Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing admin@sinochem-nanjing.com 3389378665@qq.com
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Cicerin

    • Product Name Cicerin
    • Alias Chickpea
    • Einecs 210-058-1
    • 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

    199661

    product_name Cicerin
    active_ingredient Bromhexine hydrochloride
    form Syrup
    use Expectorant
    indication Cough associated with respiratory tract disorders
    manufacturer Rameda
    strength 4 mg/5 ml
    packaging Bottle
    route_of_administration Oral
    shelf_life 2 years

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

    Packing & Storage
    Packing The packaging for Cicerin consists of a sealed amber glass bottle containing 5 grams of pure compound, labeled with clear safety information.
    Shipping Cicerin should be shipped in tightly sealed containers, protected from light and moisture. Transport under ambient temperature, in compliance with local regulations for non-hazardous chemicals. Ensure packaging prevents breakage or spillage. Include appropriate labeling and documentation. Handle with standard chemical safety procedures during transit to avoid contamination or degradation.
    Storage Cicerin should be stored in a tightly sealed container, protected from light and moisture. Keep it in a cool, dry place, ideally at room temperature and away from sources of heat and incompatible substances. Ensure the storage area is well-ventilated and complies with standard laboratory chemical safety practices to prevent degradation or contamination of the compound.
    Application of Cicerin

    Applications of Cicerin in Industrial Manufacturing

    Cicerin, extracted from chickpea sources, serves as a specialized isoflavonoid in select industrial sectors. As a direct manufacturer, we supply Cicerin with high purity and consistent batch quality, supporting demand across multiple advanced production lines. Detailed below are key downstream scenarios, including precise integration details, compliance standards, formulation ratios, and the main finished goods produced.

    1. Botanical Pharmaceutical Ingredient for Plant-Based Therapeutics

    Pharmaceutical manufacturers utilize Cicerin as an active component in plant-derived therapeutic preparations, especially for anti-inflammatory and antioxidant drugs. Production processes prioritize isoform stability and product bioavailability. Cicerin’s integration requires strict monitoring at every blending step, and its quantification must adhere to pharmacopeial assay standards. QC laboratories employ both HPLC and mass spectrometry for in-process and final release specifications, ensuring regulatory credibility for international distribution.

    Industry compliance standards

    • European Pharmacopoeia Monographs (Ph. Eur.)
    • Chinese Pharmacopoeia (ChP)
    • United States Pharmacopeia (USP), Section Herbal Medicines
    • Good Manufacturing Practice (ICH Q7, PIC/S GMP)

    Typical usage ratio

    • 0.15% – 2.5% by weight in active ingredient blends, depending on target dosage form and extraction yield; QC teams adjust based on analytical titer post-blending.

    Downstream process integration

    • Directly incorporated in the blending stage after base excipient selection; enters the formulation tank prior to granulation or tablet pressing for solid or liquid preparations.

    Final product types

    • Anti-inflammatory tablets
    • Phytotherapy capsules
    • Herbal injectable solutions
    • Standardized plant extract powders for export

    2. Natural Food Colorant and Functional Food Additive

    Cicerin supports food processing lines as a yellow-to-orange natural pigment and secondary bioactive additive. Formulators leverage its color foundation in ready-to-eat products while targeting nutritional claims linked to isoflavone content. Integrators must manage uniform dispersion in heat-processing and maintain color stability through shelf life. Batch records detail all additive controls and traceability, and QC teams routinely validate residual solvent levels and heavy metal compliance prior to market delivery.

    Industry compliance standards

    • Food Chemicals Codex (FCC)
    • EU Commission Regulation (EC) No 1333/2008 on Food Additives
    • GB 2760-2014 National Standards for Food Additives (China)
    • ISO 22000 Food Safety Management System

    Typical usage ratio

    • 50 – 200 mg/kg in processed foods; adjusted lower or higher depending on final color and active isoflavone claim threshold enforced by labeling rules.

    Downstream process integration

    • Added at the blending or premix stage for baked goods and beverages, or post-cooking step for sensitive matrix products to preserve pigment intensity and functional content.

    Final product types

    • Bakery coatings
    • Functional fruit beverages
    • Ready-to-eat sauces and spreads
    • Health snack bars

    3. Cosmetic Active for Emulsion-Based Skin Care Systems

    Cosmetic manufacturers integrate Cicerin as a functional isoflavone in anti-aging creams and serums, leveraging documented antioxidant and pigmentation modulation effects. Formulation chemists must ensure emulsifier compatibility, monitor pH stability, and verify substance integrity after high-shear mixing. Each production batch includes dedicated micro and heavy metal testing. Product release hinges on well-documented in-process controls, complying with domestic and multinational market regulations.

    Industry compliance standards

    • EU Cosmetic Regulation (EC) No 1223/2009
    • US FDA Cosmetic Ingredient Review (CIR)
    • China Hygienic Standard for Cosmetics (GB 7916-1987)
    • ISO 22716:2007 GMP for Cosmetics

    Typical usage ratio

    • 0.1% – 1% in the aqueous phase of emulsified products; manufacturing chemists adjust for viscosity, opacity, and total active load per finished weight.

    Downstream process integration

    • Incorporated at the secondary emulsification stage once oil and water phases reach balance; QC checks particle size distribution and batch homogeneity prior to cooling and filling.

    Final product types

    • Facial creams
    • Serum ampoules
    • Anti-spot emulsions
    • Hydrating masks

    4. Plant-Based Veterinary Supplements

    Producers of feed additives and veterinary supplements select Cicerin for its natural bioactivity in animal health formulations. The material’s standardized isoflavonoid profile enables precise inclusion in ruminant premixes and companion animal products. QA departments carefully validate input purity, absence of prohibited contaminants, and correct granule dispersion throughout feed processing and pelletizing lines. Veterinary regulatory bodies require detailed documentation of additive source and batch traceability.

    Industry compliance standards

    • EU Regulation (EC) No 1831/2003 on additives for animal nutrition
    • US FDA Center for Veterinary Medicine Guidance
    • China Veterinary Pharmacopoeia
    • FAMI-QS Quality System for Feed Additives

    Typical usage ratio

    • 0.01% – 0.5% by total premix weight for veterinary applications; nutritionists calibrate based on animal species, diet form, and targeted health claim.

    Downstream process integration

    • Blended as a dry powder with vitamin mineral premixes; enters the mixer before main feed extrusion or pelleting; post-blend sampling confirms uniformity prior to packing.

    Final product types

    • Ruminant health premixes
    • Functional pelleted feeds
    • Companion animal supplements
    • Livestock oral pastes

    5. Bioactive Ingredient for Functional Nutraceuticals

    Nutraceutical producers source Cicerin as a documented isoflavone to address consumer demand for hormone support and oxidative stress management. Industrial-scale blending incorporates precise ingredient dosing to comply with authorized label claims and batch-to-batch reproducibility. Process engineers oversee encapsulation conditions and monitor particle dispersion to achieve controlled-release properties, while product safety relies on certified heavy metal and pesticide residue screening.

    Industry compliance standards

    • US FDA Dietary Supplement Health and Education Act (DSHEA)
    • EU EFSA Novel Food Regulation (EU) 2015/2283
    • China Food and Drug Administration Health Food Registration
    • ISO 22000:2018 for dietary supplement production

    Typical usage ratio

    • 5 – 40 mg per capsule, or 0.05% – 0.5% of finished product weight; range set by clinical documentation and regional regulation for daily intake limits.

    Downstream process integration

    • Introduced during premix and granulation steps; enters direct-encapsulation or tablet line with integration logs for batch tracing and full lot release testing.

    Final product types

    • Dietary supplement tablets
    • Enteric-coated capsules
    • Functional nutraceutical powders
    • Single-ingredient softgels
    Free Quote

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    Certification & Compliance
    More Introduction

    Cicerin – Experience in Reliable Chemical Manufacturing

    Understanding Cicerin at the Source

    No amount of clever packaging can make up for the feel of high-quality Cicerin coming off the reactor. Chemical plants excel at translating abstract chemistry into real-world solutions, and Cicerin remains a remarkable example of this. Our Cicerin, produced through decades-honed processes, finds its calling in select applications for pharmaceuticals, food-grade additives, and specialty intermediates. Chemical production never comes down to simply batching up raw materials; we have found that subtle process controls and clean, steady equipment lines yield purer, more consistent lots. The raw data from our in-process checks, and what seasoned technicians see in the reactor glass, say more than any datasheet. Our modern analytical setup—much of it built in-house—lets us know long before packaging whether a batch meets our spec.

    Our primary offering for Cicerin remains the Cicerin MX-157 model. This model draws on iterative adjustments first made for clients demanding precision in pharmaceutical synthesis. Through dozens of campaigns and frequent consultations with frontline process workers, we have shaped a product that maintains clarity, odor profile, solubility, and particle size characteristics that end-users have called out as vital to their upstream and downstream steps. Customers in regulated markets care most about batch reliability and actual laboratory validation, not promises about “feature sets.” Consistent handling properties and analytical stability keep manufacturers coming back for Cicerin MX-157.

    Practical Experience: What Sets Our Cicerin Apart

    Companies in our space rarely aim for “unique” chemical products. Instead, the fight is for repeatability, process control, and data transparency. Every kilo of our Cicerin MX-157 tells the story of persistent process adjustment and thorough lot validation. Thermal behavior, particle dispersibility, and contamination checkpoints—those don’t appear by accident. Only careful process reviews and observation reveal subtle drifts, like when minute shifts in solvent recovery, not a glossy plant brochure, trigger an unwanted trace impurity. Over the years, we have noticed how these sorts of issues can set competitors apart. Not every supplier maintains the dedication or in-house instrumentation to spot these at the right time.

    Cicerin’s popularity traces to its stable behavior during storage and its neutral sensory impact on downstream products. A leading flavorings manufacturer once explained that their entire R&D campaign would stall every time they encountered slight batch-to-batch deviations from other Cicerin sources. Only after months of troubleshooting did they realize variations in trace moisture, invisible on the supplier’s spec sheets, were spoiling heat-sensitive flavor compounds in their process. Since switching to our Cicerin MX-157, their troubleshooting records tell a different story—one without failed blends. Feedback like this keeps production teams focused not just on analytical figures, but on how the material genuinely performs under real industry conditions.

    Specifications from Firsthand Processing

    Specification sheets mean nothing until confirmed in real-life operations. Our team has handled countless Cicerin batches through dry, wet, and blended processing. We rely on hands-on checks—flow properties in mixers, filter clogging behavior on pilot lines, the response to routine clean-outs. For our Cicerin MX-157, the specs align with what technicians want to see in the plant: controlled moisture content, stable melting profile, and rapid dissolution where it counts. The bulk density and particle size distribution come straight from blending bays, where consistency matters more than creative descriptive language.

    Repeated use in pilot plants has shown Cicerin MX-157’s resistance to caking in humid environments and its persistence in process lines after long holding periods. We log and respond to first-shift operator reports about flow stoppages or discoloration the same day they come in. Years ago, when a large food plant reported occasional minor off-odors in their product, we traced it to micro-variations in the upstream filtration process, ultimately reformulating our equipment cleaning protocols. Direct field experience drove this adjustment, not a theoretical model.

    The Value of In-House Quality Control

    No product like Cicerin can claim consistency without integrated quality control. In our plant, in-house technicians run multi-stage assays before any batch release. Customers often request documentation of this scrutiny, but the real proof comes in failed batches—and what happens to them. On several occasions, minor variances in acidity or organic residue have led our internal QC to halt shipment immediately. Everyday vigilance, not paperwork or promises, underpins our reputation.

    Unlike distributors or bulk traders, the team who run our reactors and drying ovens are the same people reviewing short-term trends in moisture, color, or byproduct formation. Lab techs alert the plant crew as soon as micro-analytical deviations appear. Sometimes, foreign suppliers claim tighter specs but fail to stand by them after an incident. We keep daily logs down to the smallest deviation and adjust reagents or process variables at the first sign of drift. Quality results from boots-on-the-floor involvement, not remote declarations.

    Cicerin in Application—Drawing Lessons from End-Use

    There is no separating a chemical’s identity from the environments where it lives and works. Some customers have sent technicians to our plant to watch cleaning, packaging, and sampling in real time. There they see the discipline and the hands-on steps behind every kilogram, a far different sight from what broker presentations can offer. Cicerin’s modern uses span food stabilization, pharmaceutical synthesis, and specialty polymer modification. The key differentiator is not just purity but physical handling: how the product resists clumping under pressure, dissolves in solution, or interacts during blending.

    One pharmaceutical partner struggled for years with premature product discoloration, traced back to minute trace contaminants in a competitor’s Cicerin. We worked openly with their process engineers, test-running adjusted purification steps at both plants. After several months, both QC teams confirmed that the outcomes were stable, and the downstream discoloration issue disappeared. Such engagements require the confidence to adjust and invest when real-world problems turn up.

    Meeting Regulatory and Customer Expectations

    As regulatory scrutiny intensifies year after year, our plant meets standards head-on, instead of chasing shifting targets. Internal auditors regularly run unannounced spot checks. Government inspectors have full access to our production history and line audits. Only full transparency reassures food and pharma buyers. Customers value not just certifications on paper, but consistent, explainable runs, uninterrupted traceability, and a willingness to hand over raw data from our controls.

    Years spent in audit rooms and process walk-throughs have taught us that no claim matters unless it stands up to a visiting regulator pointing to a specific carrier, pipe, or QC logbook. On more than one occasion, auditors have learned more from quick interviews with our plant crew than from reviewing certificates alone. Every specification aligns with test results, not public relations statements. Our plant response logs and recall drills exist in plain sight and form the backbone of our continued approvals.

    How Cicerin Differs from Competitors—Lessons from the Trenches

    Some imported Cicerin brands tout slightly narrower analytical specs, yet regular customers have shared repeated instances of unexpected trace impurities or supply interruptions. Once, during a global logistics crunch, a buyer switched to a lower-cost Cicerin source and ended up struggling with persistent fines and visible clumping—issues that delayed their own deliveries to critical clients. The cost of lost production time and customer complaints far outweighed the unit price savings.

    Our recipe for change has been persistent process tuning and genuine partnership with plant operators, not grand promises. We adjust drying curves and filter cycles based on direct operator reports. Every time we tune a parameter, line supervisors revalidate product in parallel with batch analytics. We have noticed that non-producer suppliers can only guess at the right process tweaks and miss the subtle, plant-level problems that surface during week-long continuous runs. By keeping production, QC, and logistics under one roof, our team identifies and solves minor drifts before they become larger setbacks.

    Facing Product Challenges—Producer’s Perspective

    Customers sometimes face issues like clumping, loss of flow, or inconsistent particle sizes, often due to shifts in ambient conditions or unplanned process stops. Over the years, our team has learned how changes in upstream water removal, or minor wear on grinders, influence Cicerin MX-157 behavior. That hands-on knowledge cannot be replaced by mere certificate management. We have made constant investments in real-time particle sizing, on-the-line moisture monitoring, and frequent retraining of the drying crew to keep every box to spec.

    Global events and natural disasters test every chemical producer’s stability. We keep multi-week supply buffers and dual sourcing for critical raw inputs. During recent logistic hiccups overseas, our direct contracts with local transporters, deep plant inventories, and rapid-impact response teams allowed us to avoid missed deliveries. Experience has proven that a robust supply chain grows from repeated cycles of pressure and adaptation.

    Talking About Sustainability—Doing, Not Just Talking

    Environmental pressure keeps all of us on our toes. Green chemistry has shaped every revamp in our Cicerin process. Solvent loops run closed whenever possible. Heat from high-temperature stages gets redirected to low-temperature preps, capping energy wastage. Old packaging lines made of legacy plastics have gradually disappeared, replaced by recyclable containers. Technicians feel real ownership here—regularly brainstorming ways to trim solvent waste or trial biodegradable liners.

    Instead of publicizing grand sustainability “missions,” we stick to concrete details: safe waste handling, meticulous pre-treatment, thick local roots for raw sourcing, and annual waste reduction targets. By aligning plant teams around what works and what doesn’t, Cicerin MX-157 earns its place not just as a reliable performer but as a material that reflects industry responsibility. Auditors regularly verify our disposal, emissions, and resource use. We work with customers to support sustainability reporting, providing detailed material traceability for every shipment.

    Customer Partnerships—Collaboration Over Transactions

    Years of partnership have borne out this fact: buyers want more than paperwork; they want shared solutions to production hiccups, ongoing technical support, and direct access to the people who make the product. Some customers work with us on trials of Cicerin MX-157 batches tailored for new applications. They get plant access, open views into our process tweaks, and a say in how we modify parameters. Such relationships, built over repeat orders and hundreds of hours of discussion, drive us to improve batch visibility, technical documentation, and complaint response times.

    One food manufacturing partner faced regular seasonal challenges with product shelf life, which they initially believed linked to their own process. Only after our technical teams visited their site and shared extended stability data from our Cicerin were they able to pinpoint the culprit: airborne contamination in their facility during peak humidity. Our labs ran side-by-side comparative analyses, confirming the integrity of our Cicerin and helping identify process steps they could change on their own lines. The resulting improvements boosted output and cut downtime. This kind of collaboration—driven by experience and mutual interest, not canned solutions—remains our standard.

    The Real Value—Consistency from the Plant Floor

    Production consistency rarely results from lucky runs. Chemical plants that maintain high uptime and reliable output count on dogged line maintenance, tightness in raw input stockpiles, and staff who know both chemistry and machinery. For our Cicerin MX-157 model, keeping to spec means round-the-clock monitoring, transparent deviation logs, and constant hands-on workshops to upskill crew members. This approach has weathered every regulatory, economic, and resource-related challenge. We have learned that every deviation traced and every issue corrected at the source builds trust where it matters most—on your shop floor, not just in the boardrooms.

    So much of Cicerin’s day-to-day reality comes down to dedicated people: shift supervisors who catch early crystallization, techs who calibrate sensors mid-run, plant engineers who identify energy losses and flag them for retrofit. Every end user benefits from these accumulated insights. Over years of operation, feedback and real-world results have taught us that strong partnerships, process transparency, and proactive change at the plant level set the foundation not just for trustworthy Cicerin, but for every improvement that follows. Customers looking for more than generic chemical intermediates turn to us because our experience is practical, focused, and tailored—delivered from the heart of chemical production.