economics of the treatment method. Water treatment removes contaminants that may be biological, physical or chemical in nature. 

Various water treatment technologies are present that purify polluted water by removing undesirable chemicals or biological contaminants and making it fit for human consumption. Use based classification of surface waters in India has been laid down by the Central Pollution Control Board (CPCB). The details of the permissible and desirable limits of various parameters in drinking water as per Bureau of Indian Standards (BIS) standard specifications for potable water are also detailed in the IS 10500:1991

Water treatment plants use technologies to produce water that is safe both chemically and biologically, and that is appealing in terms of colour, odour and taste. The control point for water quality determination must be the consumer's tap and not the treatment facility, which means that the water quality must not be impaired during transmission, storage and distribution to the user. The treatment methods at the plant include aeration, coagulation and flocculation, sedimentation, filtration and disinfection.  Some of the prevalent water purification & treatment technologies are listed below.

  • Capacitive Deionization (CDI) is a technology where ions are removed from water by passing it through a spacer channel with porous electrodes on each side
  • Ozonation is a chemical water treatment technique based on the infusion of ozone into water
  • Ultraviolet technology uses Ultraviolet light, just like sunlight, to kill micro-organisms present in the water
  • Reverse Osmosis (RO) is a technology that removes a large majority of contaminants by pushing the water under pressure through a semi-permeable membrane
  • TERAFIL is a burnt red clay porous media used for filtration & treatment of raw water into clean drinking water, developed Council of Scientific & Industrial Research (CSIR), Bhubaneshwar 
  • OS- Community scale Arsenic Filter is an organic arsenic filter, developed by IIT Kharagpur
  • Filtration methods that may include rapid/ slow sand filters remove dirt, rust, silt, dust and other particulate matter from water
  • Solar water purification systems 

Water treatment technologies for safe, potable water in rural areas that includes Capacitive Deionization Technology (CDI) using carbon aerogel, solar operated groundwater treatment plants and electro chlorination are described in a booklet ‘Compendium of innovative technologies on rural drinking water & sanitation’ by the Ministry of Drinking Water and Sanitation. 

Domestic drinking water filtration methods vary depending upon the method of purification used, the degree of ‘purity’ required, and the type of contaminants in the water. No one technology will fulfil all criteria--there is no ‘silver bullet’ solution. Some of the more popular methods for Household Water Treatment & Safe Storage (HWTS) options includes boiling, SODIS (Solar disinfection), Chlorine Tablets, Liquid Chlorine (online, Biosand filters, Flocculent treatment, Ceramic candle, Filter combinations, Pureit filters, Ultra Violet (UV) filters, Reverse Osmosis (RO) and Ion Exchange (IEX).

For more on water purification systems, click here.

Domestic Greywater Recycling Water filtration technologies

Any used water, other than sewage from toilet basins that exit a house or apartment complex, is referred to as sullage or greywater. This is mostly made up of water used in bathrooms and kitchens, constituting the bulk--nearly 60%-70%--of the total volume of water used in a day. 

Before underground sewerage was introduced in most cities, water followed a cyclical route. Water was drawn from dug wells within the premises. Refuse water from the bathrooms and kitchen was let out into the garden while water from the closets reached septic tanks. The soil treated the greywater and sent it back into the ground, thereby closing the household water consumption-reuse loop.

Contrary to popular belief, greywater is largely free from pathogens. As it is mostly made up of easily degradable organic waste and chemicals from cleaning products, it can be purified and reused in-situ with minimal effort. In many homes and apartment complexes, sending this perfectly reusable resource out of the plot along with sewage common-sight. Greywater can be brought back into the water cycle by employing simple biological and mechanical filtration techniques.

There are two basic requirements apart from the necessary plumbing arrangements for treating domestic wastewater:

  1. Open soil space
  2. Water loving plants

Water from bathrooms and kitchens can be diverted through a dedicated pipeline into the plant bed set aside for the treatment process. Here, the nutrients present in the waste water are absorbed by water loving plants such as Canna or Cyperus while the soil bacteria polish off the organic waste from the water. 

  • Constructed wetlands – These wetlands are created to replicate the process of bio-filtration that occurs in a natural setting. Here, the water is purified using two media, the planted surface and the gravel bed underneath. 
  • Reed bed treatment plants – A smaller version of the constructed wetlands, reed beds are perfect for individual houses and smaller complexes.
  • Mechanical filtration – Mechanical systems such as sand filters and pebble flow systems can be used to help filter out waste from the water by separating the discernable solids from the liquid component. 
  • Lava filters – These pebble filters are a combination of both biological and mechanical systems where the stones act as support structures for microorganisms that help break down the waste. 

For more on the basics of rainwater harvesting and greywater recycling, refer Self reliance in water: A book by Indukanth Ragade.  

Sewage treatment--Municipal and Industrial

Waste water flowing out of urinals and toilet closets are referred to as ‘blackwater’ or sewage. Blackwater cannot be treated in the same way as greywater as the former contains a heavy pathogen load from the fecal matter suspended in it. Sewage from towns and cities flowing directly into water bodies is one of the major reasons for water pollution.

Municipal wastewater treatment plant, Yelahanka, Bangalore

While City Corporations are in charge of laying underground sewerage pipes to collect, channel and treat sewage, localities outside city limits have a greater responsibility of managing their own waste. Apartment complexes and townships mostly rely on small scale sewage treatment plants (STP) to treat their waste.

Wastewater can be treated either in the presence or absence of oxygen. While aerobic digestion involves the breakdown of waste by microorganisms in the presence of oxygen, anaerobic systems work in its absence. Various types of processes are used to treat both domestic and industrial waste water such as:

  • Activated Sludge Process where biological agents such as bacteria are used in the presence of air to oxidise the nutrients present in the sewage 
  • Sequencing Batch Reactors help equalize, aerate and sediment waste water in timed batches by mixing it with activated sludge and oxygen to reduce the organic load 
  • Membrane Bio Reactors provide a higher degree of organic and solid removal by combining the principles of both mechanical filtration and biological digestion to treat municipal waste 
  • Moving Bed Bioreactors are mainly used for aerating and treating high-strength wastewater where several floating polyethylene bio-films move in suspension provide surface area for the nutrient-digesting bacteria to grow 
  • Trickling filters are low-cost, aerobic systems made up of a fixed bed of gravel, rocks and moss over through sewage is passed to remove the nutrient material in the suspension 
  • Facultative aerated lagoons are shallow ponds where the sewage is allowed to with the atmospheric oxygen in the upper layers while the sludge settles down at the bottom 
  • Waste stabilisation ponds, categorized into three broad types – anaerobic, facultative and aeobic depending on the oxygen use intensity – help in reducing nutrient content and polishing waste water to re-use quality 
  • Up-flow anaerobic sludge blanket digestion treats wastewater in the absence of oxygen where the feed enters the tank through the bottom and flows upward as the bacteria present in the sludge digest organic the matter 

The CPCB publication on the status of sewage treatment in India throws light on the performance of sewage treatment plants across the country and the technologies currently being used in them. The status of waste water generation and treatment across the country is also available on the ENVIS Centre on hygiene, sanitation, sewage treatment systems and technology. 

Featured Articles
October 14, 2022 Arthan organizes a fireside chat to highlight the need for more data talent for social impact
There is a need to integrate data science into the existing education system (Image: Mohamed Mahmoud Hassan, Public Domain Pictures)
May 25, 2022 Enabling a culture of data sharing between programs and reuse of data
Participatory programs such as JJM require a large amount of village-level information on water (Image: Arpit Deomurar, FES)
April 13, 2022 Over 30% of Indian districts are prone to extreme forest fires, as per a CEEW study
More than 275 million people in India are exposed to extreme forest fire events. (Image: Naveen N Kadalaveni, Wikimedia Commons)
April 3, 2022 IoT-Cloud based water monitoring enables to build up ESG compliances, reduces water footprint
A real-time monitoring system based on IoT can be highly effective in fulfilling water needs, saving water cost, energy cost and reducing water footprint. (Image: Piqsels)
December 26, 2021 Strengthen governance and institutional capacity to mainstream climate adaptation into ICT policies
There is a need to include climate adaptation projects in regional cooperation platforms such as Asia-Pacific Information Superhighway that advance digital development (Image: ESCAP)
August 19, 2021 Use of digital tools for implementing natural resources management at scale in rural India
Digital planning tools like CLART can go a long way in achieving better land-use outcomes (Image: Foundation for Ecological Security)
Video: "Managing water and wastewater to the last drop in a nature-friendly way": A case study from a home-office in Indore, Madhya Pradesh
This video demonstrates an alternative way of dealing with waste through a decentralised waste disposal method. Rahul Banerjee, Director, Dhas Gramin Vikas Kendra, believes in managing the waste at the point of origin itself, rather than expecting an already inefficient and over burdened local body to find a conducive solution. Posted on 14 Jan, 2013 10:05 AM

 

Moving from paddy and sugarcane to less water-intensive crops such as oilseeds, pulses and millets can help resolve the Cauvery water dispute
What happens when two or more states are dependent on same water resource for agricultural purposes ? Do the states compete for the resource or are their needs sufficiently different from each other? What are the consequences of the competition for this precious resource? Posted on 14 Jan, 2013 12:10 AM

What happens when two or more states are dependent on same water resource for agricultural purposes ? Do the states compete for the resource or are their needs sufficiently different from each other? What are the consequences of the competition for this precious resource?

This article sheds light on the dispute between Karnataka and Tamil Nadu, for sharing Cauvery river water. The ongoing tussle between the two states has seen a lot of unrest amongst farmers in  form of dharnas, protests, rail roko and non-cooperation by citizens, and disagreement with the agreements made by their respective governments and unending negotiations by governments involved, to come to a mutually agreeable decision.

District-wise data on groundwater resources and its utilization in Andhra Pradesh for the year 2007-08 - A compilation by the Andhra Pradesh State Groundwater Department and the Central Groundwater Board
A compilation by Andhra Pradesh State Groundwater Department & Central Groundwater Board gives details of volumetric data on the groundwater resources and its uses for the year 2007-08. Posted on 13 Jan, 2013 10:53 PM

The data is categorised into watershed wise (basin-wise) annual availability of groundwater, current draft (utilisation), allocation for domestic and industrial needs, availability for future use (or the balance) and categorisation based on stage of development and rigorous statistical treatment of water levels.

Water, sanitation and health situation in select villages of Nadia district, West Bengal
To assess the exact level of water contamination in Nadia district of West Bengal, India Water Partnership commissioned a brief study to one of its east zone partners - Kalyani Institute for Study, Planning & Action for Rural Change (KINSPARC). KINSPARC conducted a comprehensive base-line survey of a cluster of villages in Nadia, based on which Iswaripur and Chandamari village were identified for in-depth study. Awareness and attitudinal changes among people generated by this survey may be interpreted as a step towards mitigating the threat of an impending disaster. Posted on 13 Jan, 2013 03:45 PM

Guest post: Veena Khanduri, India Water Partnership

The Gangetic river basin in Eastern India receives heavy monsoon rainfall, much higher than the rest of India. Nonetheless, the region suffers from both the problem of year round water availability as well as poor quality of drinking water. Due to excessive exploitation, the groundwater aquifers in the region have been depleting alarmingly, surface water is highly limited & poorly maintained and consequently cannot count up as a major source of safe drinking water.

Process of formation of Jajmau Area Water Partnership in Kanpur, Uttar Pradesh – Problems and solutions
Industrial effluents and sewage water are being diverted to the river Ganga by the cities and towns through which it passes. Nestled on the banks of Ganga, Kanpur, a highly urbanized and industrial city is polluting it most. Apart from the Government of India’s recently constituted National Ganga River Basin Authority, civil societies and NGOs too are putting rigorous efforts to make Ganga pollution free. Though the city has several big and small industries, the leather industries located in Jajmau, the oldest part of the city add to the problem of pollution in the river to a large extent. Posted on 13 Jan, 2013 12:01 PM

Industrial effluents and sewage water are being diverted to the river Ganga by the cities and towns through which it passes. Nestled on the banks of Ganga, Kanpur, a highly urbanized and industrial city is polluting it most. Apart from the Government of India’s recently constituted National Ganga River Basin Authority, civil societies and NGOs too are putting rigorous efforts to make Ganga pollution free. Though the city has several big and small industries, the leather industries located in Jajmau, the oldest part of the city add to the problem of pollution in the river to a large extent.

Report on Greening of the NRDWP: News and Policy Update from India WASH Forum e-Newsletter-Dec 2012
Report on Greening of the NRDWP: News and Policy Update from India WASH Forum e-Newsletter-Dec 2012 Posted on 11 Jan, 2013 07:44 AM

WASHGender in WASH: Misplaced perspective in WASH sector

Forced displacement: A gendered analysis of the Tehri dam project, Uttarakhand - An article in EPW
This paper by Vandana Asthana in the Economic and Political Weekly (EPW) examines the lived experiences of displaced women based on the empirical findings of research that looks at women displaced by the construction of the Tehri Dam and their relocation elsewhere. Posted on 10 Jan, 2013 08:18 PM

This paper by Vandana Asthana in the Economic and Political Weekly (EPW) examines the lived experiences of displaced women based on the empirical findings of research that looks at women displaced by the construction of the Tehri Dam and their relocation elsewhere.

Toolkit for solid waste management by Ministry of Urban Development
This document by Ministry of Urban Development is a toolkit for solid waste management, which is developed under the Jawaharlal Nehru National Urban Renewal Mission. It is prepared with a motive to provide comprehensive knowledge on solid waste management for municipal managers when they implement projects. Posted on 10 Jan, 2013 03:28 PM

This document by Ministry of Urban Development is a toolkit for solid waste management, which is developed under the Jawaharlal Nehru National Urban Renewal Mission. It is prepared with a motive to provide comprehensive knowledge on solid waste management for municipal managers when they implement projects.

Effect of drinking arsenic-contaminated water in children- Article in Indian Journal of Public Health
This paper in Indian Journal of Public Health sheds light on the specific impact of arsenic on health of children based on the review of literature on the subject. Posted on 09 Jan, 2013 10:44 PM

This paper in Indian Journal of Public Health sheds light on the specific impact of arsenic on health of children based on the review of literature on the subject. The effects of chronic arsenic toxicity under the following aspects:

  • Psychological
  • Skin abnormalities
  • Lung diseases
  • Defect in intellectual function
  • Genetic issues

Sand mining – An unexamined threat to water security
Sand is a resource whose economic value belies the crucial role it plays in our lives. The process of development in India has so far not taken into account the environmental and social consequences of indiscriminate sand mining. Posted on 09 Jan, 2013 08:12 PM

Sand is a resource whose economic value belies the crucial role it plays in our lives. The process of development in India has so far not taken into account the environmental and social consequences of indiscriminate sand mining.