|
HS Code |
251986 |
| scientific_name | Rhodopseudomonas faecalis |
| type | Photosynthetic purple non-sulfur bacterium |
| appearance | Rod-shaped, Gram-negative |
| metabolism | Photoheterotrophic and chemoheterotrophic |
| oxygen_requirement | Facultative anaerobe |
| habitat | Wastewater, organic-rich environments |
| growth_temperature | 20-37°C |
| optimal_pH | 6.5-7.5 |
| use_in_biotechnology | Wastewater treatment, bioremediation |
| benefits | Degradation of organic matter, nitrate and phosphate removal |
As an accredited Rhodopseudomonas Faecalis factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Sealed 100g white plastic bottle, tamper-evident cap, labeled "Rhodopseudomonas Faecalis," storage instructions, batch number, expiry date, and safety symbols. |
| Shipping | Rhodopseudomonas faecalis is shipped in sealed, leak-proof containers under regulated conditions. The package includes gel packs or dry ice to maintain a stable temperature, ensuring viability. All shipments comply with relevant biological material transportation guidelines, featuring clear labeling and documentation for safe and efficient delivery to laboratories or research institutions. |
| Storage | Rhodopseudomonas faecalis should be stored in a sterile, tightly sealed container, preferably at 4°C if short-term, or at -80°C with glycerol for long-term preservation. Store in a dark, temperature-controlled environment, away from direct light to maintain viability. Ensure proper labeling and periodic monitoring to prevent contamination and genetic drift. Follow biosafety guidelines for handling and storage. |
| Purity 99%: Rhodopseudomonas Faecalis with 99% purity is used in aquaculture water treatment, where it effectively reduces ammonia concentration and improves water quality. Viable Cell Count 1x10^9 CFU/g: Rhodopseudomonas Faecalis with viable cell count of 1x10^9 CFU/g is used in livestock manure composting, where it accelerates organic matter degradation and minimizes odors. pH Stability 5.5–8.5: Rhodopseudomonas Faecalis with pH stability of 5.5–8.5 is used in soil bioremediation projects, where it maintains metabolic activity across variable soil conditions and enhances pollutant breakdown. Moisture Content ≤5%: Rhodopseudomonas Faecalis with moisture content ≤5% is used in biofertilizer formulations, where it ensures extended shelf-life and microbial viability during storage. Light Intensity 2000–3000 lux: Rhodopseudomonas Faecalis optimized for 2000–3000 lux light intensity is used in photobioreactor systems, where it promotes rapid cell proliferation and biomass yield. Temperature Tolerance 10–40°C: Rhodopseudomonas Faecalis with temperature tolerance of 10–40°C is used in industrial wastewater treatment, where it sustains effective nutrient cycling under fluctuating operational temperatures. Particle Size <100 μm: Rhodopseudomonas Faecalis with particle size less than 100 μm is used in seed coating processes, where it guarantees uniform application and enhanced plant growth promotion. Salt Tolerance up to 2% NaCl: Rhodopseudomonas Faecalis with salt tolerance up to 2% NaCl is used in saline soil reclamation, where it establishes microbial activity and supports soil fertility restoration. |
Competitive Rhodopseudomonas Faecalis prices that fit your budget—flexible terms and customized quotes for every order.
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After years on the production floor, I’ve watched countless batches of Rhodopseudomonas faecalis take shape from start to finish, and I’ll tell you, these bacteria aren’t just another entry in a catalog—they’re a workhorse for anyone dealing with tough wastewater, farm runoff, or soil remediation projects. In our labs, each batch follows a strict regimen, so we know exactly what kind of performance to expect. Mistakes in cultivation aren’t an option. Our team checks the vitality and purity at every step, because our customers rely on results, not wishful thinking.
Not all photosynthetic bacteria measure up to the same standards. I’ve worked with other strains—Rhodobacter, Rhodobacter capsulatus, and generic blends—and each has quirks that show up in the field. Rhodopseudomonas faecalis handles organic load surges and nutrient fluctuations better than most. It works under low light or high, aerated or still environments. This bacterial model can absorb and transform a remarkably wide range of organics, even in the presence of ammonia or sulfide spikes where other microbes falter. That translates to real peace of mind if you’re running a bioreactor, treating livestock effluent, or looking for a crop-friendly soil amendment.
Industrial clients want proof, not promises. We send out every batch with a certificate of viability and live cell count, so operators can see the starting population. But numbers on a form only go so far—you want to see tanks clearing faster, sludge volume dropping, or rivers running cleaner downstream. Our product thrives even in mixed-load facilities where chemical oxygen demand (COD) fluctuates daily. Unlike single-function bacteria, Rhodopseudomonas faecalis doesn’t stall at high organic content or go dormant when short on specific nutrients. This means operators spend less time coaxing their system back to life and more time running at peak.
Plant managers notice that after dosing with our product, volatile fatty acids decline. Odors connected to hydrogen sulfide fade. We’ve confirmed stronger reductions in ammonia nitrogen and phosphorus compared to more generic strains, especially in systems with variable inflows. In side-by-side tests, it’s clear this species does more than just survive; it changes the game for bioremediation and effluent polishing.
We offer this bacterial model as a freeze-dried powder, with a tight moisture content threshold to guarantee viability during storage and transport. Our quality checks catch any drop in activity before a shipment leaves our site. Customers get fresh batches, never stock that's past its prime. Packaging includes activity and purity test results from our labs; we stand behind every number on the label.
Whether your application calls for batch dosing in lagoons or continuous injection in closed systems, we’ve seen Rhodopseudomonas faecalis adapt fast to local environments. There’s no single formula—our technicians walk operators through ramp-up dosing, respond to seasonality, and provide tips for getting the most out of each run. We’ve seen success stories in municipal plants, food processing, aquaculture, and farms using open ponds. Each has its unique workflow, but this bacterium’s strength lies in how quickly it ramps up even under tough, unstable conditions.
Having manufactured both single-species and consortia blends, I keep coming back to the adaptability of this strain. Traditional nitrifiers or heterotrophic blends often get battered by shock load or toxic byproducts, needing babying and frequent monitoring. Rhodopseudomonas faecalis gets to work rapidly, generating beneficial byproducts: not just breaking down waste, but releasing amino acids and vitamins that can support aquatic life or stimulate plant root growth if applied to soil.
Our real-world tests reveal that this bacterium stabilizes pH, minimizes the formation of scum and sludgy residues, and cuts down on secondary pollution. Plants that switch from single-purpose cultures to this species see reduced operating costs and less reliance on chemical adjusters or emergency tank draining. Feedback from clients on large dairy farms and piggery lagoons shows odor complaints drop, maintenance crews spend less time dredging, and discharge readings fall below regulatory targets.
As a direct manufacturer, I live the consequences of every quality or logistics misstep. Each production batch stays on site for up to a week of post-processing checks, longer if climates dictate. No product leaves until my team signs off on reproducibility and sample recovery tests. Customers know they’re getting pure, uncut Rhodopseudomonas faecalis, not a diluted or blended variant.
New clients often ask about the risk of introducing a “non-native” species. In our facilities, the strains undergo safety assessments for potential allergenicity and plant toxicity before scale-up to production tanks. Years of feedback show no negative impacts on indigenous microflora or local water fauna. This non-pathogenic strain offers all of its upside without drawbacks that sometimes follow with coliform bacteria or opportunistic invaders. We publish batch records and purity reports for client review on request, upholding the standards that environmental engineers, farm operators, and municipal treatment managers demand.
Tough industrial effluent often contains more than what meets the eye. We’ve faced scenarios where heavy metals, synthetic surfactants, and pesticides disrupt biological treatment. Rhodopseudomonas faecalis stands out with its ability to function in the presence of many of these contaminants, unlike pure nitrifiers or single-purpose denitrifiers. Field results confirm continued removal efficiency where other blends lose effectiveness or require supplemental feeding.
Our team regularly reviews operating data and customer feedback to refine dosing protocols. Long-term operators tell us the major benefit is resilience—effluent composition doesn’t always match the textbook, so bacteria that cope with swings in organic loads, pH, temperature, or oxygen levels show their worth. That's the strength of this organism.
Soil application is a rapidly growing area. As conventional chemical amendments come under closer regulatory pressure, farms turn to biological options that restore soil fertility and stabilize nutrients. Rhodopseudomonas faecalis has shown uptake of nitrate and phosphate without contributing to greenhouse gas emissions like nitrous oxide, which occur with some denitrifying bacteria. On-farm trials confirm improvements in crop root vigor and a measurable drop in residual nitrogen leaching.
We work with agronomists to tailor field application protocols, respecting local requirements and avoiding over-dosing. Success comes from understanding the living system, not treating the soil as an inert substrate. Year after year, client reports reinforce the value of biologicals in sustainable production systems. Our product provides a natural tool for keeping lands productive and water clean, without harmful residues.
We catalog each production run, logging test results from our on-site labs and tracking each lot to destination. Model identifiers match DNA barcoding and metabolic profiling, not just surface appearance or generic names. Every customer can request back documentation to verify they’re getting what they paid for. That’s how we keep trust with large-scale processors and small site managers alike. In our experience, transparency beats sales talk.
Specifications for each lot stem from direct analytics—cell counts, moisture ratio, actual recovery from stress tests, metabolite profiles under aerobic and anaerobic conditions. If a client runs into an outlier event—a shock load of protein waste, sudden pH crash, or unexpected chemical inflow—our technical team provides troubleshooting rooted in direct pilot experience, not outsourcing or guesswork.
From the factory floor to client installations, I’ve seen firsthand how different approaches play out. Multi-strain blends often fight for food or outcompete each other, leading to unpredictable drops in treatment efficiency. By contrast, our Rhodopseudomonas faecalis model acts as a robust backbone. It doesn’t just occupy ecological space in a tank or lagoon, it metabolizes a far broader set of contaminants under variable real-life conditions. That means less yo-yoing of system performance, less need for emergency interventions, and measurable improvements in downstream water quality.
Other manufacturers sometimes push consortia with flashier claims, but field evidence and live batch testing routinely put our pure culture ahead in critical scenarios—especially where temperature, oxygen, or organics fluctuate unpredictably. We’ve built repeat business on consistent, visible impacts, not one-off effects.
Long-term users keep returning because they see the difference where it counts—less sludge buildup in holding tanks, more stable pH in fish ponds, fewer odor complaints from nearby neighbors, and greater downstream compliance margins. Environmental managers care about public reputation as much as regulatory targets, and our product delivers tangible support on both fronts.
For facilities struggling with legacy pollution or recurring compliance failures, our product often flips the script. By introducing an adaptable microbial agent that persists during operational hiccups and chemical upsets, operators spend more time proactively managing flow and nutrients rather than scrambling to treat outbreaks after the fact.
It’s easy to let standards slip, especially when demand runs high and cost pressures build. We take the long view—refining every stage of manufacturing, running regular reviews of genetic consistency, and refreshing our technical support with new findings from field and laboratory tests. We never chase cheap filler or blend-ins, nor do we compromise on shelf life assurance. Buyers can verify every batch’s origin, see the live cell recovery rates, and draw on support grounded in everyday production experience.
Some innovations come from the lab, but many of our improvements result directly from end user feedback. Farmers report unique combinations of feedstock or water contaminants, and we troubleshoot together, using onsite data and follow-up testing. Plant engineers run pilot tests at commercial scale and return with cycle time and recovery feedback that lets us fine-tune delivery formats.
We set standards for cell viability, purity, and moisture content not based on what’s “good enough,” but based on field results, real customer outcomes, and our ongoing drive to maximize the species’ strengths. The process benefits from being a direct manufacturer—no agents or relabeling chains getting in the way of honest technical discussion.
Our facility operates under strict local and national guidelines, ensuring containment of all biological materials and review by environmental oversight. We maintain transparent reporting to public agencies and keep an open line of communication with clients regarding questions on traceability and environmental integration.
Rhodopseudomonas faecalis fits within strategies for reducing reliance on harsh chemical disinfectants, costly aeration, or chemical fertilizers. Over time, gains in water clarity, reduced solids, and stabilized nutrient flows cut costs for operators and bring wider environmental benefits—healthier rivers, ponds, and soils. As stewards of both the product and its impacts, we invest continuously in long-term partnerships with researchers and practitioners to adapt our offering to evolving challenges.
For anyone responsible for water or soil health, tools that work under real-world conditions make all the difference. Rhodopseudomonas faecalis isn’t just another microbial input. Our experience shows it can bridge the gap between high-performing lab strains and field-ready resiliency. With each new production batch, we double down on quality, confirm identity, and focus on the needs of the people dealing with the daily reality of remediation.
We take pride in every shipment that leaves our facility. It represents years of learning, an ongoing partnership with end users, and a daily commitment to delivering more than just a bag of bacteria—real, tested solutions that carry their value all the way down to the last application.