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Ammonium Nickel(II) Sulfate Hexahydrate

    • Product Name Ammonium Nickel(II) Sulfate Hexahydrate
    • Alias Mohr's salt
    • Einecs 233-331-6
    • 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

    563895

    Chemical Name Ammonium Nickel(II) Sulfate Hexahydrate
    Chemical Formula (NH4)2Ni(SO4)2·6H2O
    Molar Mass 382.21 g/mol
    Appearance Green crystalline solid
    Solubility In Water Soluble
    Melting Point Approx. 70°C (decomposes)
    Density 1.97 g/cm³
    Cas Number 10101-97-0
    Ec Number 233-333-3
    Hazard Classification Harmful if swallowed, sensitizer (skin)
    Synonyms Nickel ammonium sulfate, Nickel diammonium sulfate hexahydrate
    Uses Laboratory reagent, electroplating, catalyst preparation

    As an accredited Ammonium Nickel(II) Sulfate Hexahydrate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 500g of Ammonium Nickel(II) Sulfate Hexahydrate is packaged in a sealed, labeled, amber glass bottle with safety and hazard information.
    Shipping **Shipping Description:** Ammonium Nickel(II) Sulfate Hexahydrate is shipped in tightly sealed containers, protected from moisture and physical damage. It should be labeled as a hazardous material—harmful, environmentally hazardous, and an irritant. Transport must comply with local, national, and international regulations, including UN 3077 for environmentally hazardous substances, solid, N.O.S.
    Storage Ammonium Nickel(II) Sulfate Hexahydrate should be stored in a tightly sealed, labeled container, away from incompatible substances such as strong acids and bases. Store in a cool, dry, well-ventilated area, protected from moisture and direct sunlight. Ensure storage areas are secure and readily accessible only to trained personnel. Avoid contact with food and drink, and keep away from heat sources.
    Application of Ammonium Nickel(II) Sulfate Hexahydrate

    Applications of Ammonium Nickel(II) Sulfate Hexahydrate in Industrial Manufacturing

    Ammonium Nickel(II) Sulfate Hexahydrate plays a critical role as a raw material in several precise industrial sectors. Its unique chemical structure and solubility support specialized downstream processes where controlled nickel ion supply is essential. Below, we detail recognized application fields, typical compliance frameworks, realistic formulation usage, integration points in production, and categories of end-use products.

    1. Electroplating for Metal Surface Finishing

    Nickel ammonium sulfate supports the electrolyte composition for nickel electroplating baths. Plating factories incorporate it to produce durable, corrosion-resistant coatings on substrates such as steel, copper alloys, and zinc die-castings. Experienced operators adjust adding methods and concentrations to ensure smooth, uniform deposit layers for both decorative and engineering-grade plating lines.

    Industry compliance standards

    • ISO 1456:2023 (Electroplated coatings of nickel)
    • ASTM B689 (Electrodeposited Nickel Coatings on Iron and Steel)
    • RoHS Directive (EU Restriction of Hazardous Substances)
    • QC in line with automotive, electronics, and appliance OEM plating specifications

    Typical usage ratio

    • 25–60 g/L in nickel bath solutions; adjusted for plating thickness and current density
    • Ammonium ion content maintained below 10 g/L to regulate bath pH and grain structure

    Downstream process integration

    • Dissolved in deionized water as part of make-up of nickel plating baths
    • Added post-bath filtration to correct metal ion concentration during production
    • Integrated with modifiers such as boric acid and brighteners according to client protocol

    Final product types

    • Nickel-plated fasteners and hardware
    • Automotive trim parts
    • Electronic connectors
    • Household appliance components

    2. Catalyst Manufacturing for Hydrogenation Processes

    Refinery and chemical catalyst producers use the hexahydrate as a precursor in the coprecipitation or impregnation of nickel-based catalysts. These catalysts drive key hydrogenation reactions in fine chemicals, edible oil processing, and pharmaceutical synthesis. Catalyst characteristics such as surface area, pore size, and metal distribution rely on precise control of metal salt source purity and batching.

    Industry compliance standards

    • ISO 45001:2018 (Occupational safety for chemical process)
    • Responsible Care program for hazardous chemical handling
    • FDA 21 CFR 173.310 (Boiler water additives, edible oil refining context)
    • Client-specific QC on final catalyst trace contaminants

    Typical usage ratio

    • Nickel charge calculated for 5–15% Ni by mass on alumina or silica carrier
    • Dose adjusted for carrier porosity and hydrogenation target conversion rate

    Downstream process integration

    • Dissolved in demineralized water for slurry or impregnating solution
    • Blended with carrier material, then dried and calcined to fix nickel oxide phase
    • Final reduction under hydrogen performed before packing

    Final product types

    • Hydrogenation catalysts for edible oil hardening
    • Catalysts for fine chemical synthesis reactors
    • Supported nickel catalysts for API intermediate manufacturing
    • Industrial gas purification catalyst beds

    3. Laboratory Preparation of Nickel Salts and Standards

    Certified laboratories and research institutions require high-purity nickel salts for analytical reference standards and chemical synthesis. The hexahydrate form assures accurate stoichiometry and facilitates dissolution in volumetric preparation. Proper labeling, traceability, and segregation protocols govern its use in environments requiring rigorous contamination control, such as pharmacopeial or environmental analysis labs.

    Industry compliance standards

    • ISO/IEC 17025:2017 (Testing and calibration labs requirements)
    • USP–NF for trace metal impurities (when preparing standards for pharmaceutical analysis)
    • EPA 40 CFR Part 136 (for environmental testing labs)
    • GLP (Good Laboratory Practice) record-keeping

    Typical usage ratio

    • Quantitative preparation according to titration or standard preparation protocols, e.g., 0.1–1.0 g per 100 mL, varying by analytical method
    • Mass corrected for moisture and purity as established by batch COA

    Downstream process integration

    • Directly weighed into glassware for solution standards
    • Dissolved using volumetric flasks under controlled temperature
    • Aliquoted for method calibration, spike recovery, or validation assays

    Final product types

    • Nickel standard solutions for AAS and ICP-OES
    • Certified reference materials
    • Analytical reagents for water and soil testing
    • Nickel-containing buffers for biochemical research

    4. Raw Material for Synthesis of Specialty Nickel Compounds

    Chemical manufacturers synthesize a range of value-added nickel compounds from the hexahydrate, including nickel oxide, carbonate, phosphate, and organometallics. Controlled precipitation, metathesis, or thermal treatment procedures rely on this salt as a consistent nickel feedstock. Quality assurance focuses on freedom from metallic and anionic interferences which can impair downstream compound yield and function.

    Industry compliance standards

    • REACH Regulation (EC) No 1907/2006 for chemical substance registration
    • ISO 9001:2015 quality management for specialty chemicals
    • Company-approved precursors for downstream product registration dossiers
    • Specific purity thresholds for industrial nickel intermediates

    Typical usage ratio

    • Stoichiometric dose calculated per theoretical reaction, generally 1.0–1.2 mol feed per reaction equivalent
    • Adjustment based on desired particle morphology and conversion efficiency

    Downstream process integration

    • Dissolved into aqueous media under controlled agitation
    • Reacted with base or anion sources (e.g., carbonate, ammonium phosphate)
    • Slurry filtered and washed; dried to constant weight before further use or blending

    Final product types

    • Nickel carbonate for ceramic and glass pigments
    • Nickel oxide for battery and catalyst industries
    • Nickel phosphate for electroceramics
    • Nickel chelates for agrochemical intermediates
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    Certification & Compliance
    More Introduction

    Ammonium Nickel(II) Sulfate Hexahydrate: Manufacturing Insights and Application Value

    Our Hands-On Experience With Ammonium Nickel(II) Sulfate Hexahydrate

    Ammonium Nickel(II) Sulfate Hexahydrate has become a daily part of life in our plant. Its blue-green crystalline form has a signature look that’s distinct from most inorganic salts. We produce this compound under controlled conditions, relying on carefully selected raw materials and a rigorous production process. By focusing on consistent purity, we’ve seen the finished product meet high standards not out of sheer luck, but through deliberate practice. Most of our clients depend on this reliability to avoid batch-to-batch surprises, whether they’re plating parts, refining catalysts, or formulating specialty reagents.

    Typical Model and Specifications

    We classify our main product as Ni(NH4)2(SO4)2·6H2O, which features a nickel content that meets industry benchmarks for electroplating and chemical synthesis. During every batch run, our in-house team tracks moisture content, crystal integrity, and particle size. Over the years, we’ve learned that subtle variances in particle structure can alter performance in industrial baths. Our specified nickel content lands between 14% and 14.3%, while the compound remains free-flowing thanks to optimized drying procedures and tight contamination controls. This focus on quality ensures downstream processes do not stall due to unexpected impurities.

    Where Ammonium Nickel(II) Sulfate Hexahydrate Gets Used

    Most operations know this compound as a staple in electroless nickel and nickel electroplating solutions. The nickel ion supply it provides is both predictable and effective, with ammonium ions favoring better bath stability. Plating specialists talk about the dream of bright, even, and durable deposits, and our product gives them the tools to build toward that goal. Each shipment reflects our long-standing attention to cleanliness and moisture control, so operators can trust the solution behaves as designed.

    A lot of our chemical partners buy Ammonium Nickel(II) Sulfate Hexahydrate not just for electroplating, but for its flexibility in laboratory synthesis, pigment manufacture, and analytical chemistry. In pigment production, the hydrated sulfate’s color and solubility make it straightforward to incorporate into water-based systems. The crystal integrity we maintain provides repeatable color results, something pigment blenders don’t take for granted. Laboratory technicians use our material as a standard for nickel assays and other nickel-based tests, appreciating the consistent assay values and absence of co-contaminants.

    Lessons Learned on Purity and Handling

    Through decades of manufacturing, we rarely see anyone overstate the importance of purity. Laboratory personnel report batch-to-batch drift in plating baths and pigments when trace impurities—especially iron, copper, and sodium—creep in. We run multiple filtration and washing steps to control these variables, not just out of habit, but out of direct feedback from customers who notice color or performance issues from minor contaminants. Our lab staff continue to fine-tune post-crystallization treatments based on detailed feedback from facilities with highly sensitive processes.

    Moisture uptake in this hexahydrate can sneak up in humid climates, leading to caking or changes in measured nickel concentrations. Several years ago, we switched to packaging solutions with superior moisture barriers after seeing field issues arise in tropical regions. Now, our Ammonium Nickel(II) Sulfate Hexahydrate reaches the end user with the caking risk minimized, and storage instructions factored into the product literature. Customers have since reported reduced handling losses and greater ease in batching processes that require weighed solids.

    Comparing Ammonium Nickel(II) Sulfate Hexahydrate With Alternative Nickel Compounds

    Not every use case calls for Ammonium Nickel(II) Sulfate Hexahydrate, and clients often compare it against nickel sulfate hexahydrate or nickel chloride. We’ve come to appreciate the advantages this salt provides, especially where bath stability ranks high in priority. Ammonium ions bring the added benefit of helping manage pH shifts, while pure nickel salts sometimes yield less consistent deposits or create more aggressive acidity in solution. Some companies turn to nickel chloride for faster dissolution and higher nickel concentrations, but at the price of extra corrosivity and less forgiving working conditions for operators.

    Where waste treatment or regulatory exposure drives the decision, we see the ammonium route chosen for its relatively straightforward end-of-process management. The ammonium by-products in some aquatic treatment loops work in the client’s favor, provided they keep an eye on downstream nitrogen controls. In contrast, nickel nitrate has a smaller following thanks to higher solubility but proves more difficult to handle on a large scale, especially when precise nitrate management becomes a safety or regulatory headache.

    The Role of Quality Control

    Over many years we’ve invested in analytical facilities, not just to monitor compliance, but to warn of even minor variations that could hit downstream results. Older methods used basic gravimetric analysis and relied on visual inspection, which left too much room for error. These days, each batch goes through ion chromatography, inductively coupled plasma (ICP) analysis, and advanced moisture measurement. We’ve seen measurable cost savings for customers when they sidestep waste, rework, or excessive bath corrections due to out-of-spec supplies. Some applications in high-value electronics and optics have zero tolerance for trace metals or dust, so our plant engineers now oversee custom filtration and washing based on these specialty requests.

    Environmental and Safety Considerations

    Our experience has taught us that Ammonium Nickel(II) Sulfate Hexahydrate needs respect in the workspace. Nickel compounds don’t belong in the lungs, nor do they play nicely with open waterways, and we learned early on that process enclosures and careful waste neutralization keep people and communities at less risk. Our operations team sets strict containment protocols for spills and splashes, drawing on real-world exposure data and regulatory mandates. Permitting agencies want zero surprises, and our documented traceability practices reflect that expectation.

    On the customer side, proper PPE usage—including gloves, goggles, and dust masks—reduces risk during handling and transfer. Our shipments now travel with clear labeling and up-to-date hazard communications, reflecting the lessons we’ve picked up through both compliance reviews and real safety incidents in the broader industry. Some users ask about greener chemistries. We keep our lines ready for future innovation, but most find that with rigorous process controls and responsible use, Ammonium Nickel(II) Sulfate Hexahydrate can slot into safety-compliant facility SOPs.

    Supply Chain Transparency and Raw Materials

    Years of experience have shown that trusted sources for raw nickel are worth the investment. Some low-cost alternatives come loaded with unlisted metal contaminants or trace organic materials that interfere with stable crystallization or cloud lab solutions. Our raw input selection includes checks for consistency in both composition and logistics reliability. This leans out unexpected delays from unplanned quality failures. The ammonium sulfate used in our process also receives scrutiny, since extraneous ions picked up from fertilizer-grade supplies can creep into the finished product and show up as unwelcome process problems for our customers.

    We choose to work with vendors who support batch-level traceability. Our clients in regulated industries, including those in electronics and pharmaceuticals, request documentation back to the original lot. They find value in knowing both what’s in their process and where it came from. We don’t cut corners to chase a lower sticker price; any savings vanish when quality failures result in downtime or recall. This long-view approach has become non-negotiable after too many stories from users burned by cut-rate resellers.

    Practical Handling Experience and User Feedback

    Working with this compound’s hexahydrate form, we’ve learned the hard way that even a “routine” product can surprise you. Our plant started drying trials more than a decade ago to address seasonal variations in humidity. Only through direct user feedback did we switch to lined drums and update our storage facilities to incorporate desiccant-based systems instead of basic plastic pallet covers. Customers reported the improvement in pourability and reduction in lost product weight to environmental absorption.

    Plating shop operators sometimes call us to discuss handling dust levels during solution preparation. Our in-house team addresses this by screening particles and optimizing the milling process during production, keeping the majority of particles within a user-friendly range. Such adjustments came straight from customer feedback. Automated systems like bag-emptying machines or robotic feeders have reduced manual exposure, but bulk-handling procedures still benefit from product granulation tweaks developed by collaborating with end-users.

    Ammonium Nickel(II) Sulfate Hexahydrate and Ongoing Technical Support

    Technical support has remained a backbone of our manufacturing philosophy. No two facilities operate the same way, and we understand site-specific tweaks often drive the difference between average and excellent outcomes. Over the years we’ve responded to requests on everything from setting up dosing protocols to troubleshooting bath chemistry drifting. Sometimes users ask for guidance on filtration steps that optimize their equipment uptime. We don’t rely on one-size-fits-all advice, but draw on practical experience and real chemistry to provide usable solutions.

    We support on-site testing where possible and keep close ties with service labs that run routine nickel and impurity checks for our frequent buyers. Over time, this ongoing dialogue results in fewer system upsets, more predictable maintenance cycles, and less wasted material. Continuous feedback from on-the-ground teams in industries ranging from automotive to specialty coatings helps us refine not just the product, but the advice we provide for future installations.

    Meeting Changing Industry and Regulatory Demands

    The world’s view of nickel chemicals keeps evolving. Over time, we’ve seen tightening environmental and workplace exposure limits for nickel and ammonium compounds. Our plant has adapted by setting up closed-loop recycling for process water and upgrading dust collection and air filtration on our packaging lines. Customers benefit because their finished goods come with a clearer environmental story and an easier compliance path. Regulatory documentation and product stewardship have shifted from back-room paperwork to a front-line priority.

    Several years back, we dedicated resources to help major users prepare for possible regulatory shifts. This involved providing full transparency around potential trace elements, crystal structure, and hydrate ratios. If a jurisdiction sets more aggressive limits for residual nickel in wastewater, customers already have data on hand to address new reporting or treatment challenges. These relationships underscore the value of transparency, and result in mutually beneficial compliance rather than last-minute scrambling.

    Long-Term Value Built Through Manufacturing Experience

    Nobody in our line of work discounts the importance of manufacturing know-how. Ammonium Nickel(II) Sulfate Hexahydrate offers plenty of opportunity for error—impure starts, inconsistent hydration, or overlooked storage issues can cause downtime, wasted product, or failed batches for our customers. Drawing on years of technical training, our plant team sticks to well-documented practices for each production run.

    Working with end users and responding to both expected and unexpected challenges, we’ve built up expertise that helps others avoid common traps. Our quality checks go deeper than what the bare standards prescribe, and we keep looking for ways to improve the handling and performance of the finished product. Instead of chasing only volume, our investment in better chemistry pays back in the form of long-term business and fewer headaches for plant managers, lab technicians, and purchasing teams alike.

    Why the Differences Matter

    Looking across the marketplace, Ammonium Nickel(II) Sulfate Hexahydrate delivers a particular performance profile that sets it apart from competitors and substitutes. Its combination of reliable nickel delivery, moderate handling requirements, and good solubility matches the varied needs of industrial plating shops and specialty chemical producers. The product’s structure supports stable solution chemistry and lends itself well to both lab and bulk plant settings, bridging the gap for users who don’t want to compromise on consistency or safety.

    We’ve witnessed numerous cases where customers switched products and discovered unexpected hurdles, including solubility challenges, color inconsistencies, or environmental headaches. Choosing the right chemical pays off. By sticking to a product we know from the inside out, and remaining dedicated to user satisfaction, we keep the production process smooth and outcomes predictable.

    Building Trust Through Direct Manufacturing Expertise

    What differentiates our Ammonium Nickel(II) Sulfate Hexahydrate stems from the direct accountability we maintain in the supply chain—from raw procurement through synthesis, to final packaging and user support. Every lot stands as a record of what skilled manufacturing, careful quality assurance, and industry listening can achieve. Over time, this approach results in more than just product sold: it generates lasting partnerships anchored by technical know-how, real feedback, and shared goals for quality, safety, and environmental responsibility.