Critical soil erosion and degradation

Critical soil erosion and degradation
greenarsenal, tractor, agricultural land, dust,

Fighting soil erosion and degradation in farming

Soil erosion is one of the greatest challenges of agriculture today. Studies have shown that organic farming can reduce erosion risk for row crops due to high weed coverage.

However, decreasing crop yields can increase the erosion rate for organic farming. Therefore, organic farming alone does not provide sufficient soil protection for crops.

Some shocking stats

people are affected by
land degradation

of the Earth’s land areas could
become degraded by 2050

per year – estimated costs
for land degradation

of the topsoil – on the planet has
been lost in the last 150 years

The effects of soil erosion go beyond the loss of fertile land. It has led to increased pollution and sedimentation in streams and rivers, clogging these waterways and causing declines in fish and other species. And degraded lands are also often less able to hold onto water, which can worsen flooding. Sustainable land use can help to reduce the impacts of agriculture and livestock, preventing soil degradation and erosion and the loss of valuable land to desertification.

consequences of soil degradation

Decline of biodiversity - extinction of species

Deterioration of the water quality - Eutrophication due to nitrogen & phosphorus

The decline in crop yields - higher food prices

Natural disasters: Flooding & Desertification

soil enhancement


Organic fertilizers lead the way in soil regeneration

Organic or natural fertilizers have so many advantages over conventional, chemical ones. They release nutrients at a slower rate, resulting in a need for less frequent treatment. Not to mention that burning and damage due to the quick release of nutrients can be avoided. What’s more, any organic material that does not dissolve in water immediately improves the soil’s water retention capacity.


BIOREMIQ ™ helps where all problems originate

By facilitating the restoration of essential bacteria and nourishing components to the soil, vital minerals are rehabilitated enabling soil recovery and speeding up the process.

Bacteria in this solution produce vitamins, enzymes, and plant hormones, thereby supporting the plant’s physiological processes.

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