3-Pyridinecarboxylic acid magnesium salt

    • Product Name: 3-Pyridinecarboxylic acid magnesium salt
    • Chemical Name (IUPAC): magnesium; pyridine-3-carboxylate
    • CAS No.: 62052-87-7
    • Chemical Formula: C12H8MgN2O4
    • Form/Physical State: Solid
    • Factroy Site: No.968 Jiangshan Rd., Nantong ETDZ, Jiangsu, China
    • Price Inquiry: sales7@boxa-chem.com
    • Manufacturer: Nantong Acetic Acid Chemical Co., Ltd.
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    Specifications

    HS Code

    579221

    Product Name 3-Pyridinecarboxylic acid magnesium salt
    Synonyms Magnesium nicotinate
    Molecular Formula C12H8MgN2O4
    Molecular Weight 284.51 g/mol
    Cas Number 24234-29-1
    Appearance White to off-white powder
    Solubility Soluble in water
    Melting Point Decomposes before melting
    Storage Conditions Store in a cool, dry place
    Ph Value Neutral to slightly basic in solution
    Smiles C1=CC=CN=C1C(=O)[O-].[Mg+2].[C1=CC=CN=C1C(=O)[O-]]
    Purity Typically ≥98%
    Application Pharmaceutical intermediate, dietary supplement

    As an accredited 3-Pyridinecarboxylic acid magnesium salt factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing White, opaque plastic bottle containing 100 grams of 3-Pyridinecarboxylic acid magnesium salt, labeled clearly with hazard symbols and product details.
    Container Loading (20′ FCL) 20′ FCL container loads approximately 13 metric tons of 3-Pyridinecarboxylic acid magnesium salt, securely packed in 25 kg fiber drums.
    Shipping 3-Pyridinecarboxylic acid magnesium salt is shipped in tightly sealed containers to prevent moisture absorption and contamination. Packages comply with chemical safety regulations and are labeled with hazard information. Transport is carried out under ambient conditions unless otherwise specified, with proper documentation for safe and compliant delivery. Handle with standard chemical precautions.
    Storage **3-Pyridinecarboxylic acid magnesium salt** should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area. Keep it away from moisture, incompatible substances, and sources of ignition. Store at room temperature and avoid exposure to excessive heat or direct sunlight. Ensure proper labeling and secure storage to prevent unauthorized access, spills, or accidental contact.
    Shelf Life 3-Pyridinecarboxylic acid magnesium salt typically has a shelf life of 2-3 years when stored in a cool, dry, and sealed container.
    Application of 3-Pyridinecarboxylic acid magnesium salt

    Purity 98%: 3-Pyridinecarboxylic acid magnesium salt with a purity of 98% is used in pharmaceutical synthesis, where it ensures high-yield and consistent active ingredient production.

    Molecular weight 222.51 g/mol: 3-Pyridinecarboxylic acid magnesium salt with a molecular weight of 222.51 g/mol is used in analytical chemistry applications, where it provides accurate molecular quantification.

    Melting point 280°C: 3-Pyridinecarboxylic acid magnesium salt with a melting point of 280°C is used in high-temperature organic synthesis, where it enhances thermal stability during reactions.

    Particle size < 50 µm: 3-Pyridinecarboxylic acid magnesium salt with a particle size less than 50 µm is used in formulation of fine chemical blends, where it promotes homogeneous mixing and dispersion.

    Water solubility > 10 g/L: 3-Pyridinecarboxylic acid magnesium salt with water solubility greater than 10 g/L is used in aqueous drug formulation, where it enables rapid dissolution and bioavailability.

    Stability temperature up to 120°C: 3-Pyridinecarboxylic acid magnesium salt with stability temperature up to 120°C is used in industrial catalytic processes, where it maintains structural integrity under processing conditions.

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    Certification & Compliance
    More Introduction

    Introducing Our 3-Pyridinecarboxylic Acid Magnesium Salt

    A Manufacturer’s Perspective on Consistency, Value, and Real-World Application

    In the chemical field, results are tangible. Decades of hands-on work with 3-Pyridinecarboxylic acid magnesium salt, or magnesium nicotinate, have shaped our understanding of what matters to end-users and to our production team. This compound, often found in pure, white crystalline form, stands out not just because of molecular formula or claimed purity — but for the trust it builds through consistent, reproducible performance batch after batch.

    Understanding the Product: Model, Specifications, and Performance

    Our magnesium salt of 3-pyridinecarboxylic acid typically comes under the model code MGPA-0126. Over years of manufacturing, we have refined our crystallization and filtration routines to minimize batch variability. Tested magnesium content always sits at 10% minimum (by mass), with nicotinic acid component closely controlled. Water content can skew chemical reactivity, so we keep moisture well below 0.5% on finished lots. Granule size is neither too fine nor coarse, supporting both rapid dissolution for pharmaceutical formulators and reliable blending in nutritional premixes.

    Purity means more than a certificate in our lab. It means running HPLC and elemental analysis on every batch. Low heavy metals, constant pH in solution, and true solubility all shape the product’s repeat performance. Labs regularly come to us after seeing product caking, color variation, or inconsistent titration from other sources; years of refining our stepwise process have made those issues rare. Our model holds up for long-term storage, shipping, and in-line processing.

    Industry Applications and Unique Strengths

    Nicotinic acid magnesium salt sits at a crossroad between nutrition, medicine, and specialty synthesis. A major share of our demand comes from the dietary supplement sector, where magnesium’s bioavailability matters just as much as B3 content. Unlike blends of separate magnesium and vitamin B3 sources, a true salt formation allows for simultaneous absorption, which supports more precise dosing. Food technologists value the neutral, non-bitter taste and ease of mixing over unmodified pyridinecarboxylic acids or basic magnesium compounds. We’ve worked with companies scaling up drink mixes, tablets, and capsules — all seeing smoother handling and improved shelf stability.

    Our team also sees ongoing requests from pharmaceutical developers. Nicotinate salts play a role in cardiovascular support and metabolic health compounds, and our product consistently passes tests for pharmaceutical excipient status. Here, batch-to-batch consistency keeps validation headaches to a minimum; our documentation supports DMF submissions, and we’re experienced in producing the traceability data that auditors and regulators demand. Managing all synthesis steps in-house has helped us react quickly when partners need process tweaks or faster lead times.

    How This Product Differs From Similar Magnesium or Pyridinecarboxylates

    At first glance, magnesium salts seem interchangeable. Over years of conversations with pilot plants and R&D teams, though, we’ve seen how much hinges on subtle differences at the salt level. Basic magnesium carbonate and magnesium oxide both carry magnesium ions, but their bioavailability and reactivity diverge. The magnesium salt we offer here, with its organic acid ligand structure, dissolves much more rapidly and resists clumping — two factors critical in formulations where every second and every milligram can matter.

    There is also confusion between 3-pyridinecarboxylic acid magnesium salt and its close relatives — such as the calcium or sodium salts, or other positional pyridine isomers. The arrangement of the molecule affects everything from pH in solution to mouthfeel in consumer products. Our magnesium variant strikes a balance: gentle enough for nutrition applications, robust enough to serve as an intermediate for downstream synthesis in API work.

    Looking at real user experience, the biggest differentiator comes through in stability under both dry and humid storage. Competing products from less-rigorous manufacturing setups will sometimes brown or aggregate over several months, especially if shipped during summer. Our ongoing investment in dryer units and sealed packaging lines pays off. Batches sitting on our own shelves or in customer’s long-term trials show virtually no shift in assay, color, or moisture pickup — a claim not every brand can demonstrate on the record. Longstanding relationships with contract manufacturers confirm that, as their own clients become more demanding, these real-world differences become dealbreakers.

    Manufacturing Discipline: Beyond Brochure Numbers

    Contracts, audits, and batch testing can expose corners cut at the plant floor. We realized early on that the finest source material means nothing if processes aren’t built for repeatability. Our team purchases pharmaceutical-grade pyridinecarboxylic acid raw material, tracks certifications at every inbound stage, and logs each reaction batch in both digital and hand-written forms. Dating every drum and cross-checking maintenance cycles for centrifuges, reactors, and driers roots out possible contamination before it can creep into a finished lot.

    Some competitors run smaller, more manual batch processes and depend on one or two experts to set up key steps by “know-how.” That approach sometimes works — for a time. Long-term, though, what labs and R&D teams seek is not wizardry but transparency. Years back, we had a partner share why they switched: unpredictability in a food ingredient leads to rework, recalls, or downstream process stoppages. So, we adapted our process documentation, now running full traceability on all critical ingredients and publishing impurity profiles for every lot. This level of openness proved crucial not only for food and pharma clients locally, but also for global buyers with higher documentation requirements.

    Supporting Research and Practical Manufacturing Insights

    Publications and regulatory filings over the last decade support that true salt forms between B3 components and magnesium lead to higher absorption and better tolerability than non-chelated blends. We routinely collaborate with university departments conducting nutrient metabolism trials to confirm results beyond simple solubility tests: participants using our material show both the expected increase in serum magnesium and targeted B3 pathways, with fewer GI complaints than with many separate components. Not every “magnesium nicotinate” on the market shares a proven chelation bond or reliability across multiple studies.

    Quality in practice means adjusting to subtle variations in raw materials and environmental factors. Our technicians maintain humidity, monitor trace metals in incoming lots, and run side-by-side stability tests when vendor samples shift even slightly. These efforts ensure incoming feedstock never brings inpharmaceutically relevant impurities. Our lab chooses not to rely solely on certificate of analysis numbers; cross-lab verification and deep-dive analyses run weekly ensure reliability.

    Managing Real Risks and Building Responsible Supply Chains

    Raw materials can pose risks if sourced from volatile supply regions or unreliable partners. We have seen, time and time again, that a supply interruption — whether political, environmental, or logistical — cascades into lost batches, missed launches, and product recalls. To prevent this, we commit to multi-year supply contracts with verified partners, never sourcing from unvalidated suppliers regardless of attractive pricing. Our internal sourcing review committee meets quarterly, not just to compare costs but to script out “what-ifs” for every step of the chain.

    Trace metals and microbiological contaminants present another risk. Not all manufacturers invest in in-house testing for lead, arsenic, or cadmium — but our customers in the food and health sector demand accountability. Rigorous ICP-MS screening and microbiology checks allow detection before packaging, meaning product recalls or destruction of finished batches are exceedingly rare in our operation. Full lot records are available on request; if a batch falls short, it never ships, and we inform every client of corrective steps.

    Environmental and Regulatory Accountability

    Chemical manufacturing brings an inescapable footprint. Managing magnesium salt production responsibly requires water treatment, solvent recovery, byproduct handling, and careful emission tracking. Regulators visit our plant yearly to observe practices, review logs, and verify that best available techniques are in use. Instead of waiting for a compliance letter, we self-audit monthly. Many clients, especially those exporting finished foods or drugs, need clear evidence that their suppliers respect both environmental and workplace requirements.

    Over the years, our plant retrofits improved energy efficiency and lowered the emissions from oxiders and dryers. We treat reaction byproducts thoroughly, capturing and selling pyridine derivatives that would otherwise enter waste streams. Audit results published each year confirm our data aligns with standards set by local and international authorities. Clients appreciate real transparency, because as legislation tightens around the world, every ingredient must come with unquestioned provenance.

    Listening to Customer Feedback and Adapting to Industry Change

    No process remains static. Feedback from formulators, tableting operators, and researchers regularly leads us to adjust procedures. Years ago, users flagged insufficient flow in early batches; our engineering team retooled the drying step, eliminating clumping and caking. A few years later, requests for even tighter purity led us to replace legacy filters with new high-precision units. Each round of input translates directly to plant improvements, not just a revised datasheet or brochure.

    Recently, growing interest in plant-based nutrition led several food brands to seek non-animal magnesium sources and clear, traceable certificates. We responded with dedicated production campaigns, segregating batches and documenting every stage of the process for extended audits. Transparency about trace elements, allergens, and residual solvents earns us repeat business. Changing times bring new requirements from sports nutrition, vegan food, or clinical nutrition customers; keeping pace in the plant — not just on paper — lays the foundation for trust.

    Moving Forward: Investing in Why Details Matter

    We don’t claim perfection. Every manufacturing run brings a lesson, sometimes an unexpected challenge. Retooling for greater efficiency, sourcing better raw materials, or adapting to new regulatory definitions all require investment and humility. We continue to test new granulation agents and will invest in pilot-scale reactors allowing flexible response to spikes in volume demand, as global supply chains shift and emerging markets require higher-quality magnesium ingredients.

    Partnering with downstream users on joint R&D lets us spot specification mismatches early and resolve them quickly. We share sample quantities and welcome joint stability trials, since transparency improves outcomes. Over the last year, a handful of clients came to us with unique flow or compatibility requirements for next-generation delivery systems; our process engineering team created new grades and shared results openly, helping everyone learn in the process.

    Summary: Real Value in Every Lot

    Focusing entirely on production, not trading or distribution, gives us a depth of visibility into every gram of 3-pyridinecarboxylic acid magnesium salt we ship. Custom plant upgrades, persistent tracking of all raw inputs, exhaustive analytical routines — these measures cost time, but they cement confidence for customers ranging from supplement firms to pharmaceutical compounding professionals. Day by day, lot by lot, each specification and every small adjustment builds a stronger reputation for reliability.

    Our experience with this compound, from molecule to market, has shown that small details in sourcing, process controls, attention to purity, and response to real-world feedback form the backbone of dependable quality. This isn’t just about selling a chemical; it’s about supporting the production, public health, and trust placed in every product that relies on magnesium nicotinate built with care, commitment, and transparency.