Drives and Control Solutions

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November 15, 2022

 

DCS Research from ABB Shows How Cities Can Tackle Water Stress 1 400x275

  • •ABB’s “Energy Transition Equation” report demonstrates how automation and digital technology can help wastewater companies reduce carbon emissions by up to 2,000 tons per annum1 , the equivalent volume of CO2 responsible for 30,000 tons of glacier mass lost every year2
  • •With over 50,000 existing wastewater plants worldwide and a predicted industry growth rate of over 7 percent, if scaled, the impact in tackling water scarcity and industrial carbon emissions, is vast
  • •Average operational cost savings of up to $1.2 million per plant3 provides cities with an affordable pathway to treat more wastewater and reduce amout of untreated wastewater pumped into rivers and seas

 

Recently, ABB published the first in a series of new reports for the energy and wastewater sectors to highlight the impact that technology can have in enabling industrial customers to reduce carbon emissions and manage the energy transition for a more sustainable future.

With the United Nations predicting a 40 percent water deficit by 20404, ABB has conducted research to reveal how better use of wastewater could relieve pressure on water supplies.

DCS Research from ABB Shows How Cities Can Tackle Water Stress 2 500x800

When treated effectively, wastewater can be returned to the water cycle for reuse, proving a valuable but often untapped resource in tackling water scarcity. Importantly, it also lowers the levels of untreated sewage pumped into rivers and oceans, which have hugely negative impacts on public health, the environment and marine life.

“Global data shows that only half of our wastewater is properly treated5,” said Brandon Spencer, President, ABB Energy Industries. “Allowing untreated wastewater back into our water courses not only has a disastrous effect on fisheries, animals, marine biodiversity, and public health, but it is also a terrible ‘waste’ of this commodity. We need to be doing more."

Treating wastewater, however, requires a lot of power, with the industry at large consuming up to three percent of the world’s total energy output6 and contributing over 1.5 percent to global greenhouse gas emissions.7

Seeking to redress this balance, ABB has conducted nine months of research and modelling with an independent economist, to demonstrate how greater adoption and integration of process automation technologies, can deliver both carbon and cost savings to enable more efficient treatment of wastewater.

The findings reveal that in wastewater sites, utilities could reduce carbon emissions by up to 2,000 tons per annum8, the equivalent volume of CO2 responsible for 30,000 tons of glacier mass lost every year. With over 50,000 existing wastewater plants worldwide, the opportunity, if scaled, is upwards of 100 million tons of COsaved.9

Furthermore, in applying a robust package of process control and digital solutions, water companies could reap annual operational savings of up to $1.2 million (9.5 percent) per plant, opening revenue streams to ensure higher volumes of wastewater are treated and less is discarded in our rivers and seas.

"ABB is committed to leading with technology to preserve precious resources such as water and energy, and ultimately enable a low-carbon society and a more sustainable world. In 2021, we have reduced our own CO2 emissions by 39% percent, compared with the baseline year of 2019, and as part of our Sustainability Strategy 2030, we are working with our customers with the aim of reducing their annual CO2 emissions by at least 100 megatons by 2030,” said Brandon Spencer.

The global wastewater market, driven by the need for more freshwater, population increase, and stringent environmental regulations, is projected to grow from $300 billion in 2022 to $490 billion by 2029.10

The reports’ economic modelling was undertaken by independent economist Steve Lucas of Developmental Economics11 in conjunction with ABB Energy Industries and supported with desktop research of academic and industry sources. ABB will publish further economic reports focused on the offshore, power and chemicals markets across 2022 and 2023.

To read and download the report, click here: solutions.abb/energy-transition

 

Notes:

Some research figures have been rounded out for the purpose of the press release – exact calculations and figures can be found in the report. Full breakdown of calculations included can be downloaded here

These figures are based on 1 x 95 ML greenfield wastewater facility with an operational life cycle of 32 years (and development phase of 4 years), and 1 X 50ML brownfield wastewater facility with an extended operational life cycle of 32 years.

1. Average figures taken across findings for new (greenfield) and existing (brownfield) wastewater facilities.
2. Source: Global warming to date could ‘obliterate’ a third of glacier ice - Carbon Brief, Nature Climate Change, by the researchers B. Marzeion, G. Kaser and F. Maussion
3. Average figures taken across findings for new and existing wastewater facilities
4. https://unesdoc.unesco.org/ark:/48223/pf0000231823_eng
5. ESSD - Country-level and gridded estimates of wastewater production, collection, treatment and reuse (copernicus.org)
6. Circular Economy: Tapping the Power of Wastewater - International Water Association (iwa-network.org)
7. Wastewater treatment for carbon capture and utilization | Nature Sustainability
8. Average figures taken across findings for new (greenfield) and existing (brownfield) wastewater facilities. 
9. https://www.waternewseurope.com/global-database-of-wwtps-and-their-effluents/#:~:text=More%20than%2058%2C000%20wastewater%20treatment,the%20wastewater%20treatment%20plants%20drain
10. https://www.fortunebusinessinsights.com/water-and-wastewater-treatment-market-102632
11. https://developmenteconomics.co.uk

 

Source

ABB Logo 300x150

 

 

 

 


Editor's Pick: Featured Article


DCS Put to the Ultimate Test Part 1 Torsion Tests by HELUKABEL 1 400x275

Cables and wires in industrial robots and other moving machine parts are often required to withstand extreme stresses caused by torsion. Constant repetitive movements put materials under considerable strain. At the same time, operators expect components to function perfectly and reliably throughout their entire service life to avoid disruptions, outages and safety hazards.

For this reason, at HELUKABEL, we simulate intensive and continuous torsion stresses under realistic conditions with our high-tech testing equipment in Windsbach. We have several types of apparatus for doing this because some of our customers, for example those in the automotive industry, have very precise specifications for how a torsion test is carried out. The tests show that our cables and wires withstand speeds up to 1,000°/s, accelerations up to 2,000°/s² and torsion angles up to 720°. Hence, we make sure that each product always meets our customers’ high standards, and that they receive the impeccable quality they rightly expect from us as a leading supplier of cables, wires and accessories for more than 40 years.

What Is Torsion?

 

To learn the answer, click here 

 


Sponsored Content


30 Minute Live Webinar 2:30 PM ET January 19th, 2023

DCS Siemens Sponsored Content 30 Minute Live Webinar January19 2023 300x250

 

 

With PC-based automation, you can implement applications and solutions that far exceed the functions of a classic controller. SIMATIC PC-based products offer you a flexible, innovative platform with long-term availability that give you a home field advantage when meeting the challenges of the digital factory for your machines and plants.

  

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DCS Festo Didactic at the Forefront of Developing Canadas Future Workforce 1 400x275

With Canadian manufacturing suffering from a growing labour shortage, the participation of industry in skills development is emerging as a vital component in hiring and retention.

The needs are stark: The Canadian Exporters and Manufacturers Association says almost 40% of its members have jobs they can’t fill. Five years from now, 60% expect to be short-staffed, especially when it comes to skilled trades. Statistics Canada forecasts the country’s labour force growth rate will remain below 0.2% for the rest of the decade, below replacement levels.

This growing shortage is affecting companies of all sizes. Already, some manufacturers acknowledge losing out on contracts because they can’t find the manpower to fulfill them.

In reality, the challenge is two-fold: to replenish and expand the workforce to help close the gap between the number of job seekers and vacancies through 2030 when the last baby boomers reach age 65, and ensure workers get opportunities throughout their careers to upgrade or add to their skillset as current technologies evolve and new ones emerge. Festo, through Festo Didactic, one of the world leading provider of equipment and solutions for technical education, intends to help Canada meet this challenge on both fronts. In essence, the approach Festo has always taken is that the learning never stops.

 

Read more here


 

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DCS New Emerson Valves Deliver Proportional Flow Control Performance 1 400x275

Emerson recently introduced the ASCO™ Series 209 proportional flow control valves, which offer the highest standards of precision, pressure ratings, flow characteristics and energy efficiency available in a purpose-built, compact architecture. With this combination of size and performance, Series 209 valves allow users to precisely regulate the flow of fluid in a wide range of devices that require exacting performance, like those found in the medical equipment, food and beverage, and heating, ventilation and air conditioning (HVAC) industries. 

Accuracy, response time and repeatability are critical in high-precision flow control applications, such as controlling tool speed in dental chairs, the flow of steam in coffee makers, water flow in cooling systems and hydrogen flow in fuel cells. Series 209 valves have low hysteresis (less than or equal to 5%), excellent repeatability (less than or equal to 1%) and high sensitivity (less than or equal to 0.2%) that contribute to their precision. 


To find out more, click here


 


Featured Product

DCS Teledyne Announces New Ladybug6 Cameras for High Accuracy 1 400x275 

Teledyne FLIR Integrated Imaging Solutions is pleased to announce the all new Ladybug6— the latest addition to its field proven Ladybug series. Ladybug6 is the leading high-resolution camera designed to capture 360-degree spherical images from moving platforms in all-weather conditions. Its industrial grade design and out-of-the-box factory calibration produces 72 Megapixel (MP) images with pixel values that are spatially accurate within +/- 2 mm at 10-meter distance.

“The new Teledyne Ladybug6 is designed for mobile mapping and all-weather inspection projects requiring excellent image quality and high resolution,” said Mike Lee, Senior Product Manager at Teledyne FLIR. “With the addition of Ladybug6, we are now pleased to offer a wider variety of spherical cameras with higher resolutions ranging from 30 MP to 72 MP.”

 

To learn more, click here


 

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