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23 November 2021 | Story Leonie Bolleurs | Photo Tania Allen
Dr Jana Vermaas and Ketshepileone Matlhoko are working on research that leaves your washing clean and fresh without the use of any detergents, which is also beneficial to the environment.

Cold water or hot water? Omo or Skip? Laundry blues is a reality in most households and when you add stains to the equation, then what was supposed to be part of your weekly household routine, becomes frustrating and time consuming. 

Researchers at the University of the Free State (UFS) are conducting research that is putting a whole new environmentally friendly spin on laundry day.

Sustainability and environmental conservation

Dr Jana Vermaas, Lecturer in the Department of Sustainable Food Systems and Development at the UFS, is passionate about textiles and sustainability – almost a decade ago, she conducted a study on the efficacy of anolyte as a disinfectant for textiles.

She describes the process: “During electrochemical activation, a dilute solution of natrium chloride/salt passes through a cylindrical electrolytic cell where the anodic and cathodic chambers are separated. Two separate streams of electrochemically activated water are produced. Anolyte as water was produced at the positive electrode and has a low pH, high oxidation-reduction potential and contains dissolved chloride, oxygen, and hydroxyl radical. It also has an antimicrobial effect.”

The benefits of this process are in line with her enthusiasm for environmental conservation. 

According to Dr Vermaas, the amount of water and chemicals used to clean textile articles is massive. “Chemicals used to disinfect, for example, hospital laundry, are hazardous. Not all laundries in the industry have a closed loop system or try to remove the chemicals before the wastewater is discarded.”

“Different amounts of detergents have various effects on our fauna and flora. Due to their low biodegradability, toxicity, and high absorbance of particles, detergents can reduce the natural water quality, cause pH changes in soil and water, lead to eutrophication (too many nutrients), reduce light transmission, and increase salinity in water sources.”

“But with the catholyte and anolyte process, water returns to its original status, which means that the water solution becomes inactive again after production where it existed in a metastable state while containing many free radicals and a variety of molecules for 48 hours. Thus, no chemicals are left in the wastewater. The water can therefore be recycled, not as potable water but, for example, to flush toilets or to water plants.

“We should do what we can to save water,” she says. 

Should you, like Dr Vermaas, also feel strongly about protecting the environment and want to obtain one of these machines that leaves your washing clean and fresh without the use of any detergents, you will be able to find such an appliance in South Arica. However, it does not come cheap. “It is a bit costly for residential use, but might be more accessible in the future,” states Dr Vermaas, who is of the opinion that it is a more sustainable option for commercial laundries.

Detergency properties and colourfastness 

Recently, more research has been conducted on this topic, but with a focus on the detergency properties of the catholyte to clean different textile fibres (natural and synthetic). Catholyte, she explains, is water produced at the negative electrode with a high pH, low oxidation-reduction potential, containing alkaline minerals. It also has surface active agents that increase the wetting properties, and it is an antioxidant. 

“A master’s student in the department, Ketshepileone Matlhoko, will be submitting her dissertation at the end of November on the possibility of using the catholyte as a scouring agent to clean raw wool,” says Dr Vermaas. 

The department is also conducting studies to investigate the influence of both catholyte and anolyte on colourfastness.

*Graphic: Production of electrolysed water (Nakae and Indaba, 2000). Diagram: Supplied



News Archive

UFS academics to submit proposal on innovative research for smallholder agriculture
2009-08-04

 
Here are, from the left: Dr Bennie Grové, Department of Agricultural Economics; Prof. Schalk Louw, Department of Zoology and Entomology; Prof. Bland; Prof. Swart; and Prof. André Pelser, Department of Sociology.
Photo: Arthur Johnson


Prof. Wijnand Swart, Director of the Strategic Research Cluster (Technologies for sustainable crop industries in semi-arid regions) at the University of the Free State (UFS) recently hosted Prof. William (Bill) Bland, Chairperson of the Department of Soil Science, University of Wisconsin-Madison, USA. Prof. Bland’s visit to the UFS was linked to an initiative by Prof. Swart to forge closer links with this university by signing a Memorandum of Understanding in the near future.

Opportunities for collaborative research were discussed with various academics at the UFS, including Prof. Teuns Verschoor, Vice-Rector: Academic Operations, and Prof. Aldo Stroebel, Director: Internationalisation. A definite outcome of these talks is that six researchers from the Faculty of Natural and Agricultural Sciences, in collaboration with Prof. Bland and scientists from the Universities of Makerere and Umutara in Uganda and Rwanda respectively, will submit a joint proposal for a research programme, supported by the National Science Foundation of the USA and the Bill and Melinda Gates Foundation.

The objective of this programme, referred to as the BREAD programme (Basic Research to Enable Agricultural Development), is to support innovative scientific research designed to address constraints to smallholder agriculture in the developing world. Prof. Bland also delivered a lecture in the Faculty of Natural and Agricultural Sciences entitled, Holon Agroecology: A Conceptual Framework for a New Agricultural Expertise. The lecture was followed by a multi-disciplinary panel discussion.
 

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