#MoldControl – Vprint Infotech https://www.vprintinfotech.com Magazine Fri, 31 Jul 2026 12:39:03 +0000 en-US hourly 1 https://wordpress.org/?v=7.0.2 https://www.vprintinfotech.com/wp-content/uploads/2023/08/logo-feb-150x150.jpg #MoldControl – Vprint Infotech https://www.vprintinfotech.com 32 32 Moisture Optimization and Mold Control: An Integrated Approach to Improving Feed Quality, Shelf Life, and Feed Mill Profitability in Tropical Climates https://www.vprintinfotech.com/moisture-optimization-and-mold-control-an-integrated-approach-to-improving-feed-quality-shelf-life-and-feed-mill-profitability-in-tropical-climates/ Fri, 31 Jul 2026 11:47:44 +0000 https://www.vprintinfotech.com/?p=7833

Moisture Optimization and Mold Control:
An Integrated Approach to Improving Feed Quality,
Shelf Life, and Feed Mill Profitability in Tropical Climates

Dr. Maloshrie Bora, Senior Program Manager – Feed Safety, Trouw Nutrition South Asia

Across India and South Asia, feed manufacturers today face a common challenge: producing safe, stable, high-quality feed while navigating increasingly variable climate conditions, fluctuating raw material quality, rising production costs, and greater demands for feed efficiency.

Among the many factors that influence feed quality, moisture management remains one of the most underestimated. Yet moisture directly impacts pellet quality, nutrient preservation, feed hygiene, shelf life, production throughput, and overall profitability. Improper moisture management can result in shrinkage, spoilage, mold proliferation, nutrient losses, increased fines, and reduced mill efficiency. Conversely, optimized moisture control can generate significant economic returns while improving feed quality throughout the supply chain.

The Hidden Economics of Moisture Loss
During feed manufacturing, moisture is lost at several stages, including grinding, conditioning, pelleting, cooling, storage, and transportation. Industry observations indicate that feed mills can lose between 0.5% and 1.5% moisture during production, resulting in direct shrinkage and reduced profitability. A feed mill producing 500 tonnes per day can lose approximately 5 tonnes of saleable product for every 1% moisture reduction. In an industry where margins are constantly under pressure, minimizing process losses represents a substantial opportunity for value creation.

Why Adding Water Alone Does Not Solve the Problem
A common industry practice for compensating moisture losses is the addition of water during feed processing. While this may appear straightforward, water possesses high surface tension and does not distribute uniformly throughout the feed matrix. Instead, free moisture often remains on the surface of feed particles, increasing water activity and creating favourable conditions for microbial growth. The challenge for the modern feed industry is therefore not simply increasing moisture content, but ensuring moisture is effectively distributed and retained throughout the feed while maintaining microbial stability.

 

Mold Growth: A Feed Quality and Profitability Threat
Molds are among the most significant biological threats to feed quality. Beyond visible spoilage, molds consume valuable nutrients, reduce energy content, affect feed palatability, shorten storage life, and create conditions favourable for mycotoxin production. The economic implications can be significant. Raw materials often constitute up to 80% of total feed production costs. Any reduction in nutritional value, shelf life, or feed volume directly impacts both manufacturers and producers downstream.

Emerging Scientific Approaches to Mold Inhibition
Advances in feed preservation technology have moved beyond conventional organic acid applications. Modern solutions increasingly combine multiple modes of action to optimize efficacy under practical feed manufacturing conditions. These technologies typically integrate:
Organic acids
– Buffered acid systems
– Moisture management agents
– Surfactants and emulsifiers
– Synergistic bioactive compounds
Such approaches improve moisture distribution, enhance contact between active ingredients and microbial cells, and prolong preservation effectiveness throughout storage. This scientific evolution reflects the industry’s transition from simple preservation strategies toward integrated moisture and microbial management systems.

Commercial Validation: Integrating Moisture and Feed Hygiene
Research and commercial evaluations have demonstrated that moisture management and mold control must work together. In one reported study, the addition of plain water alone reduced feed shelf life by approximately 33%. However, when moisture was combined with an integrated mold inhibition program, shelf life improved compared to untreated feed while preserving feed quality and stability. Additional commercial applications have shown benefits including:
– Improved feed mill throughput
– Enhanced pellet durability
– Reduced reprocessed fines
– Better moisture retention
– Improved production efficiency
– Greater feed stability during storage
These findings highlight that effective moisture optimization depends on simultaneously managing microbial risks

A Modern Approach for South Asia
Recognizing the unique challenges faced by feed manufacturers in tropical climates, Trouw Nutrition has developed integrated solutions specifically designed to optimize moisture management and feed hygiene.

Among these solutions is the Fylax® portfolio, which combines organic acid technology, moisture management agents, surfactants, and the proprietary ActiProp® technology platform. The objective is to improve moisture distribution, enhance mold inhibition, preserve nutrient value, and support feed mill efficiency within a single integrated program. ActiProp® technology works by increasing mold cell wall permeability and improving access of active ingredients to microbial targets, resulting in enhanced preservation performance compared with conventional approaches. At the same time, moisture-management components facilitate more uniform distribution of moisture within the feed matrix, helping improve operational efficiency and shelf-life outcomes.

In today’s feed industry, moisture management can no longer be viewed simply as a processing parameter—it is a critical driver of feed quality, feed safety, and profitability. As feed manufacturers across India and South Asia face increasing challenges from humidity, raw material variability, and shelf-life pressures, an integrated approach that combines moisture optimization with effective mold control is becoming essential. By preserving nutrient value, reducing shrinkage, improving pellet quality, and enhancing microbial stability, modern feed hygiene solutions can help mills achieve greater operational efficiency while delivering safer, more consistent feed to livestock producers. Ultimately, successful feed preservation is not just about preventing spoilage—it is about maximizing value throughout the feed-to-food chain.

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Silent Threats in Animal Feed How Mycotoxins Impact Livestock Performance and the Science Behind Effective Control https://www.vprintinfotech.com/silent-threats-in-animal-feed-how-mycotoxins-impact-livestock-performance-and-the-science-behind-effective-control/ Fri, 31 Jul 2026 08:50:13 +0000 https://www.vprintinfotech.com/?p=7826

Introduction : Every year, invisible contaminants hidden within grains and feed ingredients silently reduce livestock productivity. Mycotoxins—naturally occurring toxic compounds produced by fungi—are responsible for millions of dollars in economic losses through poor growth, reduced immunity, reproductive disorders, lower feed efficiency, and increased mortality. Although impossible to see with the naked eye, their impact on poultry, swine, and dairy production is enormous.

What Are Mycotoxins?
Mycotoxins are toxic secondary metabolites produced by moulds such as Aspergillus, Fusarium, and Penicillium. Scientists have identified over 300 different mycotoxins, and studies indicate that nearly one-quarter of global feed supplies may be contaminated.
The most economically important toxins include:
-Aflatoxins
– Ochratoxins
– Fumonisins
– Deoxynivalenol (DON)
– T-2 Toxin
– Zearalenone
Each affects animals differently, but all reduce productivity and profitability.

Why Do Mycotoxins Develop?
Moulds flourish when four conditions come together:
– Warm temperatures
– High humidity
– Moisture in grains
– Oxygen
Once established, fungal growth continues during harvesting, storage, transportation, and feed manufacturing unless properly controlled.

India’s Mycotoxin Challenge
Recent testing presented in the report paints a worrying picture. 6,304 feed analysis, 99% contamination, and 83% above the performance-risk threshold.
Key Findings

– 6,304 feed analysis conducted
– 99% showed detectable contamination
– 83% exceeded performance-risk thresholds
Among ingredients, DORB, peanut meal, maize, soybean meal, DDGS, and corn gluten all showed significant contamination levels.

Multiple Mycotoxins: A Greater Threat
Animals are rarely exposed to a single toxin.
Instead, feeds commonly contain multiple mycotoxins that interact synergistically, making the combined damage significantly greater than the effect of individual toxins. This explains why even relatively low toxin concentrations can cause substantial production losses.

Economic Impact on Farms
The consequences are visible across every production system.

Poultry
– Lower feed intake
– Reduced weight gain
– Poor feed conversion
– Thin eggshells
– Lower hatchability
– Fatty liver
– Weak immunity

Swine
– Reproductive disorders
– Embryonic mortality
– Vomiting
– Reduced growth
– Feed refusal
– Tail necrosis
– Liver and kidney damage
Ultimately, these problems translate directly into economic losses through poorer animal performance.

The Hidden Cost: Immune Suppression
– One of the most damaging effects of mycotoxins is their ability to suppress the immune system.
– Animals become more vulnerable to bacterial and viral infections while showing reduced responses to vaccines and treatments.
– This means disease outbreaks become more severe and recovery becomes slower.

Can Nutrition Help?
Nutritional interventions can reduce the impact of toxins.

Recommended approaches include:
– Higher amino acid supplementation
– Vitamins E, C, and D3
– Selenium
– Choline chloride
– Liver-support products
– Mold inhibitors
– Broad-spectrum toxin binders
These measures improve resilience while reducing toxin damage.

Scientific Toxin Elimination Management (STEM-500)
An effective strategy combines four complementary actions:
1. Prevention
Prevent fungal growth before toxins develop.
2. Elimination
Bind multiple mycotoxins irreversibly.
3. Neutralization
Use enzymatic systems to neutralize toxins.
4. Gut Ecology Enhancement
Improve gut health while strengthening immunity and reducing pathogen pressure. This integrated approach offers broader protection than relying on toxin binders alone.

Featured Solution: STEM-500
The presentation introduces STEM-500, a multi-component toxin management product formulated with:
– Specially treated HSCAS
– Organic acids
– Oxine Copper
– MOS
– Bio-active phytocompounds
– Polyphenols
– Lactobacillus
– Lipotropic agents
According to the presentation, the product is designed to reduce mould growth, bind multiple mycotoxins, minimize endotoxin effects, improve liver function, support gut health, and enhance feed conversion, growth, and survival.

Conclusion
Mycotoxins remain one of the most significant hidden threats in modern animal production. Since contamination can occur throughout the grain supply chain, prevention alone is rarely sufficient. A comprehensive management strategy—combining mould control, toxin binding, detoxification, and gut health support—is essential for maintaining animal health and maximizing production efficiency.

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