Source 4-hydrazinobenzoic acid hydrochloride for Dyes, Pharmaceuticals, and Agrochemicals
Compare 30 listings for 4-hydrazinobenzoic acid hydrochloride from verified Chinese manufacturers. Review specifications like purity, molecular weight, and packaging options to find the right synthesis material intermediate for your production needs.
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Comprehensive Sourcing Guide
Strategic Sourcing Guide for 4-Hydrazinobenzoic Acid Hydrochloride
Procuring specialized chemical intermediates such as 4-hydrazinobenzoic acid hydrochloride requires a disciplined approach that balances technical precision with supply chain reliability. This guide is designed for B2B procurement professionals seeking to navigate the complexities of sourcing this specific compound. The focus remains on evidence-based evaluation, utilizing verified product attributes and industry standards to mitigate risk. Buyers must understand that while specific data points exist for certain product listings, generalizing these attributes across the entire market requires rigorous verification. The following sections outline the critical dimensions of sourcing this material, from technical specification validation to long-term supplier relationship management.
Technical Specification Validation and Physical Properties
The primary challenge in sourcing 4-hydrazinobenzoic acid hydrochloride lies in verifying the physical and chemical properties against the specific requirements of the end application. In the provided product data, we observe a diverse range of physical states and specifications that highlight the variability in the market. For instance, some listed products appear as a white powder with a purity standard of 99%, while others are described as liquids with different density and boiling point profiles. This discrepancy underscores the necessity for buyers to demand specific technical data sheets (TDS) that match the exact chemical identity of 4-hydrazinobenzoic acid hydrochloride, rather than accepting generic descriptions.
When evaluating technical specifications, buyers should look for precise values regarding melting point, boiling point, and density. The supplied data includes entries with melting points ranging from 5.8°C to 241°C and boiling points from 245°C to 294.3°C. Such a wide variance suggests that the listings may represent different chemical forms, hydrates, or entirely different compounds. A buyer must verify the CAS number, specifically 412327-07-2, to ensure the correct substance is being sourced. Furthermore, molecular weight is a critical identifier; observed values in the dataset range from 225.11 to 239.69, which further complicates the identification process without strict verification.
Storage conditions are equally critical for maintaining the integrity of the chemical. The data indicates storage requirements ranging from "Store Below +30°C" to "Under Inert Gas (Nitrogen) at 2-8 °C." These conflicting instructions imply that different formulations or purity grades have distinct stability profiles. Procurement teams must confirm the specific storage protocol required for the batch they intend to purchase to prevent degradation during transit and storage. Failure to adhere to the correct storage temperature or atmosphere can lead to significant quality loss, rendering the material unsuitable for synthesis.
Compliance, Certification, and Regulatory Standards
Navigating the regulatory landscape is a non-negotiable aspect of chemical procurement. The provided information mentions ISO 9001 certification as a potential attribute for some suppliers. While this is a recognized standard for quality management systems, it is a low-confidence background fact in this context and should not be assumed to apply to every listing without explicit verification. Buyers must treat certification claims as observations that require documentary proof rather than inherent guarantees.
In addition to ISO 9001, suppliers may hold other relevant certifications depending on the destination market and the intended use of the chemical. For pharmaceutical or high-purity industrial applications, additional standards such as GMP (Good Manufacturing Practice) or specific regional regulatory approvals may be necessary. The dataset mentions a "Quality: Refined" and "Quality: Industrial" classification, which serves as a rough indicator of the intended application tier. However, these terms are subjective and must be backed by concrete test results and compliance documentation.
Buyers should also verify the origin of the product. The data lists "China" and "Shandong" as origins. While this provides a geographical baseline, it does not guarantee the specific manufacturing facility's compliance with international safety or environmental regulations. Procurement teams must ensure that the supplier can provide evidence of compliance with local and international regulations regarding the handling, transport, and disposal of hazardous chemicals. The presence of a CAS number like 24589-77-3 in the data for other products serves as a reminder that CAS numbers are unique identifiers; buyers must ensure the CAS number for 4-hydrazinobenzoic acid hydrochloride is correctly cited in all compliance documents.
Cost Drivers and Pricing Dynamics
Understanding the cost structure of 4-hydrazinobenzoic acid hydrochloride is essential for budgeting and negotiation. The observed price range in the market data spans from $0.31 to $8000 USD. This extreme variance is not indicative of a single product's price fluctuation but rather reflects the inclusion of various product types, quantities, and purity levels within the search results. A price of $0.31 likely corresponds to a bulk industrial grade or a sample size, whereas $8000 may represent a specialized, high-purity batch or a small quantity of a complex synthesis intermediate.
Several factors drive the cost of this chemical. The primary driver is the purity level. The data shows standards ranging from 99% to specific packing standards like "200L/drum" or "25kg/drum," which often correlate with purity grades. Higher purity grades, such as those required for pharmaceutical synthesis, command a premium. Additionally, the packaging method influences cost; options like "25kg/Bag," "25kg/Drum," or "200L/Drum" involve different material and handling costs. Specialized packaging, such as inert gas storage or specific drum types, adds to the overall price.
Minimum Order Quantity (MOQ) is another significant cost driver. The observed MOQ range is 1 to 2000 units. A low MOQ of 1 unit is typically associated with sample testing or R&D purposes and carries a higher unit cost. Conversely, an MOQ of 2000 units suggests a bulk industrial transaction with a lower per-unit price. Buyers must align their order volume with their production needs to optimize costs. The supply type, noted as "OEM/ODM" in the data, also impacts pricing, as custom synthesis or private labeling often incurs additional fees compared to off-the-shelf procurement.
Typical Applications and Market Usage
The applications of 4-hydrazinobenzoic acid hydrochloride are diverse, spanning pharmaceuticals, agrochemicals, and materials science. The data identifies the product type as "Synthesis Material Intermediates," which confirms its role as a building block for more complex molecules. In the pharmaceutical sector, hydrazine derivatives are frequently used in the synthesis of heterocyclic compounds, which are essential components of various drugs. The specific properties of 4-hydrazinobenzoic acid hydrochloride, such as its solubility and reactivity, make it suitable for these complex synthesis pathways.
In the agrochemical industry, this compound may serve as an intermediate for the production of herbicides or fungicides. The "Industrial" quality designation in the data suggests its use in large-scale manufacturing processes where cost-effectiveness is paramount, provided the purity meets the specific formulation requirements. The presence of synonyms like "2-Dimethylaminoisopropyl Chloride Hydrochloride" in the data for other products highlights the importance of precise nomenclature; buyers must ensure they are sourcing the correct intermediate for their specific application, as similar names can refer to different chemical structures with vastly different properties.
The boiling point and melting point data, ranging widely in the provided list, indicate that the physical state of the intermediate can vary based on the specific synthesis route or formulation. This variability necessitates careful selection of the product to ensure compatibility with the buyer's existing manufacturing processes. For instance, a liquid intermediate might require different handling equipment compared to a powder, affecting the overall operational cost and safety protocols.
Supplier Evaluation and Selection Criteria
Selecting the right supplier is a critical step in the procurement process. The data indicates that customization is available, which is a valuable attribute for buyers with specific requirements. However, the presence of customization does not guarantee quality; it simply indicates the supplier's capability to adapt their product. Buyers should evaluate suppliers based on their ability to provide consistent quality, adherence to delivery schedules, and responsiveness to technical queries.
The supply type "OEM/ODM" suggests that suppliers are capable of custom manufacturing. This is beneficial for buyers needing specific packaging or purity levels. However, it also introduces complexity, as the buyer must clearly define their requirements to avoid misunderstandings. The data mentions delivery times of "3-5 days" for some products, but this should be treated as an observation rather than a guaranteed standard. Lead times can vary significantly based on order volume, raw material availability, and logistics.
When evaluating suppliers, buyers should request a comprehensive list of certifications and test reports. The mention of "ISO 9001" in the data serves as a benchmark for quality management, but buyers must verify that the specific supplier holds this certification and that it covers the relevant product lines. Additionally, the "Sample Package" options (100g, 1kg, 25g) indicate that suppliers are willing to provide samples for testing. This is a crucial step in the evaluation process, allowing buyers to verify the product's physical and chemical properties before committing to a large order.
Quality Control and Testing Protocols
Quality control is paramount when sourcing chemical intermediates. The data includes various quality indicators such as "Refined," "Industrial," and "99%" purity. These terms must be substantiated by analytical reports. Buyers should insist on receiving a Certificate of Analysis (CoA) for every batch, which should include detailed test results for purity, melting point, boiling point, density, and other relevant parameters.
The observed melting points and boiling points in the data vary significantly, highlighting the need for rigorous testing. A buyer must compare the CoA values against the expected specifications for 4-hydrazinobenzoic acid hydrochloride. Discrepancies in these values could indicate impurities, incorrect chemical identity, or degradation. The data also mentions "Burning Residue: ≤0.5%" and "Solubility: 139g/L," which are specific quality metrics that should be verified for the specific batch.
Furthermore, the storage conditions mentioned in the data, such as "Store Below +30°C" or "Under Inert Gas," must be strictly followed to maintain quality. Buyers should verify that the supplier's logistics and packaging ensure these conditions are maintained throughout the supply chain. The "Bulk Density" of 200kg/M3 and "Density" of 1.495g/Mlat25°C are additional parameters that can be used to verify the consistency of the product. Any deviation from these expected values should trigger a quality investigation.
Long-Term Procurement Considerations
Sourcing 4-hydrazinobenzoic acid hydrochloride is not a one-time transaction but part of a long-term supply chain strategy. Buyers should consider the stability of the supplier's production capabilities and their ability to scale with demand. The data shows a wide range of packing options, from small sample bags to large 200L drums, indicating that suppliers can accommodate different order sizes. However, buyers must ensure that the supplier can maintain consistent quality and delivery times as order volumes increase.
The "Customization" attribute suggests that suppliers can adapt to changing needs, which is valuable for long-term partnerships. Buyers should establish clear communication channels with suppliers to discuss future requirements, potential changes in specifications, and any new regulatory challenges. The "Supply Type: OEM/ODM" also implies a potential for deeper collaboration, where the supplier might become an extension of the buyer's R&D or production team.
Finally, buyers should monitor market trends and regulatory changes that could impact the availability or cost of the chemical. The wide price range and varying specifications observed in the data suggest a dynamic market. Staying informed about these changes will enable buyers to make proactive decisions regarding inventory management and supplier relationships. By focusing on technical verification, compliance, and strategic supplier evaluation, buyers can secure a reliable supply of 4-hydrazinobenzoic acid hydrochloride for their operations.
FAQs
What is the standard purity for 4-hydrazinobenzoic acid hydrochloride?
The standard purity is typically 99% based on observed product listings. Buyers must verify this against specific Certificates of Analysis for each batch, as quality grades vary between industrial and refined levels.
How should 4-hydrazinobenzoic acid hydrochloride be stored?
Storage requirements vary, with some batches needing temperatures below 30°C and others requiring inert gas at 2-8°C. Procurement teams must confirm the specific protocol for the purchased batch to prevent degradation.
Can suppliers provide customization for this chemical intermediate?
Yes, customization is available for many listed products. Buyers should confirm specific packaging or purity requirements with the supplier, as options include 25kg bags, drums, or specialized sample packages.
What is the typical delivery time for this compound?
Some suppliers offer a delivery time of 3-5 days for specific orders. This lead time is an observation and may vary based on order volume, raw material availability, and logistics conditions.
Which packaging options are available for 4-hydrazinobenzoic acid hydrochloride?
Common packaging includes 25kg bags, 25kg drums, and 200L drums. Buyers should select the option that matches their handling capabilities, noting that specialized packaging may influence the overall unit cost.
What is the minimum order quantity for this product?
The observed minimum order quantity ranges from 1 to 2000 units. Lower quantities often serve R&D or sampling purposes, while higher volumes typically align with bulk industrial procurement needs.