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Happy Farmer

Enhance Max™

Enhance Max™ is a complete organic concentrate of organic catalyst (tech grade organic acids -humic, fulvic, ulmic, trace mineral, non-ionic surfactants and other proprietary ingredient) to assist in the improvement of nutrient uptake specifically with, Liquid Urea, UAN (urea ammonium nitrate) and GAS (Anhydrous Ammonia).

small boy in a cotton crop

Sustainable Future

High production agriculture requires high inputs to meet the growing population.  Expectations for the world’s population to grow by 40% to more than 9 billion by the year 2050 have raised the global question of how to grow more food with less water in a sustainable manner? 

 

Much of the current farming practices is the use of dangerous chemicals and inefficient fertilisers which add significant risk to the farmer, soils, crops grown and environment.  

Cabbage Field

Increased Nutrient Use Efficiency

Enhance Max™ is a unique organic catalysts complex that has the ability to bond with cations & anions to stabilise nutrients in soils and fertiliser products. 

A high analysis energy packet that boosts the uptake of nitrogen into the plant whilst stabilizing the nutrients in the soil resulting in less opportunity for nutrient loss and overall improved nutrient efficiencies.

sorghum crop

Stabilising Innovation

Nitrogen is the major fertiliser input cost of most crops, yet it is one of the most inefficient nutrients used in agriculture.   

 

Enhance Max™ is a nitrogen stabilising innovation that can be used with Liquid Urea, UAN and GAS. No other product has this ability to achieve the optimal production, quality and profit for you, or do it in a more sustainable, environmentally-friendly approach for greater efficiency of applied fertiliser. 

fruit orchard in flower

Your Benefits

  • Improves the stability of nitrogen sources in UAN, Liquid Urea, and GAS.

  • Improves nutrient uptake in the plant by complexing nutrients with organic compounds by increasing the permeability of plant membranes.

  • Improves nutrient cycling from applied fertiliser to increase use efficiency and cost effectiveness.

  • Buffers the salt index of fertilisers reducing burn corrosion.

  • Creates a preferential environment for beneficial organisms to promote nutrient cycling.

farmers in a crop looking at a laptop

What is the ROI?

The ability of Enhance Max™ to stabilise nutrients, especially nitrogen & improve nutrient cycling in the soil, offers farmers a substantial improvement on the return of investment (ROI) on your fertiliser.

 

From 15% to 30% more return per unit of production is consistently achieved when using Enhance Max™ as part of a fertiliser and soil conditioning program.  Below is snap shot of research data highlighting such returns.

Biostimulant Enhanced Ammonia Provides Cost Reductions to Agriculture Production

Success of the innovation Black Urea® prompted further research into using carbon bio-catalysts for improving the production economics of irrigated agriculture in Queensland, Australia, where anhydrous ammonia is a common fertilizer used in flood irrigation systems.


Anhydrous ammonia is a toxic gas applied to soil under temperature controlled pressure. This has a deleterious impact to the soil organic matter and biota which facilitate fertilizer use efficiency. By mixing a modified humate base and bio-catalysts (Enhance Max™) with anhydrous ammonia during its application, we can reduce the impact and stabilise the ammonia as ammonium complexed with organic matter and stored as heterotrophic protein

The focus of this study is on the commercial benefit if any of using biostimulants with conventional fertilizer use to improve production economics through increased fertilizer use efficiency.


In the case of using the organic acid based biostimulant, Enhance Max™, with Anhydrous Ammonia, BigN®, in irrigated cotton production, the answer is affirmative to an increase in economic benefit. The results of the study thus far, have yielded a reduction in nitrogen cost per unit of production of 15.2% with no loss of overall yield produced.

 

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