Aquaculture
Purify Naturally, Perform Sustainably.
Aquaculture is under pressure from rising seafood demand, declining water quality, and stricter regulations. Conventional chemical treatments can harm ecosystems and leave toxic residues. Bio-Organic Catalyst®️ (BOC) provides a patented, eco-safe alternative that boosts microbial activity, oxygenates water, and breaks down organic pollutants like ammonia, fats, and sulfides. EPA-certified testing confirms BOC’s non-toxicity, making it ideal for sustainable hatchery, pond, and recirculating system management.
Broken Balance, Damaged Ecosystems.
Modern aquaculture systems struggle with compounding stressors: overstocking, intensive feeding, and inadequate waste management. These practices disrupt aquatic ecosystems, leading to oxygen depletion, toxic buildup, and heightened disease risks. Without addressing these systemic issues, operators face declining yields, regulatory non-compliance, and ecological harm.

Solutions
Healthy Fish, Happy Farmers.
BOC’s nanotechnology-driven approach targets the molecular roots of aquaculture inefficiencies. By enhancing natural biodegradation and oxygen transfer, it restores ecological equilibrium without toxic side effects. This reduces operational costs, improves stock health, and ensures compliance with environmental standards. Clear-Cat by Bio-Organic Catalyst (BOC) employs cutting-edge biochemical processes to address aquaculture challenges through targeted, sustainable interventions.

Frequently Asked Question:
Maintaining optimal dissolved oxygen and reducing organic waste buildup are key. The nanobubble technology in Clear-Cat enhances oxygen transfer efficiency by increasing the gas-liquid interfacial area, accelerating aerobic biodegradation of organic matter like uneaten feed and fish excreta, thus lowering harmful compounds such as ammonia and hydrogen sulfide.
Improved water quality reduces disease risk and feed wastage, lowering treatment and feed expenses. Clear-Cat’s bio-catalytic agents stimulate beneficial microbial consortia that enhance nutrient recycling and sludge breakdown, decreasing the frequency of water exchanges and mechanical filtration, ultimately saving energy and labor costs.
Targeted enzymatic and microbial enhancement breaks down organic pollutants faster and safer than harsh chemical treatments. Clear-Cat employs engineered biocatalysts that boost hydrolytic and oxidative enzyme activities, facilitating the conversion of complex organic molecules into harmless CO₂ and water, while maintaining ecological balance.
These gases are toxic to aquatic life and disrupt microbial communities. Clear-Cat’s nano-oxygenation suppresses anaerobic bacteria responsible for producing these gases by maintaining aerobic conditions, improving fish health and minimizing off-odors that can affect worker safety and regulatory compliance.
Beneficial microbes degrade waste, outcompete pathogens, and support nutrient cycling. Clear-Cat enriches aerobic heterotrophic bacteria and nitrifiers (e.g., Nitrosomonas, Nitrobacter), enhancing nitrification processes that convert ammonia into less harmful nitrates, stabilizing the aquatic environment for optimal fish growth.
Nanobubbles have a higher surface area and longer retention time in water compared to macro bubbles, leading to superior oxygen dissolution. This improves oxygen availability at the micro-level, promoting efficient aerobic metabolism in microbial populations and fish gills alike, while reducing energy consumption relative to mechanical aerators.
By minimizing toxic discharge and improving waste degradation, facilities reduce their ecological footprint. Clear-Cat’s biodegradable formulation meets EPA and local environmental regulations, facilitating sustainable water discharge practices and reducing penalties associated with effluent quality violations.
Gradual dosing aligned with water quality monitoring ensures smooth microbial adaptation. Clear-Cat’s dosing protocols are designed for easy integration with recirculating aquaculture systems (RAS) or pond setups, optimizing biochemical oxygen demand (BOD) reduction without disrupting existing biofilters or system hydraulics.
Adequate dissolved oxygen levels improve respiration efficiency, reduce stress, and increase feed conversion ratios (FCR). Enhanced oxygen availability supports mitochondrial ATP production in fish muscle cells, leading to faster growth rates and better immune response, which directly translates into higher yields.
Field trials demonstrate up to 40% reduction in sludge accumulation and 80% decrease in toxic nitrogenous compounds. Studies also show improved water clarity, increased dissolved oxygen levels (DO > 7 mg/L), and healthier stock with reduced mortality rates, validating the approach as a cutting-edge aquaculture management tool.
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