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Nicotinic Acid Hydrazide

    • Product Name Nicotinic Acid Hydrazide
    • Alias Isonicotinohydrazide
    • Einecs 204-656-2
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    729123

    Chemicalname Nicotinic Acid Hydrazide
    Casnumber 1453-82-3
    Molecularformula C6H7N3O
    Molecularweight 137.14 g/mol
    Appearance White to off-white crystalline powder
    Meltingpoint 163-165°C
    Solubility Soluble in water and ethanol
    Purity Typically ≥98%
    Storageconditions Store at room temperature, tightly closed, protected from light
    Synonyms Isonicotinic acid hydrazide, Isoniazid

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

    Packing & Storage
    Packing Nicotinic Acid Hydrazide, 100g, supplied in a sealed amber glass bottle with tamper-evident cap and clear hazard labeling.
    Shipping Nicotinic Acid Hydrazide should be shipped in tightly sealed containers, protected from light, moisture, and physical damage. Transport in compliance with local, national, and international regulations for hazardous chemicals. Ensure appropriate labeling and include safety documentation. Store upright, avoid extreme temperatures, and keep away from incompatible substances during shipping.
    Storage Nicotinic Acid Hydrazide should be stored in a tightly closed container, away from incompatible substances such as strong oxidizers and acids. Keep it in a cool, dry, and well-ventilated area, protected from moisture and direct sunlight. Store at room temperature, avoiding excessive heat or freezing. Properly label the storage container and ensure access is restricted to trained personnel only.
    Application of Nicotinic Acid Hydrazide

    Applications of Nicotinic Acid Hydrazide in Industrial Manufacturing

    As an established raw material producer, we supply Nicotinic Acid Hydrazide to a diverse chemical manufacturing base, supporting downstream applications driven by technical requirements and industry standards. Below are the primary industrial sectors where our product integrates directly into established production processes, with a focus on compliance, formulation ratios, process entry points, and specific finished goods.

    1. Pharmaceutical Intermediate Synthesis

    Nicotinic Acid Hydrazide functions as a core intermediate in the synthesis of anti-tuberculosis agents and various Active Pharmaceutical Ingredients (APIs), particularly within the production sequences for hydrazide-containing compounds. Downstream pharmaceutical manufacturers implement it during key condensation and cyclization reactions central to API development, where process consistency, purity, and compliance with international pharmacopoeias are governing factors. The precise ratio of Nicotinic Acid Hydrazide fluctuates based on molecular conversion requirements, with batch records adjusted for yield optimization and impurities control through repeated analytical QC steps.

    Industry compliance standards

    • USP, BP, and EP Monographs for API synthesis
    • ICH Q7 GMP for API Manufacturing
    • 21 CFR Part 210/211 for finished pharmaceuticals
    • ISO 9001:2015 Quality Management System

    Typical usage ratio

    • 0.5–1.5 molar equivalents relative to the target API precursor, with adjustments based on route efficiency and in-process assay results

    Downstream process integration

    • Incorporated during stagewise chemical condensation or cyclization steps, especially in closed reactor vessels under controlled temperature and pH; the point of addition aligns with purification and solvent exchange steps, monitored by HPLC or GC

    Final product types

    • Isonicotinyl hydrazide (Isoniazid)
    • Other first-line anti-tuberculosis APIs
    • Hydrazide derivatives for pharmaceutical research

    2. Agrochemical Active Ingredient Production

    Downstream agrochemical manufacturers use Nicotinic Acid Hydrazide as a precursor or functional group donor in the preparation of hydrazide-bearing herbicides and fungicides. Its reactivity offers a controllable mechanism in the synthesis of protective agents for cereals and vegetables, where process quality must align with international agrochemical registration and standard purity levels. Production lines manage the material through programmable batch reactors, with documentation to track sources and traceability across all product lots.

    Industry compliance standards

    • FAO/WHO Specifications for Plant Protection Products
    • OECD GLP (Good Laboratory Practice) Guidelines
    • REACH Registration EC No. 1907/2006 for Europe
    • ISO 9001:2015 for process documentation

    Typical usage ratio

    • 3–8% by weight of total reactants, adjusted for yield and toxicity profile per active ingredient formulation

    Downstream process integration

    • Introduced during heterocyclic ring closure or hydrazinolysis steps in multi-stage synthesis trains, often prior to separation and crystallization; feeding rate and reaction duration depend on desired substitution grade and isolation protocol

    Final product types

    • Hydrazide-based herbicides (e.g., isonicotinic acid hydrazide derivatives)
    • Systemic seed treatment fungicides
    • Intermediate bulk chemicals for plant growth regulation

    3. Specialty Dye and Pigment Manufacturing

    In the dye and pigment industry, Nicotinic Acid Hydrazide serves as a controlled reagent in the assembly of diazo and azo colorants, facilitating the introduction of reactive hydrazide groups that influence brightness and shade persistence. The substance enters downstream facilities in pre-weighed, sealed containers to minimize degradation and contamination risk, aligning with strict environmental and workplace hygiene protocols demanded by international standards.

    Industry compliance standards

    • OEKO-TEX® Standard 100 for textile dye chemicals
    • EN 71-3 for heavy metal content in pigments
    • ISO 14001 Environmental Management System
    • Local wastewater and hazard control regulations

    Typical usage ratio

    • 2–6% by weight in coupling or diazotization reactions, with level tailored for each dye class and target application density

    Downstream process integration

    • Added during colorant coupling or intermediate synthesis in jacketed batch or continuous flow reactors; material quantity calculated based on desired color intensity and pigment solubility, with frequent sampling for colorimetric analysis

    Final product types

    • Azo and azoic dyes for synthetic and natural fibers
    • Specialty pigments for industrial coatings
    • Reactive dye intermediates for textile finishing

    4. Analytical Reagent and Laboratory Chemical Markets

    Manufacturers producing analytical reagents formulate laboratory-grade Nicotinic Acid Hydrazide for use as a reducing agent and derivative-forming compound in various quantitative assays, including colorimetric methods for trace metal determination. Compliance focuses on purity, consistency, and batch homogeneity to achieve reproducible results in accredited analytical laboratories. Downstream processors perform controlled dissolution and filtration, with real-time analytics to meet stipulated laboratory standards.

    Industry compliance standards

    • ACS (American Chemical Society) Reagent Specifications
    • ISO/IEC 17025 for testing laboratories
    • European Pharmacopoeia General Reagents section
    • GLP documentation for laboratory reagents

    Typical usage ratio

    • Supplied as a standardized solid or 0.5–2% w/v stock solution, with precise concentration specified by individual test protocols

    Downstream process integration

    • Prepared as part of certified reagent kits or bulk bottles for technical use, with material dissolved and portioned under controlled temperature and inert atmosphere; packaged according to analytical batch control and traceability requirements

    Final product types

    • Trace metal detection kits (e.g., for iron or copper analysis)
    • Analytical standards and colorimetric reagent solutions
    • Derivatization agents for laboratory synthesis

    5. Corrosion Inhibitor Additive Manufacturing

    Nicotinic Acid Hydrazide enables corrosion inhibition in selected water treatment and boiler feed applications, where its hydrazide group scavenges dissolved oxygen and stabilizes metal surfaces. Downstream formulators dose it into inhibitor blends, with tight regulation of addition levels to comply with industrial water treatment and safety standards. The additive is introduced under inline agitation systems, with performance tracked through monitoring of dissolved oxygen uptake and corrosion rates in system pipelines and storage tanks.

    Industry compliance standards

    • ASTM D1384 and D1121 for corrosion inhibitors in water systems
    • ANSI/NSF Standard 60 for water treatment chemicals
    • ISO 9001:2015 Quality Management
    • Local environmental protection agency (EPA) wastewater discharge limits

    Typical usage ratio

    • 0.01–0.1% (100–1000 ppm) by weight in finished inhibitor concentrates, with dosage refined depending on system volume and target residual oxygen

    Downstream process integration

    • Dosed at the premix stage into water-based corrosion inhibitor blends, with subsequent filtration and blending prior to drum or tote filling; QC sampling ensures concentration within specification prior to dispatch

    Final product types

    • Industrial boiler and chiller corrosion inhibitor concentrates
    • Ready-to-use water treatment additives
    • Closed-loop system preservative solutions
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    Certification & Compliance
    More Introduction

    Nicotinic Acid Hydrazide: Innovation in Synthesis and Industrial Solutions

    Introduction: Direct From the Manufacturer

    Producing chemicals is more than following a recipe. Experience in the plant, working side by side with reactor operators, and managing unexpected upsets has shaped how we look at specialty compounds. Nicotinic Acid Hydrazide stands out in that landscape, with a production profile that reflects decades of practical refinement. For partners who search for reliability and robust quality, understanding the details behind how a chemical is made means understanding its true value.

    Manufacturing Mindset: Beyond Commodity Approaches

    Nicotinic Acid Hydrazide carries a reputation as a core intermediate in various organic syntheses, pharmaceutical research, and crop protection projects. Our experience with this product stretches back to when we first retooled our synthesis lines to meet exact customer specs year after year, weathering all the headaches of filtration bottlenecks and endpoint inconsistencies. Over time, this allowed us to adjust operating parameters and select optimal purification routes, bringing repeatable quality to each delivered batch.

    Understanding Nicotinic Acid Hydrazide: Chemistry and Features

    This compound, recognized chemically as the hydrazide derivative of nicotinic acid, appears as an off-white powder under our typical plant conditions. Our in-process controls aim for high purity—HPLC frequently shows >99% assay. Melting range holds steady in the specified window, and water content rarely drifts from tight moisture targets, which matters during transport and storage. The analytical picture looks simple, but getting there requires real-time process analytics and steady commitment to batch traceability.

    Our focus remains on excluding nitrosamine contaminants and minimizing residual solvents under ICH guidelines. Production covers small pilot samples up to multi-ton annual volumes. This lets us support both early research and stable commercial supply. In terms of packaging, we use lined fiber drums or HDPE kegs, and supply lot-specific CoAs with each shipment. Trace element fingerprints and residual impurity profiles stay consistent, which helps partners maintain their own regulatory compliance downstream.

    Key Uses: Practical Experience From Field To Formulation

    Clients tapping into our Nicotinic Acid Hydrazide supply lines come from across the pharmaceutical, agricultural, and fine chemical sectors. Drug discovery teams often request this intermediate when building pyrazine-based and pyridine-ring drugs. Its hydrazide group enables clean acylation and condensation, making it useful in the early exploratory stages of candidate screening as well as in upscaled medicinal chemistry.

    In crop science, the compound plays a strong supporting role during the synthesis of active ingredients for herbicidal and fungicidal products. Its chemical structure enables modification of specific functional groups, allowing for the preparation of targeted analogues only possible through a reliable source of high-purity hydrazide. In practice, agronomists and formulation chemists care not just about the theoretical purity, but about consistent handling and reproducibility batch after batch, so our technical services often field questions about application-specific controls: isomeric drift, trace nitrile content, and shelf stability under humid conditions.

    In dye and pigment production, Nicotinic Acid Hydrazide delivers a pathway to stable colors and robust pigment precursors. Research labs use it for synthesizing azo dyes or as a blocking agent in colorfastness studies, showing that even minor fluctuations in hydrazide reactivity can produce glaring artifacts in the end use. We learned to monitor storage time and minimize exposure to air and light, realizing those can shift product reactivity.

    Comparing With Other Hydrazides: Plant-Level Observations

    Those unfamiliar with hydrazide chemistry often group Nicotinic Acid Hydrazide with simple hydrazides like isonicotinic acid hydrazide, benzohydrazide, or various carbazides. The uniqueness of this compound lies in its balance between nucleophilic reactivity and ring stability, opening different synthetic doors. The pyridine-3-carboxylic acid backbone delivers different kinetics than phenyl or carbocyclic analogs.

    We have seen side-by-side screening where a customer’s process failed with common hydrazine derivatives, but proceeded smoothly with Nicotinic Acid Hydrazide. Its electron-withdrawing pyridine ring modulates both acylation and condensation outcomes, which allowed unexpected product crystallization and better overall purity of advanced intermediates. In manufacturing, this means a lower risk of byproduct formation and easier purification, sometimes eliminating the need for column chromatography at all.

    Quality & Traceability: Tackling Real-World Production Hurdles

    From a manufacturer’s eyes, downstream product recalls, complaints about solubility, or documentation issues all stem from subtle cracks at the production and logistical level. Over the years, we kept logs of what worked and what didn’t—from preheating reactor charges in winter months to introducing a drying train with molecular sieves. These steps tightened control on both physical parameters and impurity spec, ensuring fewer surprises for clients in formulation labs.

    Fifteen years ago, inconsistent water activity caused occasional caking and lot failures. Resolving this took on-site upgrades to vacuum-drying lines and better humidity controls before final packaging. Experience working side by side with batch consultants, regulatory teams, and even customers from the pharmaceutical sector helped us spot critical points where data gaps triggered reviews or shipment delays. Today, every lot leaves our gates with not just general batch records, but a full analytical fingerprint matching both international and regional guidelines.

    Safety and Environmental Commitment: Everyday Realities

    Producing active organic hydrazides like this requires more than signing off on an environmental impact report. Each step, from handling hydrazine feedstock to mitigating traces during washing, underwent dedicated process-safety reviews. Our team operates sealed transfer lines to minimize atmospheric exposure, and effluent treatment incorporates multiple stages for hydrazine decomposition. This offers environmental protection, but it also saves on long-term plant maintenance and regulatory headaches.

    Many firms ignore the subtle build-up of low-level residues, expecting waste treatment to handle the end-of-pipe. Our crew takes a process-integrated approach: closed handling of all concentrated hydrazide solutions, periodic personal monitoring, and PPE requirements for all direct operators. Not only does this foster workplace safety, but every year in operation has brought down accidental exposures to below-reporting levels. This is something only possible through incremental operational improvements, backed by real feedback from line supervisors and quality control inspectors.

    Supporting Clients: Communication and Solutions, Not Surprises

    Direct manufacturing gives us a front-row seat to the pinch points our customers face. Over time, we’ve had to troubleshoot shipment handling in temperature swings, clarify spec documentation for regulatory filings, and coordinate material customizations that no off-the-shelf reseller would attempt. An international pharma customer once faced a crop of batch failures. Tracing back, the issue was a micro-residue of metal catalysts in their off-the-shelf hydrazide sources—an artifact of vendors diverting old equipment lines. Our production runs avoided the same issue by sticking with zirconia-purified lines, ensuring clean profile and zero interference for downstream hydrolysis.

    Questions about solvent traces and nitrosamine risk rose sharply following recent regulatory scrutiny in EU and North American markets. With an eye on long-term customer trust, we keep a rolling program of upstream impurity control, solvent switch-outs, and dedicated campaign cleaning between product lines. Clients receive full access to our quality tracking data and are welcome for on-site audits or remote process tours—no closed doors, no surprises.

    Adapting to Regulatory and Market Shifts

    Nicotinic Acid Hydrazide’s landscape does not stand still. As the pharmaceutical sector matures and regulations tighten worldwide, process tolerances shrink. We learned to stay ahead of requirement changes through routine validation of both raw material supply and final product analytics. This includes constant review of accepted analytical methods, so we can rapidly implement solvent change protocols or integrate updated HPLC trace detection modes. On several occasions, raw material shortages forced us to qualify alternative vendors, but not before careful evaluation—matching not just impurity fingerprints but also logistical reliability.

    In the early 2020s, a major regional client faced new requirements for trace residuals and demanded full ICH Q3D compliance, including elemental impurity quantitation. By leveraging both in-house ICP-MS analytics and external validations, we maintained supply continuity and avoided project delays. These kinds of direct, flexible adaptations echo what seasoned partners have come to expect from a hands-on manufacturer, not from layers of intermediaries.

    Innovation: Value in Tailored Manufacturing

    True innovation in specialty chemicals rarely comes from a textbook. Adjustments in temperature profile, choice of filtration media, or solvent order can translate into less downtime or higher conversion rates. Our R&D and plant personnel routinely exchange data with technical buyers to refine existing syntheses and stretch downstream possibilities. Several customers have requested variant grades of Nicotinic Acid Hydrazide—some with controlled particle size, others with restricted endotoxin levels for sensitive pharmaceutical development. We develop each such customization only after direct pilot runs, because theoretical specs only tell half the story. In most cases, specific applications require robust support, not assumptions.

    For advanced research, we have demonstrated how minor shifts in hydrazide purity or trace organic profile can enhance yields in metal-catalyzed cross-coupling or in heterocycle-forming transformations. By speaking directly with research chemists and production process engineers at customer sites, we often spot hidden opportunities—years ago we realized a simple swap in drying temperature profile yielded higher reactivity in subsequent diazotization reactions. Such observations, hard-won through daily plant operations, drive incremental improvements that lab-scale resellers cannot replicate.

    Why Source Direct From Manufacturer: Trust Built On Experience

    Most clients want reliable results. That means starting with consistent inputs. As a primary manufacturer, we track everything from raw material logistics through final delivery, and welcome spot-checking by third-party auditors or client-side reviewers. History has shown that working closely with customers during transfer of analytical protocols, scaling up batch volume, or addressing unexpected delays, creates longer-term partnerships than chasing price competition alone.

    Every specification and process improvement that comes out of our plant reflects actual hands-on experience, not just compliance. Over the years, we learned that small tweaks during production make a world of difference to customers relying on Nicotinic Acid Hydrazide in critical or regulated end uses. With every batch, we stand behind the value of proven supply, real-world insights, and direct communication: no cut corners, no lost communication in endless broker chains. Direct access delivers peace of mind—and that trust, built on lived production experience, remains our strongest asset.

    Conclusion: Practical Solutions for Forward-Thinking Industries

    Every lot of Nicotinic Acid Hydrazide that leaves our facilities represents not only our technical expertise but the thousands of hands-on interventions, tweaks, and hard-won lessons that ensure quality and supply reliability. Pharmaceutical discovery, crop protection R&D, pigment manufacturing, and specialty chemical processing each benefit from the unique properties of this compound. Over the years, we have moved from small-scale chemistry to multi-national manufacturing, always putting process rigor and customer requirements above shortcuts.

    As industry needs evolve, so too does our approach. Through open communication, technical adaptability, and direct accountability, our production of Nicotinic Acid Hydrazide stands ready to support partners navigating both regulated and high-performance applications. Real manufacturing skill, carried out by dedicated teams, remains the difference between predictable success and supply headaches. This is the assurance direct manufacturers offer, and it is at the heart of our ongoing relationship with the chemical industry’s leaders and innovators.