Biodegradable Device Monitors Levels of Pesticides in Fruit, Vegetables

This aerial photograph taken on Oct 31, 2022 shows a farmer spraying pesticide to a crop of cabbage cultivated in his field on the outskirts of Bengaluru. (AFP)
This aerial photograph taken on Oct 31, 2022 shows a farmer spraying pesticide to a crop of cabbage cultivated in his field on the outskirts of Bengaluru. (AFP)
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Biodegradable Device Monitors Levels of Pesticides in Fruit, Vegetables

This aerial photograph taken on Oct 31, 2022 shows a farmer spraying pesticide to a crop of cabbage cultivated in his field on the outskirts of Bengaluru. (AFP)
This aerial photograph taken on Oct 31, 2022 shows a farmer spraying pesticide to a crop of cabbage cultivated in his field on the outskirts of Bengaluru. (AFP)

Researchers at the University of São Paulo (USP) and the Federal University of Viçosa (UFV) in Brazil have developed a sustainable sensor that can be placed directly on the surface of a vegetable or fruit to detect the presence of pesticides.

The device has the potential to help ensure food safety in a world that increasingly suffers from a shortage of food and the environmental and health problems caused by excessive use of agrochemicals. The results of the study were published in the journal Biomaterials Advances.

Pesticides are widely used to raise crop yields and are typically applied by spraying, but only 50% reach their target. The rest ends up in soil, groundwater, surface water, raw drinking water, wastewater and food products.

Monitoring of pesticide levels in water, soil and food is therefore essential to prevent contact between these toxic substances and the public via the skin, lungs or digestive system.

The researchers explained that the tools most often used for this purpose are chromatographic techniques (consist of separating and defining chemical compounds), which are effective but have drawbacks such as the need for pretreatment of samples, expensive equipment and qualified laboratory specialists, as well as the long time taken to complete the analysis. The unsafe residues produced by organic solvents are also a significant problem under present-day conditions.

As an alternative, electrochemical sensors can combine affordability, rapid detection, large-scale production, convenience, ease of use, high selectivity and in situ pesticide detection.

“Our invention has all these features. The analysis is performed directly on the surface of fruit, vegetables or leaves. It is made of cellulose acetate, a material derived from wood pulp,” said Paulo Augusto Raymundo-Pereira, co-author of the study.

“Instead of the usual materials, which are environmentally unsustainable and take a long time to degrade, such as ceramics or plastic polymers derived from petroleum, we used cellulose acetate, a material derived from plants that has little impact on the environment and disintegrates completely in 340 days or less depending on local conditions. It also has appropriate characteristics, including low cost, portability and flexibility,” he explained.

The researchers carried out laboratory tests in which a pesticide solution was sprayed on lettuce and tomatoes in a simulation of real-world use. The sensor was then directly attached to the lettuce and tomatoes, and measurements showed a level of detection compatible with those obtained with the sensor material most frequently used for this purpose.

The technology can be useful for sanitary surveillance agencies worldwide, farmers, as well as sellers of organic produce to certify absence of pesticides.



Ancient Egyptian Coffin Given New Life in Britain

Staff at Swansea University welcome back the artifact. Photo: Swansea University
Staff at Swansea University welcome back the artifact. Photo: Swansea University
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Ancient Egyptian Coffin Given New Life in Britain

Staff at Swansea University welcome back the artifact. Photo: Swansea University
Staff at Swansea University welcome back the artifact. Photo: Swansea University

An ancient Egyptian coffin was given a new life after it has been returned to Swansea University's Egypt Center in Wales.

The artifact, believed to date from about 650 BC, is now back at the university after thousands of hours of conservation work at Cardiff University, where it was painstakingly cleaned, reconstructed and consolidated to prevent it from deteriorating further, according to BBC.

The coffin, originally made for a man called Ankhpakhered in the Greek city of Thebes, was transported back under the watchful eye of the center’s curator Dr. Ken Griffin.

Staff described the finished project as “beyond our wildest dreams.”

“The coffin was gifted to us by Aberystwyth University in 1997 but details about its history are sketchy,” Griffin said.

He added: “It actually ended up being used as a storage box at one time, with other Egyptian objects placed in it for safekeeping.”

The university’s Phil Parkes explained that the wooden coffin was covered in textile and then had a thin layer of decorated plaster over the top.

He said: “Much of that textile had become detached over time and was just hanging loose.”

Parkes added that the separate wooden head was detached and there were a couple of large pieces of wood missing, the side of the base had fallen off and it was in a very sorry condition overall.