Next-Generation Agricultural Innovation Through ACENANO Technology
The agricultural industry continues to evolve with the goals of increasing crop yields, improving soil health, and ensuring sustainability.
Conventional methods of using fertilizers and pesticides can pollute natural ecosystems, harm long-term soil health, and cause resource waste.
Our Top-Down Nano technology can process natural substances into uniform nano powders with particle sizes of 30–900 nm (D50 or higher)
without altering their original taste, aroma, or color, and provides technology that can precisely classify them to the desired particle size afterward.
When applied to agriculture, it can bring innovative results that transform the agricultural paradigm, including optimized crop growth, maintained soil health, eco-friendly pest control, and improved food storability.
| Nano Fertilizers for Optimized Crop Nutrition | Existing Problems |
| Conventional fertilizers have low absorption rates by crops despite being used in large quantities, with only about 30–50% absorbed. Fertilizers can easily leach into soil and groundwater, causing environmental pollution and inefficient nutrient supply. Long-term use of chemical fertilizers can also lead to soil acidification and disruption of the microbial ecosystem. | |
| Effects of Applying Nano Solutions | |
| Nano fertilizers process nutrients uniformly at the nanoscale, allowing crops to absorb them quickly and efficiently. When slow-release nano-encapsulated fertilizers are applied, absorption can increase to over 90%, reducing the amount used compared to conventional fertilizers. Nano materials that supplement essential minerals in soil can also be developed, helping maintain soil health and realize sustainable agriculture. |
| Nano Pesticides for Eco-Friendly Pest and Disease Management | Existing Problems |
| Conventional pesticides remain only on the crop surface, making pest control inefficient and requiring repeated application to maintain effectiveness. Pesticide residues can cause serious environmental pollution, contaminating groundwater and the atmosphere and damaging ecosystems. As pests develop resistance to existing pesticides, stronger chemicals become necessary, increasing risks to both humans and the environment. | |
| Effects of Applying Nano Solutions | |
| When nano-encapsulated pesticides are applied, they can directly penetrate pests and act more effectively, increasing the duration of efficacy compared to conventional pesticides. Natural antibacterial and insecticidal ingredients can be nano-sized and applied, minimizing environmental pollution compared to chemical pesticides. Nano coating technology can strengthen adhesion so that pesticides are not easily washed away, reducing the frequency of application. |
| Smart Farming Using Nano Sensors | Existing Problems |
| It is difficult to monitor soil conditions and crop health in real time, leading to waste caused by excessive use of water, fertilizers, and pesticides. More precise crop data analysis is needed to improve agricultural productivity, but conventional sensors face limitations in size and cost. | |
| Effects of Applying Nano Solutions | |
| By applying nano sensors to soil, moisture content, pH, and nutrient concentration can be measured in real time, enabling optimal fertilizer and water supply. A smart nano sensor network can be established to remotely monitor and control crop conditions in greenhouses and large-scale farms. Disease-detecting nano sensors can enable early diagnosis before crops become infected, allowing preventive measures to be taken. |
| Nano-Based Food Packaging | Existing Problems |
| Harvested crops and agricultural products spoil quickly, leading to high disposal rates during distribution and resulting in economic losses. Conventional packaging materials have limited ability to suppress microbial growth, making long-distance export difficult. | |
| Effects of Applying Nano Solutions | |
| Smart packaging materials with antibacterial nano coating can slow the spoilage rate of agricultural products by 2 to 3 times. Packaging materials with embedded nano sensors allow consumers to easily check food freshness before spoilage occurs. Nano film coating strengthens oxygen and moisture barrier performance, extending storage periods and enabling long-distance export. |
| Soil Restoration and Sustainable Agriculture | Existing Problems |
| Long-term use of pesticides and fertilizers has intensified soil contamination and ecosystem damage. Increasing contamination from microplastics and heavy metals in soil makes safe food production more difficult. | |
| Effects of Applying Nano Solutions | |
| Nano-based adsorbents can selectively remove heavy metals and pollutants from soil, maximizing soil purification effects. Soil amendments using eco-friendly nano materials can restore the natural microbial ecosystem and realize sustainable agriculture. Organic agricultural materials processed into nanoparticles are more soil-friendly than conventional chemical fertilizers and can help preserve the ecosystem. |
By using ACENANO’s Top-Down Nano technology to process grains such as rice, barley, and mixed grains into ultra-fine nanoparticles,
we have developed innovative foods with superior digestibility, absorption, and nutritional delivery compared to conventional foods.
This technology presents a new solution for countries facing hunger and nutritional deficiencies,
and can also contribute to global food security through long-term preservation and easy distribution.
Through nanoparticle control technology, the breakdown and absorption speed of nutrients is dramatically improved compared to conventional grains, enabling fast and efficient nutritional supply even in urgent situations.
By maximizing nutritional content relative to volume and precisely fortifying essential vitamins and minerals, it builds an innovative food solution that provides balanced nutrition even with smaller intake amounts.
By applying specialized preservation methods, freshness and nutrition can be maintained for a long period even in harsh environments, making it especially effective as emergency relief food for hunger-affected regions or disaster sites.
By optimizing product weight and volume, it reduces global logistics costs and improves convenience in the distribution process, enabling fast and systematic relief support for food crisis regions around the world.
Through nano grain technology, ACENANO provides innovative solutions
to help address global food challenges!
Through nano grain technology, ACENANO provides innovative solutions to help address global food challenges!
ACENANO | CEO: Hyejun Jeon
[ Address ]
Seoul Office: Baeksan-Bluewin Building, 157 Jeongneung-ro, Seongbuk-gu, Seoul, Korea
Seoul R&D Center: 1F, APEXEL Nano Science Museum, 63 World Cup buk-ro, Mapo-gu, Seoul, Korea
GMP Factory: 97-87, Daejeon-gil, Songna-myeon, Buk-gu, Pohang-si, Gyeongsangbuk-do, Korea
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