Captiv8 Aquaculture Reef Blueprint
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<800 micron dry blend for corals, bivalves, and tunicates which yields noticeably improved cohort robustness, feeding response, rate of tissue synthesis, and richness of color when applied on a consistent basis. Composed of: marine zooplankton (Arthropoda) and phytoplankton featuring rich fatty acid, amino acid, and biopigment profiles; specific immunostimulants; protein biosynthesis stimulants; and biological pigment precursors. Low PO4 per unit mass enables greater feeding frequency. Free of fillers, preservatives, and food colors.
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<800 micron dry blend for corals, bivalves, and tunicates which yields noticeably improved cohort robustness, feeding response, rate of tissue synthesis, and richness of color when applied on a consistent basis. Composed of: marine zooplankton (Arthropoda) and phytoplankton featuring rich fatty acid, amino acid, and biopigment profiles; specific immunostimulants; protein biosynthesis stimulants; and biological pigment precursors. Low PO4 per unit mass enables greater feeding frequency. Free of fillers, preservatives, and food colors.
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<800 micron dry blend for corals, bivalves, and tunicates which yields noticeably improved cohort robustness, feeding response, rate of tissue synthesis, and richness of color when applied on a consistent basis. Composed of: marine zooplankton (Arthropoda) and phytoplankton featuring rich fatty acid, amino acid, and biopigment profiles; specific immunostimulants; protein biosynthesis stimulants; and biological pigment precursors. Low PO4 per unit mass enables greater feeding frequency. Free of fillers, preservatives, and food colors.
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>1,500 micron dry blend formulated for planktivorous marine fishes, Actinarians, MPS corals, and LPS corals. Yields noticeably improved cohort robustness, feeding response, rate of tissue synthesis, and richness of color. Composed of: marine plankton featuring rich fatty acid, amino acid, and biopigment profiles; specific immunostimulants; protein biosynthesis stimulants; and biological pigment precursors. Low PO4 per unit mass enables greater feeding frequency. Free of fillers, preservatives, and food colors.
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>1,500 micron dry blend formulated for planktivorous marine fishes, Actinarians, MPS corals, and LPS corals. Yields noticeably improved cohort robustness, feeding response, rate of tissue synthesis, and richness of color. Composed of: marine plankton featuring rich fatty acid, amino acid, and biopigment profiles; specific immunostimulants; protein biosynthesis stimulants; and biological pigment precursors. Low PO4 per unit mass enables greater feeding frequency. Free of fillers, preservatives, and food colors.
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>1,500 micron dry blend formulated for planktivorous marine fishes, Actinarians, MPS corals, and LPS corals. Yields noticeably improved cohort robustness, feeding response, rate of tissue synthesis, and richness of color. Composed of: marine plankton featuring rich fatty acid, amino acid, and biopigment profiles; specific immunostimulants; protein biosynthesis stimulants; and biological pigment precursors. Low PO4 per unit mass enables greater feeding frequency. Free of fillers, preservatives, and food colors.
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0.2 - 2.0 micron dry picoplanktonic blend for SPS corals, sponges, bivalves, and tunicates which yields dramatic polyp extension in SPS corals, as well as improved cohort robustness, feeding response, rate of tissue synthesis, and richness of color when applied on a consistent basis. Low PO4 per unit mass enables greater feeding frequency. Free of fillers, preservatives, and food colors.
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0.2 - 2.0 micron dry picoplanktonic blend for SPS corals, sponges, bivalves, and tunicates which yields dramatic polyp extension in SPS corals, as well as improved cohort robustness, feeding response, rate of tissue synthesis, and richness of color when applied on a consistent basis. Low PO4 per unit mass enables greater feeding frequency. Free of fillers, preservatives, and food colors.
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0.2 - 2.0 micron dry picoplanktonic blend for SPS corals, sponges, bivalves, and tunicates which yields dramatic polyp extension in SPS corals, as well as improved cohort robustness, feeding response, rate of tissue synthesis, and richness of color when applied on a consistent basis. Low PO4 per unit mass enables greater feeding frequency. Free of fillers, preservatives, and food colors.
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NanoEmulsified Marine Oils, high in Omega-3/-6 HUFAs, fortified with free form amino acids, feeding stimulants, and natural immunostimulant compounds. Free of synthetic preservatives and emulsifiers. Refrigeration required.
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NanoEmulsified Marine Oils, high in Omega-3/-6 HUFAs, fortified with free form amino acids, feeding stimulants, and natural immunostimulant compounds. Free of synthetic preservatives and emulsifiers. Refrigeration required.
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Garlic extract (>99.9%), providing natural immunostimulant compounds and feeding stimulants.
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Garlic extract (>99.9%), providing natural immunostimulant compounds and feeding stimulants.
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Dry blend of free-form amino acids and metabolic stimulants, formulated expressly for cnidarians. Free of preservatives, added colors, and pH stabilizers. Dramatically improves cellular growth rate in cnidarians.
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Dry blend of free-form amino acids and metabolic stimulants, formulated expressly for cnidarians. Free of preservatives, added colors, and pH stabilizers. Dramatically improves cellular growth rate in cnidarians.
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Dry blend of free-form amino acids and metabolic stimulants, formulated expressly for cnidarians. Free of preservatives, added colors, and pH stabilizers. Dramatically improves cellular growth rate in cnidarians.
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Creates a tonic bath for scleractinian corals maintained in recirculating systems with known presence of coralivorous invertebrates. Not a biocide or medication; no residue. 100% USA-sourced components. Proven success with >20,000 corals in commercial coral farms.
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Creates a tonic bath for scleractinian corals maintained in recirculating systems with known presence of coralivorous invertebrates. Not a biocide or medication; no residue. 100% USA-sourced components. Proven success with >20,000 corals in commercial coral farms.
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Creates a tonic bath for scleractinian corals maintained in recirculating systems with known presence of coralivorous invertebrates. Not a biocide or medication; no residue. 100% USA-sourced components. Proven success with >20,000 corals in commercial coral farms.
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A dry microbial blend which supplements existing biological filtration in established systems, providing a host of non-pathogenic, heterotrophic aerobic and anaerobic microorganisms (dominated by species which focus on remineralization of latent organic material). Shifts Redfield Ratio, increases average ORP, improves light penetration, enhances protein skimmer efficiency, reduces POM, DOM, and DIN. 1 g per 500 - 750 gal. weekly, or per 3,500 - 5,000 gal. daily.
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A dry microbial blend which supplements existing biological filtration in established systems, providing a host of non-pathogenic, heterotrophic aerobic and anaerobic microorganisms (dominated by species which focus on remineralization of latent organic material). Shifts Redfield Ratio, increases average ORP, improves light penetration, enhances protein skimmer efficiency, reduces POM, DOM, and DIN. 1 g per 500 - 750 gal. weekly, or per 3,500 - 5,000 gal. daily.
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A dry microbial blend which supplements existing biological filtration in established systems, providing a host of non-pathogenic, heterotrophic aerobic and anaerobic microorganisms (dominated by species which focus on remineralization of latent organic material). Shifts Redfield Ratio, increases average ORP, improves light penetration, enhances protein skimmer efficiency, reduces POM, DOM, and DIN. 1 g per 500 - 750 gal. weekly, or per 3,500 - 5,000 gal. daily.
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A dry microbial blend which rapidly establishes comprehensive biological filtration, providing a host of non-pathogenic, heterotrophic aerobic and anaerobic microorganisms (nitrifiers, denitrifiers, as well as species which focus on remineralization of latent organic material). Aggressively reduces ammonia, nitrite, nitrate, and phosphate. To inoculate newly-established systems, 1 g per 200 gal., repeated after 7 days. Maintenance: 1 g per 500 - 750 gal. weekly, or per 3,500 - 5,000 gal. daily.
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A dry microbial blend which rapidly establishes comprehensive biological filtration, providing a host of non-pathogenic, heterotrophic aerobic and anaerobic microorganisms (nitrifiers, denitrifiers, as well as species which focus on remineralization of latent organic material). Aggressively reduces ammonia, nitrite, nitrate, and phosphate. To inoculate newly-established systems, 1 g per 200 gal., repeated after 7 days. Maintenance: 1 g per 500 - 750 gal. weekly, or per 3,500 - 5,000 gal. daily.
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A dry microbial blend which rapidly establishes comprehensive biological filtration, providing a host of non-pathogenic, heterotrophic aerobic and anaerobic microorganisms (nitrifiers, denitrifiers, as well as species which focus on remineralization of latent organic material). Aggressively reduces ammonia, nitrite, nitrate, and phosphate. To inoculate newly-established systems, 1 g per 200 gal., repeated after 7 days. Maintenance: 1 g per 500 - 750 gal. weekly, or per 3,500 - 5,000 gal. daily.
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A dry blend of organic carbon sources, generally applied to nutrient-deficient systems, which collectively increases the metabolic efficiency and feed conversion of corals and their allies to yield greater growth rates, as well as increases the rate of microbially-driven nitrogen and phosphorus uptake. May be employed with Inocul8 to expedite the nitrogen cycling of newly-established recirculating systems. 1 g per 100 - 150 gal. weekly, or per 700 - 1,000 gal. daily.
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A dry blend of organic carbon sources, generally applied to nutrient-deficient systems, which collectively increases the metabolic efficiency and feed conversion of corals and their allies to yield greater growth rates, as well as increases the rate of microbially-driven nitrogen and phosphorus uptake. May be employed with Inocul8 to expedite the nitrogen cycling of newly-established recirculating systems. 1 g per 100 - 150 gal. weekly, or per 700 - 1,000 gal. daily.
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Ammonia, Nitrite, Nitrate Control for Recirculating Seawater Systems; Improves Water Clarity and Light Transmission. Homogenous liquid suspension of heterotrophic microorganisms, particularly effective at reducing dissolved inorganic nitrogen compounds. Reduces ammonia by up to 50% within 24 hours of application. Rapidly reduces ammonia, nitrite, and nitrate content in recirculating marine ecosystems. For maximum impact in nitrogen-rich systems, apply Elimin8 DIN with an appropriate carbon source, such as aCtiv8.
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Ammonia, Nitrite, Nitrate Control for Recirculating Seawater Systems; Improves Water Clarity and Light Transmission. Homogenous liquid suspension of heterotrophic microorganisms, particularly effective at reducing dissolved inorganic nitrogen compounds. Reduces ammonia by up to 50% within 24 hours of application. Rapidly reduces ammonia, nitrite, and nitrate content in recirculating marine ecosystems. For maximum impact in nitrogen-rich systems, apply Elimin8 DIN with an appropriate carbon source, such as aCtiv8.
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Ammonia, Nitrite, Nitrate Control for Recirculating Seawater Systems; Improves Water Clarity and Light Transmission. Homogenous liquid suspension of heterotrophic microorganisms, particularly effective at reducing dissolved inorganic nitrogen compounds. Reduces ammonia by up to 50% within 24 hours of application. Rapidly reduces ammonia, nitrite, and nitrate content in recirculating marine ecosystems. For maximum impact in nitrogen-rich systems, apply Elimin8 DIN with an appropriate carbon source, such as aCtiv8.
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Nitrate sol'n; 100,000 ppm. Increases nitrogen, a critical nutrient for survival of photoautotrophs (incl. zooxanthellae), which often becomes biolimiting (slowing or halting primary productivity and cohort growth) in recirculating systems densely-populated with zooxanthellate cnidarians and bivalves, and/or which employ turf scrubber filtration. N deficiency is associated with bleaching. 1 mL per 26.4 gallons (100 L) increases nitrate by 1.0 ppm. 100,000 ppm nitrate, derived from potassium nitrate (anhydrous source, USP).
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Nitrate sol'n; 100,000 ppm. Increases nitrogen, a critical nutrient for survival of photoautotrophs (incl. zooxanthellae), which often becomes biolimiting (slowing or halting primary productivity and cohort growth) in recirculating systems densely-populated with zooxanthellate cnidarians and bivalves, and/or which employ turf scrubber filtration. N deficiency is associated with bleaching. 1 mL per 26.4 gallons (100 L) increases nitrate by 1.0 ppm. 100,000 ppm nitrate, derived from potassium nitrate (anhydrous source, USP).
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Phosphate sol'n; 50,000 ppm. Increases phosphorus, a critical nutrient for survival of photoautotrophs (incl. zooxanthellae), which often becomes biolimiting (slowing or halting primary productivity and cohort growth) in recirculating systems densely-populated with zooxanthellate cnidarians and bivalves, and/or which employ turf scrubber filtration. P deficiency is associated with bleaching. 1 drop (0.05 mL) per 26.4 gal. (100 L) increases phosphate by 0.025 ppm. 50,000 ppm phosphate, derived from potassium phosphate USP.
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Phosphate sol'n; 50,000 ppm. Increases phosphorus, a critical nutrient for survival of photoautotrophs (incl. zooxanthellae), which often becomes biolimiting (slowing or halting primary productivity and cohort growth) in recirculating systems densely-populated with zooxanthellate cnidarians and bivalves, and/or which employ turf scrubber filtration. P deficiency is associated with bleaching. 1 drop (0.05 mL) per 26.4 gal. (100 L) increases phosphate by 0.025 ppm. 50,000 ppm phosphate, derived from potassium phosphate USP.
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Complete artificial seawater salt blend with an ionic composition corresponding to open ocean values, mixing to a final salinity value of 35.2. Minor and trace elements included are specifically those not considered by researchers to be phytotoxic and which exhibit a nutrient-type depth profile in open oceanic waters. Clean; no residue in mixing vessels (applies to all Formul8 and Formul8x blends).
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Complete artificial seawater salt blend with an ionic composition corresponding to open ocean values, mixing to a final salinity value of 35.2. Minor and trace elements included are specifically those not considered by researchers to be phytotoxic and which exhibit a nutrient-type depth profile in open oceanic waters. Clean; no residue in mixing vessels (applies to all Formul8 and Formul8x blends).
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Complete artificial seawater salt blend with an ionic composition corresponding to Red Sea values at S=40, mixing to a final salinity value of 40.1. Values of major ions and select minor and trace ions (specifically, those not considered by researchers to be phytotoxic and which exhibit a nutrient-type depth profile in open oceanic waters) correspond to Red Sea average values (S=40). Clean; no residue in mixing vessels.
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Complete artificial seawater salt blend with an ionic composition corresponding to Red Sea values at S=40, mixing to a final salinity value of 40.1. Values of major ions and select minor and trace ions (specifically, those not considered by researchers to be phytotoxic and which exhibit a nutrient-type depth profile in open oceanic waters) correspond to Red Sea average values (S=40). Clean; no residue in mixing vessels.
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Complete artificial seawater salt blend with an ionic composition formulated for coral growers. Concentrations of Mg, Ca, K, and Sr are linearly increased, while Na is decreased to maintain appropriate salinity value. Enhanced alkalinity. Mixes to a final salinity value of 35.4. Minor and trace elements included are specifically those not considered by researchers to be phytotoxic and which exhibit a nutrient-type depth profile in open oceanic waters. Clean; no residue in mixing vessels.
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Complete artificial seawater salt blend with an ionic composition formulated for coral growers. Concentrations of Mg, Ca, K, and Sr are linearly increased, while Na is decreased to maintain appropriate salinity value. Enhanced alkalinity. Mixes to a final salinity value of 35.4. Minor and trace elements included are specifically those not considered by researchers to be phytotoxic and which exhibit a nutrient-type depth profile in open oceanic waters. Clean; no residue in mixing vessels.
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Increases alkalinity in recirculating seawater systems, as well as pH to a maximum value of 8.35. Formulation excludes phosphate- and hydroxide-based salts. 1 mL Carbon8 aq per 26.4 gallons (100 L) increases alkalinity by 0.1 dKH. 5 mL Carbon8 aq per 20.0 gallons (75.7 L) increases alkalinity by 0.60 dKH. 160,000 ppm total carbonate species.
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Increases alkalinity in recirculating seawater systems, as well as pH to a maximum value of 8.35. Formulation excludes phosphate- and hydroxide-based salts. 1 mL Carbon8 aq per 26.4 gallons (100 L) increases alkalinity by 0.1 dKH. 5 mL Carbon8 aq per 20.0 gallons (75.7 L) increases alkalinity by 0.60 dKH. 160,000 ppm total carbonate species.
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Increases alkalinity in recirculating seawater systems, as well as pH to a maximum value of 9.20. Formulation excludes phosphate- and hydroxide-based salts. 1 mL Carbon8 aq per 26.4 gallons (100 L) increases alkalinity by 0.1 dKH. 5 mL Carbon8 aq per 20.0 gallons (75.7 L) increases alkalinity by 0.60 dKH. 160,000 ppm total carbonate species.
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Increases alkalinity in recirculating seawater systems, as well as pH to a maximum value of 9.20. Formulation excludes phosphate- and hydroxide-based salts. 1 mL Carbon8 aq per 26.4 gallons (100 L) increases alkalinity by 0.1 dKH. 5 mL Carbon8 aq per 20.0 gallons (75.7 L) increases alkalinity by 0.60 dKH. 160,000 ppm total carbonate species.
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A dry blend which increases alkalinity in recirculating seawater systems, as well as pH to a maximum value of 9.20. Formulation excludes phosphate- and hydroxide-based salts. 1 g per gallon (3.8 L) increases alkalinity by 9.30 dKH.
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A dry blend which increases alkalinity in recirculating seawater systems, as well as pH to a maximum value of 9.20. Formulation excludes phosphate- and hydroxide-based salts. 1 g per gallon (3.8 L) increases alkalinity by 9.30 dKH.
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A dry blend which increases alkalinity in recirculating seawater systems, as well as pH to a maximum value of 9.20. Formulation excludes phosphate- and hydroxide-based salts. 1 g per gallon (3.8 L) increases alkalinity by 9.30 dKH.
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pH and Alkalinity Component of Coral8 Yin and Yang Complementary Coral Culture System; pair with Coral8 Yin. Coral8 system provides calcium, strontium, magnesium, potassium, and alkalinity (maximum pH value of ~8.40). A simplified approach to encouraging aragonite formation in closed circulation marine ecosystems.
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pH and Alkalinity Component of Coral8 Yin and Yang Complementary Coral Culture System; pair with Coral8 Yin. Coral8 system provides calcium, strontium, magnesium, potassium, and alkalinity (maximum pH value of ~8.40). A simplified approach to encouraging aragonite formation in closed circulation marine ecosystems.
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Ca, Mg, Sr, K, Br Component of Coral8 Yin and Yang Complementary Coral Culture System; pair with Coral8 Yang. Coral8 system provides calcium, strontium, magnesium, potassium, and alkalinity (maximum pH value of ~8.40). A simplified approach to encouraging aragonite formation in closed circulation marine ecosystems.
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Ca, Mg, Sr, K, Br Component of Coral8 Yin and Yang Complementary Coral Culture System; pair with Coral8 Yang. Coral8 system provides calcium, strontium, magnesium, potassium, and alkalinity (maximum pH value of ~8.40). A simplified approach to encouraging aragonite formation in closed circulation marine ecosystems.
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Boron sol'n; 44,500 ppm. Increases boron in recirculating seawater systems. 1 mL Isol8 B per 26.4 gallons (100 L) increases boron by 0.445 ppm. 5 mL Isol8 B per 20.0 gallons (75.7 L) increases boron by 2.94 ppm. 44,500 ppm boron, derived from borate salts of potassium and/or sodium (hydrated source, USP).
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Boron sol'n; 44,500 ppm. Increases boron in recirculating seawater systems. 1 mL Isol8 B per 26.4 gallons (100 L) increases boron by 0.445 ppm. 5 mL Isol8 B per 20.0 gallons (75.7 L) increases boron by 2.94 ppm. 44,500 ppm boron, derived from borate salts of potassium and/or sodium (hydrated source, USP).
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Bromide sol'n; 100,000 ppm. Increases bromide in recirculating seawater systems. 1 mL Isol8 Br per 26.4 gallons (100 L) increases bromide by 1.00 ppm. 5 mL Isol8 Br per 20.0 gallons (75.7 L) increases bromide by 6.60 ppm. 100,000 ppm bromide, derived from potassium bromide (anhydrous source, USP).
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Bromide sol'n; 100,000 ppm. Increases bromide in recirculating seawater systems. 1 mL Isol8 Br per 26.4 gallons (100 L) increases bromide by 1.00 ppm. 5 mL Isol8 Br per 20.0 gallons (75.7 L) increases bromide by 6.60 ppm. 100,000 ppm bromide, derived from potassium bromide (anhydrous source, USP).
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Calcium sol'n; 150,250 ppm. Increases calcium in recirculating seawater systems. 1 mL Isol8 Ca per 26.4 gallons (100 L) increases calcium by 1.50 ppm. 5 mL Isol8 Ca per 20.0 gallons (75.7 L) increases calcium by 9.92 ppm. 150,250 ppm calcium, derived from calcium chloride (anhydrous source, USP).
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Calcium sol'n; 150,250 ppm. Increases calcium in recirculating seawater systems. 1 mL Isol8 Ca per 26.4 gallons (100 L) increases calcium by 1.50 ppm. 5 mL Isol8 Ca per 20.0 gallons (75.7 L) increases calcium by 9.92 ppm. 150,250 ppm calcium, derived from calcium chloride (anhydrous source, USP).
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Calcium hydroxide, USP (Kalkwasser). Calcium hydroxide (Kalkwasser), >99.0% purity (exceeds purity of most USP-graded material). Provides calcium, increases pH. Kalkwasser application is an integral part of an effective pH-management and coral growth regimen in dedicated coral culture systems.
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Calcium hydroxide, USP (Kalkwasser). Calcium hydroxide (Kalkwasser), >99.0% purity (exceeds purity of most USP-graded material). Provides calcium, increases pH. Kalkwasser application is an integral part of an effective pH-management and coral growth regimen in dedicated coral culture systems.
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Calcium hydroxide, USP (Kalkwasser). Calcium hydroxide (Kalkwasser), >99.0% purity (exceeds purity of most USP-graded material). Provides calcium, increases pH. Kalkwasser application is an integral part of an effective pH-management and coral growth regimen in dedicated coral culture systems.
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