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31 May 2023 | Story Prof Anthony Turton | Photo Supplied
Prof Anthony Turton
Prof Anthony Turton is a water expert from the Centre for Environmental Management at the University of the Free State.


Opinion article by Prof Anthony Turton, Centre for Environmental Management, University of the Free State.


This week, our national sewage crisis really began to bite. A media storm has erupted over the cholera outbreak in Hammanskraal, while some families are now grieving for their dead relatives. It is important that we start this story by remembering the dead, because they were breadwinners in families, all doing their best to survive the tribulations of our times. They died unnecessarily, the victims of the slow onset disaster I spoke of in 2008 at a conference titled ‘Science Real and Relevant’.

At that conference, reference was made to three water quality challenges that we, in the dwindling aquatic sciences community, were all too aware of, but unable to speak about. We noted trends that data sets were showing us, and we felt a growing sense of alarm about the consequences of the trajectories on the graphs. We noted that our systems were failing rapidly, with much of our hard infrastructure in the water sector approaching the end of its useful design life. We noted with alarm the loss of skills, as the ravages of purging took its toll on our science, engineering, and technology core.  We noted the loss of dilution capacity in all our rivers after the first National Water Resource Strategy (NWRS), mandated by the National Water Act (NWA), indicated that we had allocated 98% of all the water in all our rivers and dams, as far back as 2002. We noted the migration of plumes of uranium moving into the headwaters of both the Vaal and Crocodile Rivers, both tributaries of the Orange and Limpopo respectively, driven by uncontrolled decant of acid mine water, as the gold mining industry started to collapse.

From these sets of data, a simple conclusion was drawn – SA was heading for a slow onset disaster unless we could convince our political leadership that we need to do things differently.

Here are some facts in the wake of the cholera crisis.

Fact 1 – The South African economy ran out of water in 2002 when the NWRS revealed that we had already allocated 98% of all the water we have legally available in terms of the NWA. This means that we cannot convince investors to have confidence in our future. We face an investment drought as a direct result of this startling but irrefutable fact.

Fact 2 – We produce more than 5 billion litres of sewage daily, all of which is discharged into our rivers and dams, only about 10% of which is treated to a standard that makes it safe for direct human contact.

Fact 3 – The Green and Blue Drop Reporting System was suspended by Nomvula Mokonyane when the data was showing trends in the failure of our sewage treatment works. This is like a pilot in a commercial airliner switching off the radar screen because the information being revealed was becoming uncomfortable to the poorly trained, but rapidly promoted cockpit crew. This is the undeniable genesis of the deaths we are seeing today.

Fact 4 – Because of Facts 1 and 2 combined, our tsunami of sewage can no longer be diluted in our rivers. In fact, more than 60% of all our large dams are now eutrophic, with highly enriched water breeding toxic cyanobacteria, all thriving off the warming water and growing flow of nutrients from sewage. In simple truth, we have lost our dilution capacity, and our rivers have been turned into hazardous sewers breeding harmful pathogens, including the flesh-eating bacteria that cost RW Johnson his leg. This means that cholera is only one of the risks we are facing from raw sewage in our rivers. For example, Hepatitis A is a waterborne pathogen directly related to sewage-contaminated rivers, but this is being reported separately in our slow onset disaster, so the penny has yet to drop.

Fact 5 – The current Minister of Water and Sanitation, Mr Senzo Mchunu, was brave enough to reinstate the Green and Blue Drop Reporting System, which has now shown that more than 90% of our wastewater treatment works are dysfunctional. He is a brave man in so doing, and I want to publicly support him as he tries to rebuild the trust that was destroyed by a previous minister.

So, this is where we are today. People are dying as a direct consequence of decisions made by a former minister, who clearly failed in her custodial role. She must ultimately be held to account for her dereliction of duty and blatant betrayal of public trust. Just this week, a spokesperson for the Presidency noted that his office was unable to intervene in another crisis, because the cooperative governance clause in our constitution prevented one sphere of government from intervening in the activities of another sphere. We must challenge this constitutional weakness and seek clarification from the appropriate court. How can a constitutional clause be so irrational as to prevent one part of government from intervening in another to avert a catastrophe? How many more lives must be lost to the absurdity of legal protection for those in power, while their activities are clearly not in the best interest of society as a whole? Surely a constitutional democracy is about empowering the citizens by protecting them against the consequences of failed service delivery.

From the depths of despair in the families of those whose lives have been lost to an entirely preventable illness, let us find the strength to rally as one and shout out, ‘enough is enough’. Our noble constitution grants all citizens rights to a better life in an environment that is safe from harm. Let us restore that dream by demanding that our sewage flows be brought under control. Surely this is the basis of modern civilization, irrespective of political persuasion or ideological preference.

News Archive

What do diamonds, chocolates, bugs and almost 30 Nobel Prizes have in common? Crystallography
2014-10-15

 

Some of the keynote speakers and chairpersons at the third world summit in the International Year of Crystallography (in Africa) were, from the left, front: Profs Abdelmalek Thalal (Morocco), Prosper Kanyankogote (University of Kinshasa, Democratic Republic of the Congo); Habib Bougzala (Tunisia), Santiago Garcia-Granda (IUCr, University Oviedo, Spain), Michele Zema (IYCr 2014, Italy/UK) and Dr Jean-Paul Ngome-Abiaga (UNESCO, Paris, France); back: Dr Thomas Auf der Heyde (Acting Director-general, South African Department of Science and Technology); Dr Petrie Steynberg (SASOL) and Prof André Roodt (UFS, host).

Photo: Marija Zbacnik
The third world summit in the International Year of Crystallography (in Africa) was hosted by Prof André Roodt, Head of the Department of Chemistry and President of the European Crystallographic Association,  at the University of the Free State in Bloemfontein.

A declaration with and appeal to support crystallography and science across Africa, was signed.

When one mentions 'Crystallography', or more simply 'crystals', what comes to mind? Diamonds? Perhaps jewellery in general? When thinking of crystals and Crystallography, you will need to think much bigger. And further – even to Mars and back.

Crystallography refers to the branch of science that is concerned with structure and properties of crystals. The obvious examples would include cut diamonds, gemstones such as amethysts, and ‘simple’ crystals such as selenite and quartz.

But have you thought about the irritating brown scales at the bottom of your kettle? The sand in your shoes? The salt over your lamb chops or the sugar in your coffee? All crystals. From egg shells to glucose, from bugs and insecticides to additives in food – even the compounds in chocolate – all fall under the close scrutiny of Crystallography.

The breakthroughs this field of science has produced have led to almost 30 Nobel Prizes over the years.

Determining the structure of DNA by crystallography was arguably one of the most significant scientific events of the 20th century. Different diseases have been cured or slowed by medicines obtained based on crystallographic studies. These include certain cancers, HIV/Aids, Tuberculosis and Malaria. Biological Crystallography enables the development of anti-viral drugs and vaccines.

This field of science influences our daily lives in virtually immeasurable ways. Here are but a few areas of study and development Crystallography contributes to:

•    LCD displays;
•    cellular smartphones;
•    insects and insecticides;
•    additives and products in foods;
•    improved effectiveness and security of credit cards;
•    new materials to preserve energy;
•    better gasoline with less by-products;
•    identify colour pigments used in paintings from the old masters, indicating if it’s an original or an imitation; and
•    beauty products such as nail polish, sun-block, mascara and eye shadow.

Crystallography is also currently used by the Curiosity Rover to analyse the substances and minerals on Mars.

Crystals and Crystallography form an integrated part of our daily lives – from bones and teeth to medicines and viruses, from chocolates to the blades in airplane turbines. Even down to the humble snowflake.


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