|
HS Code |
485412 |
| Productname | Bacillus Mucilaginosus Krassilnikov |
| Type | Soil Bacterium |
| Form | Powder or Liquid |
| Color | Light brown to yellowish |
| Odor | Earthy or musty |
| Application | Biofertilizer |
| Mainfunction | Solubilizes potassium and silicon |
| Phrange | 6.0 - 8.0 |
| Shelflife | 12 months |
| Viablecount | ≥1x10^8 CFU/g |
| Temperaturetolerance | 15°C - 45°C |
| Solubility | Water-soluble |
| Carriermaterial | Peat, talc, or vermiculite |
| Targetcrops | Cereal, vegetable, and horticultural crops |
| Storagecondition | Cool, dry place away from sunlight |
As an accredited Bacillus Mucilaginosus Krassilnikov factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Bright yellow, sturdy plastic bag labeled "Bacillus Mucilaginosus Krassilnikov," 25 kg net weight, with usage instructions and safety precautions. |
| Shipping | The shipping of **Bacillus mucilaginosus Krassilnikov** is conducted in sealed, moisture-proof containers to ensure viability. Packages are clearly labeled in compliance with biosafety and regulatory guidelines. The product is shipped at ambient temperature, with expedited delivery recommended to maintain microbial activity upon arrival. Suitable for agricultural and research applications. |
| Storage | Bacillus mucilaginosus Krassilnikov should be stored in a cool, dry place, preferably between 4–8°C, away from direct sunlight and moisture. Keep the container tightly closed to prevent contamination and loss of viability. For long-term storage, refrigeration is recommended. Avoid exposure to extreme temperatures, chemicals, or strong oxidizers. Always follow local biosafety guidelines for microbial handling and storage. |
|
Purity 98%: Bacillus Mucilaginosus Krassilnikov with a purity of 98% is used in soil amendment applications, where it enhances potassium solubilization efficiency for improved crop yield. Particle Size <10 μm: Bacillus Mucilaginosus Krassilnikov with particle size below 10 μm is used in seed coating processes, where it ensures uniform coverage and increased microbial activity at the seed surface. Viable Cell Count ≥2x10^9 CFU/g: Bacillus Mucilaginosus Krassilnikov with a viable cell count of at least 2x10^9 CFU/g is used in biofertilizer formulations, where it promotes rapid colonization and sustainable nutrient cycling. Moisture Content <5%: Bacillus Mucilaginosus Krassilnikov with moisture content below 5% is used in granular fertilizer production, where it improves product shelf life and long-term microbial stability. pH Stability Range 5.5-9.0: Bacillus Mucilaginosus Krassilnikov stable in the pH range of 5.5 to 9.0 is used in saline-alkaline soil treatment, where it maintains high metabolic activity and resilience under variable conditions. Temperature Stability up to 55°C: Bacillus Mucilaginosus Krassilnikov with temperature stability up to 55°C is used in composting applications, where it ensures sustained mineralization and elevated thermotolerance during organic matter decomposition. Water Solubility >90%: Bacillus Mucilaginosus Krassilnikov with water solubility above 90% is used in liquid fertilizer systems, where it provides homogenous microbial dispersion and enhanced root uptake. Enzyme Activity ≥120 U/g: Bacillus Mucilaginosus Krassilnikov with enzyme activity greater than or equal to 120 U/g is used in mineral fertilizer enhancement, where it accelerates silicate and phosphate release for enriched soil fertility. |
Competitive Bacillus Mucilaginosus Krassilnikov prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.
We will respond to you as soon as possible.
Tel: +8615365186327
Email: admin@ascent-chem.com
Flexible payment, competitive price, premium service - Inquire now!
Over the past decade, we have dedicated extensive resources to mastering the cultivation and production of Bacillus Mucilaginosus Krassilnikov at scale. In our manufacturing process, consistency forms the backbone. Our lab teams maintain close watch on every batch, monitoring microbial purity and vitality at several key stages. This experience shapes the product you receive, as it allows us to turn out stable, reliable strains. Real-world success starts in high-quality fermentation: this is the result of hands-on work with live cultures and equipment that we service ourselves.
From the growth tank to the final drying step, we see the value of taking a careful approach to scaling up. Unlike many single-purpose biofertilizer factories, we maintain open communication between our technologists and the growers who rely on these products. This feedback cycle lets us refine every detail: controlling water activity, adjusting media composition, and selecting only thriving cell populations. Our method doesn’t just ensure shelf-stable finished powder— it lets users achieve more rapid, visible changes in soil biology and crop vigor.
Bacillus Mucilaginosus Krassilnikov, often called “silicate bacteria,” earns its reputation for mobilizing soil nutrients, especially silica and potassium. The organism attaches to mineral particles in the soil, breaking down silicates through secreted acids and polysaccharides. Farmers notice the difference: soils with low available potassium or compacted texture start to show improved friability and fertility within a single application cycle. In commercial agriculture, this effect translates into healthier root development and increased resilience against environmental stressors.
We pay close attention to maintaining a highly active, fresh culture at the time of final processing. This causes a visible sheen and slightly earthy aroma unique to a living Bacillus population. The product’s brownish-tan color derives from both bacterial pigments and the carefully selected carriers we use to support cell activity. By using a fluidized bed dryer and in-line sieving, we create a free-flowing powder that resists clumping and handles well in seed drills or overhead spreaders.
From input to output, we focus on a few parameters that directly affect function in the field. For Bacillus Mucilaginosus Krassilnikov, our target cell count runs above 2 x 109 CFU per gram, using the plate count method. Moisture content remains below 10 percent, giving strong storage stability even in varying local climates. The carrier matrix consists mainly of sterilized corn cob powder and wheat bran, sourced from reliable regional farms, offering a biodegradable substrate and avoiding complications for organic growers.
Splitting batches between different mesh sizes lets us deliver product forms useful for broad-acre or horticultural use. Farmers who topdress orchards often prefer the coarser granule, while row crop applicators choose the finer mesh for uniform coverage. We label every package with batch production dates and viable organism counts, removing guesswork for users who operate on tight schedules and need predictable results.
Growers commonly incorporate Bacillus Mucilaginosus Krassilnikov by broadcasting the dry powder over open fields or blending it with base fertilizers before planting. Our own field trials and user feedback confirm it handles high-humidity storage, doesn’t cake or lose efficacy, and resists microbial competition from typical fertilizer blends. The bacteria remain viable even in the presence of low levels of fungicide residues, given that we fortify the carrier with a proprietary mineral buffer.
Rice paddies, sugarcane, and wheat operations that run continuous cropping cycles stand out as the biggest long-term beneficiaries. Adding silicate bacteria each season lays down a reserve of bioactive potassium and boosts soil buffering capacity. Some operators see reductions in chemical fertilizer requirements in the second and third years—backed by soil test data and plant tissue analysis from independent labs. Vegetable growers also take advantage of the bacteria’s mild polysaccharide production, which improves seedling establishment and promotes soil aggregation.
We have seen turf managers, greenhouse operators, and reforestation teams use this product for specific challenges: dogged resistance to root diseases, midseason nutrient slump, and rehabilitation of compacted urban plots. The blend doesn’t emit strong odors or introduce foreign weed seeds. Since the carrier raw materials come from audited sources, there are no surprises with regulatory inspections or strict export documentation. No material falls out of the mesh range, so equipment rarely jams or bridges.
Plenty of biological soil inoculants make promises about nutrient cycling. Our Bacillus Mucilaginosus Krassilnikov stands out for two reasons rooted in actual field impact: cell population stability and carrier quality. Most commercial companies focus only on cell count at the point of packaging. Through years of working with international partners, we learned that germination and growth in the field depend just as much on survivability as raw numbers out of the bag.
We maintain a lower water content and avoid overexposure to high heat, so the bacteria retain metabolic activity rather than lapse into extended spore dormancy. This triggers quicker colonization when exposed to root exudates—confirmed both by our in-house soil microcosm experiments and independent farm trials. We track field outcomes each season, adjusting our fermentation methods based on actual farmer feedback rather than lab simulation alone.
Competitors often use inert mineral carriers that add unnecessary bulk. Our focus on organic carriers increases compatibility with established organic certification schemes and yields a visible improvement in soil tilth. This gets noticed after one or two seasons of repeated treatment. Open collaboration with primary users and direct engagement with extension specialists drives ongoing improvements—our team implements tweaks in real time, rather than template-driven revisions or third-party advice.
We choose our Bacillus daughter strains after testing for acid production, exopolysaccharide output, and copper resistance. This avoids setbacks from fluctuating irrigation water quality and enables function in both acidic and moderately saline settings. We have adapted the production protocol to minimize unwanted microbial contamination, which safeguards plant roots from opportunistic pathogens. Users have shared positive results even in temperate zones where some silicate bacteria stall in cool springs.
Field application shouldn’t force an overhaul of regular fertilizer scheduling. Growers report that integrating the powder with early season urea passes provides good dispersal and limits labor demands. Light irrigation after topdressing gives the best early results, cutting down wind drift and anchoring the bacteria close to seed and root zones. In tree crops, banding along the drip line proves most effective: moisture here supports faster colonization and visible nutrient cycling, especially in potassium-hungry species.
Plant root colonization by silicate bacteria accelerates in soils just above 18°C. We advise direct applications during the spring weather window, before rapid canopy closure, so adequate sunlight and soil warmth support the bacteria’s spread. Farmers working in harder clays see added benefit mixing the powder with compost, while lighter loams benefit from a stand-alone surface application. No additional binders or wetting agents prove necessary in humid climates—the built-in matrix activates with field moisture.
From interactions with cacao and tea planters, we learned the importance of maintaining a granular product that doesn’t cake under warehouse conditions. We check every batch for flow through standard spinner applicators. For those blending on-farm, careful rotation in batch mixers with other granular fertilizers proves effective. Continuous agitation or use of vibratory feeders precludes any bridging in mechanical spreaders.
Operators who rely on custom fertility prescriptions appreciate that our product doesn’t skew pH or cause chemical binding with micronutrient blends. Test strips show neutrality in typical application rates. Users in ISO-monitored export operations appreciate our detailed batch certificates and practical storage instructions. Product keeps in airtight packaging for a season or longer, without refrigeration or fumigation.
We’ve seen that excessive product wetting before field delivery can induce temporary clumping. To avoid this, we distribute in moisture-proof bags and advise storage in well-ventilated rooms. If product gets damp, it can be dried on woven tarps with circulating air, and we offer guidance by phone for these procedures. In the event of mechanical breakdown, our technical team walks farm managers through on-seed application tips using basic tools already present on site.
Crop consultants sometimes raise concerns regarding compatibility with copper-based disease controls. Through repeat field validation, we found that using Bacillus Mucilaginosus Krassilnikov with moderate copper levels (under recommended label rates) causes no appreciable loss in viability. Mixing concentrates directly with strong chelates or acidified fluids can cause a drop in spore count, so it’s best to blend with bulk-balanced fertilizers or apply in-line after dilution. These tips result from many seasons spent listening to growers, adapting processes, and solving specific local issues.
Hybrid rice producers and potato managers both report resilience against late-season nutrient withdrawal where Bacillus Mucilaginosus Krassilnikov augments basic potassium fertilizer regimes. We encourage sequential applications in existing rotations, leveraging established field operations to minimize labor expense. Many operations using our product for multiple years have reduced their dependence on imported soluble nutrients, translating to improved input resilience and lower cost per hectare.
Livestock operators that plant rotational grazing paddocks use Bacillus Mucilaginosus Krassilnikov for improved forage persistence. This ties back to our production style: seed handlers avoid complications with dust and confirm the flowability using basic gravity drills. Local experiment station data shows higher rates of potassium and silicon uptake in treated plots, often supporting greater dry matter yield for silage or direct feeding.
Soil management is fast becoming the driving force behind profitable and sustainable agricultural businesses. Intensive monoculture and high fertilizer use put pressure on nutrient reserves, especially potassium. By introducing Bacillus Mucilaginosus Krassilnikov in a biological format, growers tap into the natural mineralization cycle, opening up reserves locked away in silicate rocks and clays. The increased biological activity stabilizes pH, supports root health, and drives more efficient use of added nutrients. Data gathered from partner research plots demonstrates that fields treated with our Bacillus formulations exhibit improved aggregation and higher water-holding capacity after just two seasons.
Long-term soil health depends on diverse, robust microbial populations. Our work aims to restore balance in soils suffering from overwork or neglect. As farmers face mounting regulatory and input costs, Bacillus Mucilaginosus Krassilnikov offers a practical, field-proven way to maintain yields and lower the risk associated with one-size-fits-all fertilizer strategies. High-value crop producers notice a measurable reduction in physiological stress, less tip burn, and more uniform maturity at harvest—observations confirmed by side-by-side plot results and direct farmer reports shared at grower meetings.
We stake our reputation on delivering living biology, not just an inert input. Each production season brings fresh challenges—the result always gets field-tested before going out. Our scientific team keeps an open line with progressive farmers, fine-tuning both manufacturing and technical support as needs evolve. This living dialog leads to practical benefit, not just incremental product claims.
Our journey as a manufacturer who both researches and produces Bacillus Mucilaginosus Krassilnikov continues to evolve. We work with agronomy research centers, extension teams, and large-scale commodity farmers to track how different environments affect the pace and visible impact of bacterial activity. Each harvest brings new data, guiding adjustments to carrier composition and microbial blends. We anticipate further advances in strain diversity and shelf stability through more precise fermentation and packaging techniques.
User focus groups continue to point out better results when Bacillus Mucilaginosus Krassilnikov fits established cropping and reseeding intervals. Urban agriculture and reforestation efforts highlight the bacteria’s restorative functions for compacted, low-carbon soils. Next season, our research group plans to pilot new inoculation equipment that targets row placement, further conserving seed costs and optimizing microbial action. Through these realities, we keep refining our approach, shaped by the real-world needs and feedback of those who work the land every day.
In every bag that leaves our facility, years of hands-on learning and investment in test plots stands behind the product. This knowledge gets passed directly to you—no speculation, no off-the-shelf formulations without a proven track record. Our ongoing story with Bacillus Mucilaginosus Krassilnikov moves forward in step with growers who understand the real value of living inputs and resilient farming systems.