Products

Scenedesmus Dimorphus

    • Product Name: Scenedesmus Dimorphus
    • Alias: Chlorolisa
    • Einecs: 931-047-5
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    592724

    Scientific Name Scenedesmus dimorphus
    Kingdom Plantae
    Phylum Chlorophyta
    Class Chlorophyceae
    Order Sphaeropleales
    Family Scenedesmaceae
    Shape Colonial, often with 2 or 4 cells per colony
    Cell Wall Thick, sometimes with spines
    Habitat Freshwater environments
    Color Green
    Growth Temperature Range Celsius 20-35
    Nutritional Type Photoautotrophic
    Lipid Content Percentage 20-40
    Protein Content Percentage 30-50
    Use Case Biofuel production
    Reproduction Asexual, by autospores

    As an accredited Scenedesmus Dimorphus factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Scenedesmus Dimorphus, 100g, packaged in a sealed, opaque, resealable plastic pouch with clear labeling and safety instructions.
    Shipping Scenedesmus dimorphus is shipped as a live algal culture in sealed, sterile containers to maintain viability. The shipment is typically sent via express delivery and kept at controlled temperatures. Packaging ensures protection from light and temperature extremes, and includes relevant safety and handling documentation per biological material shipping regulations.
    Storage Scenedesmus dimorphus, a microalgae species, should be stored in sterile, airtight containers under cool, dark conditions to prevent contamination and degradation. If in liquid culture, maintain at 4°C and regularly monitor for purity. Dried biomass should be kept in moisture-proof, opaque containers at room temperature or cooler, away from direct sunlight to preserve its biochemical properties.
    Application of Scenedesmus Dimorphus

    Protein Content: Scenedesmus Dimorphus with protein content above 50% is used in aquaculture feed formulations, where it promotes rapid fish growth and improves feed conversion ratios.

    Lipid Content: Scenedesmus Dimorphus with lipid content of 28% is used in biodiesel production, where it enhances yield and fuel quality.

    Cell Size: Scenedesmus Dimorphus with cell size averaging 8 microns is used in wastewater treatment processes, where it facilitates efficient nutrient uptake and sedimentation.

    Chlorophyll Concentration: Scenedesmus Dimorphus with chlorophyll a concentration of 1.2 mg/g is used in natural pigment extraction, where it delivers stable, high-intensity green color for food and cosmetic products.

    Dry Biomass: Scenedesmus Dimorphus with dry biomass concentration of 3 g/L is used in biofertilizer applications, where it enriches soil organic matter and promotes crop yield.

    Stability Temperature: Scenedesmus Dimorphus with thermal stability up to 40°C is used in closed photobioreactors, where it maintains high productivity under fluctuating environmental conditions.

    Purity Grade: Scenedesmus Dimorphus with purity grade above 99% is used in pharmaceutical research, where it ensures consistent and reproducible bioactive compound isolation.

    Harvesting Efficiency: Scenedesmus Dimorphus with harvesting efficiency of 90% via flocculation is used in large-scale biomass production, where it reduces processing costs and energy consumption.

    Carbohydrate Content: Scenedesmus Dimorphus with carbohydrate content of 32% is used in bioethanol manufacturing, where it ensures high fermentation efficiency and increased ethanol output.

    Antioxidant Activity: Scenedesmus Dimorphus exhibiting antioxidant activity of 78% inhibition is used in functional food development, where it provides oxidative stress protection and extends product shelf life.

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    Certification & Compliance
    More Introduction

    Scenedesmus Dimorphus: A Proven Microalgae for Modern Applications

    Drawing from Real Manufacturing Experience

    Manufacturing Scenedesmus dimorphus at industrial scale has shaped how we view practical microalgae production. Our facility handles cultivation year-round, brings in decades of hands-on trouble-shooting, and keeps close ties with researchers and end users. Every batch reflects genuine adjustments based on water chemistry, temperature changes, contamination avoidance, and other challenges that come up only in actual day-to-day operation. Extensive microalgae production is never textbook work; hands in tanks, live results, direct feedback from bioprocess engineers and lab specialists mean everything.

    Understanding the Value of Scenedesmus Dimorphus

    Scenedesmus dimorphus stands out for more than just its literature profile. For us, it’s the consistency during bulk upscaling that matters. Reproducibility across hundreds of cubic meters, breakdown avoidance during harvest, strong growth even as nutrients fluctuate—these are the factors that keep customers coming back. The cellular architecture of Scenedesmus supports higher biomass recovery than some alternatives. Cells don’t fragment easily under continuous centrifugation. Every grow-out cycle lets us see how the robust cell clusters of this species control harvesting costs and minimize downstream fouling.

    Looking at different uses: culture scientists know Scenedesmus as a model for wastewater bioremediation, animal feed, and pigment recovery. Actual yields depend on strain, water quality, light delivery, and harvest timing—not just static genetic potential. With experience, harvesting at the right time keeps quality consistent. Our in-house analytics show that the protein and lipid percentages can shift if growth factors swing, so we monitor every batch tightly. Our line of Scenedesmus dimorphus produces reliable output of chlorophyll, carotenoids, and well-characterized protein fractions appreciated by animal nutrition labs.

    Specifications from a Real-World Producer

    Unlike resellers or office-based marketers, direct manufacture brings control over strain selection and culture conditions. Our principal models include wild-type Scenedesmus dimorphus ISO-222, regularly compared with other microalgae species in peer-reviewed research. Under typical production, cells range from 7 to 15 microns, mostly in coenobia of four-celled clusters. Micrographs from our QC lab capture the distinctive oblong, ridged cell walls seen as a key identification trait. We maintain axenic seed cultures, with main production lines operating in recirculated outdoor ponds and closed photobioreactors, depending on user requirements.

    All batches pass our routine checks for contamination, density, and metabolite content. Partial dewatering through low-shear filtration, before spray or freeze drying, keeps the structure intact. We optimize the culture medium for either protein enhancement or maximized pigment output, depending on target application. This ability to tune the process, instead of patching up with additives later, contributes to repeatable results batch to batch. Factory monitoring tracks pH, CO2 uptake, dissolved oxygen, and light cycling, so each container released to customers is fully documented for these parameters, not just labeled by name.

    What Sets Scenedesmus Dimorphus Apart from Other Microalgae Products?

    Plenty of organizations offer generic Chlorella or Spirulina for animal feed or pigment extraction. The real difference with Scenedesmus dimorphus emerges during processing and utilization. The robust cell wall never breaks down as easily as Chlorella, a fact both positive and negative depending on intended use. Water treatment applications favor Scenedesmus for its ability to thrive in fluctuating organic loads, high ammonia, and variable light conditions. This strain forms floating mats more readily, simplifying gravity separation.

    Tetraselmis and Spirulina supply more omega-3 fatty acids, but Scenedesmus dimorphus routinely yields higher total biomass per volume. Production managers appreciate fewer contamination problems with this microalga, while lab users cite easier quantification of pigments thanks to clearly defined cellular structures. Frequent re-seeding, a concern with Porphyridium and Haematococcus, becomes unnecessary since Scenedesmus stands up to predators and viral issues better under large-scale conditions.

    Not every downstream process fits every microalga. Solvent extraction for lipids, pH shift protein recovery, and pigment solubilization each benefit from unique cell properties. Based on hundreds of technical reviews by our partners, Scenedesmus dimorphus brings moderate protein and lipid levels, a tougher cell wall, less cell lysis, and lower overall foulant generation in pipes and filters. Feed formulation labs have validated the green coloration and taste neutrality, enabling higher replacement rates in aquaculture and livestock diets. Our feedback from bioremediation clients underscores the ease of separating biomass without complex membrane filtration.

    End-Use Cases from Our Own Customers

    We’ve learned that Scenedesmus dimorphus can handle municipal wastewater’s complex nutrient loads, holding up through the fluctuations that overwhelm most microalgae. Scandinavian wastewater plants report high nitrogen and phosphorus recovery after efficient settling and filtration—upwards of 85% removal, according to their own analytics. In commercial aquaculture, feed mills use the powdered form as a partial fishmeal replacement. The consistently green pigment brings a vibrant color to shrimp feed, an attribute that matters in export quality grading.

    Biofuel researchers routinely choose Scenedesmus dimorphus due to moderate lipid content combined with robust culture stability. Run-to-run variability proves low, important for fermenters aiming at process optimization. High surface productivity in open raceway ponds remains a common request. The morphology resists predation and viral lysis, unlike Euglena-based systems, so entire annual cycles can run with minimal downtime. Paper and plastics manufacturers inquire about the cell wall polysaccharides; pilot trials show encouraging results for additive development, taking advantage of the rigid fibrous surfaces that result in unique texture profiles.

    Technical Challenges and Our Solutions

    Each supplier brings their own bottlenecks. For Scenedesmus dimorphus, the main historic issue centers on dewatering: small cell size, dense suspensions, and cell clustering often clog typical filters. We dealt with this through a custom two-stage centrifugation, configured based on hundreds of trial runs in varied climate conditions. Feed pump rates, bowl speeds, and nozzling all had to be individually tuned before consistent production scale-up. The robust cell clusters also react differently to shear compared to softer microalgae, demanding careful adjustment of piping and airlift loops. During early production runs, biofilm formation on contact surfaces raised cleaning costs, so we shifted to upgraded coatings and adjusted agitation rates. Cross-disciplinary collaboration between our chemical engineers and microbiologists produced those long-term gains.

    Growth rate acceleration remains a customer request, especially for high-throughput animal feed applications. Genetic or mutagenic approaches claimed by some labs rarely deliver cost-effective improvements at industrial scale. Our focus remains optimizing nutrient dosing, light geometry, and mixing. Industrial buyers expect guaranteed minimum biomass, not theoretical yields, so every change must pass through real-time monitoring and output analysis.

    Storage stability ranks high for animal nutrition and pigment buyers. Scenedesmus dimorphus preserves pigment concentration and protein quality longer than Haematococcus or Dunaliella. Our freeze-dried formats lock in pigments but retain flowability for automated systems, confirmed through field trials with both aquaculture and feed plant partners. Open-air exposure does not degrade these products as quickly as softer-celled options, reducing both spoilage rates and unexpected clumping in feed hoppers.

    Transparency in Manufacturing Benefits Everyone

    Working directly as a manufacturer, our approach leans on open feedback loops with users. If a batch comes in off-spec, adjustments in media formulation or harvest timing take top priority the next cycle. Wastewater clients want reliable biological oxygen demand reduction, so in-situ monitoring links back to our control room. Production teams in animal nutrition flag any color shift or texture change in finished feed, sparking immediate review upstream. This tight reporting means fewer surprises for the end user and brings down both downtime and warranty costs.

    We keep close partnerships with university researchers, sharing real-world process data, strain performance under actual field conditions, and scale-up parameters. In exchange, laboratory analysts test for unique metabolites, novel pigment ratios, and compare our output quality to published benchmarks. That feedback often drives month-to-month changes in tank temperature, aeration, and lighting practices, far more dynamic than single-spec trials. Our customers benefit directly, as every upgrade makes its way into the next batch shipped.

    Sustainability—From Talk to Concrete Action

    Sustainability plays out at the level of energy, water use, and emissions for any manufacturing plant. We upgraded to closed-loop recirculation and high-efficiency pumps throughout the primary and secondary stages. Running photobioreactors during colder months shifted our entire energy balance. Crop sequencing controls water usage, with minimal discharge thanks to constant in-plant reuse. Algae-based uptake of CO2 remains a key asset for adjacent processing plants, where captured flue gases aerate culture tanks and send real reductions straight to the emissions logbooks.

    From our field trials, Scenedesmus dimorphus not only fixes carbon but outperforms many species under low-nutrient and variable sunlight regimes. Large arrays of open ponds demand tough, stable species. This microalga copes well with seasonal swings, allowing continuous culture systems instead of regular restarts. For customers seeking green credentials, Scenedesmus delivers actual results without hidden chemistry or expensive filtration that often offsets environmental claims elsewhere.

    Waste avoidance motivates every design choice. By coordinating with regional water authorities, we ensure responsible nutrient capture, and recycle clarified water to the front end. Biomass not up to food or feed grade shifts to biogas digesters for energy recovery. Over recent years, incremental improvements in paddlewheel design, pond lining, and online sensor arrays reflect direct lessons learned at the production site, not ideas borrowed from unrelated species or industries.

    Key Takeaways from Direct Industry Practice

    Researchers and downstream users sometimes look for simple box scores between microalgae strains. As one of the few makers running full-size Scenedesmus dimorphus production for health products, animal nutrition, biofuels, and bioremediation, we see every variation in micronutrient profile, harvest rates, and pigment stability. The difference between a reliable, batch-traceable product and an inconsistent powder starts at the pond and runs clear through final packaging. Only through close supervision does each finished lot meet customer and regulator standards, with direct ties between the operator’s experience and your end product’s performance.

    Our number one tip for anyone sourcing microalgae: ask your supplier about real harvest stability, storage, and production logistics. No theoretical profile matches what comes from years of adjustments, trial runs, and feedback from users with skin in the game. Scenedesmus dimorphus, managed properly from seed stock to delivery, supports a range of real-world needs because it grows true, stays consistent, and stands up to practical use where other species struggle. That’s not hype or guesswork—it’s what comes after thousands of batches and millions of liters processed every year, directly by our team.

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