Explore our high-efficiency microbial culture media components and liquid organic nitrogen fertilizer inputs crafted for global distributors.
Established in 2008 within the prestigious China (Beijing) Pilot Free Trade Zone Science and Technology Innovation Area, Beijing Hongrun Baoshun Technology Co., Ltd. has developed into a dominant force in high-tech biotechnology. We specialize in the integrated R&D, mass production, and global export of advanced microbial fermentation raw materials, amino acid complexes, and specialized liquid organic nitrogen inputs.
As a state-recognized "High-Tech Enterprise" and a designated "Zhongguancun High-Tech Enterprise," we have scaled our production lines using advanced Industry 4.0 automation. In 2018, we strategically established our massive manufacturing hub in Sichuan’s Qili Industrial Park (Langzhong), operating multiple independent production lines for animal and plant derivatives. This ensures complete trace-back compliance, massive batch consistency, and absolute safety for agricultural and pharmaceutical sectors.
An in-depth scientific analysis of peptide profiles, bio-availability, and carbon-to-nitrogen stabilization in modern agricultural soil biomes.
In modern agricultural biotechnology, nitrogen is the primary driver of vegetative growth, photosynthetic capacity, and overall yield. However, conventional chemical nitrogen sources (such as urea, ammonium nitrate, and anhydrous ammonia) are prone to severe environmental losses through leaching, denitrification, and volatilization. Moreover, synthetic nitrogen bypasses the organic microbiological cycles in the rhizosphere, often leading to soil degradation, reduced carbon content, and compromised crop immunity.
Liquid Organic Nitrogen, manufactured through state-of-the-art enzymatic hydrolysis, represents a paradigm shift. Rather than providing simple ionic nitrogen, these liquids deliver complex peptide packages, free amino acids, and essential growth factors. By utilizing plant-derived precursors (such as soybean flour, wheat gluten, and potato extract) and animal-derived matrices (such as beef infusion and fish peptones), our technical process creates liquid fertilizers that enhance both structural crop development and microbial biodiversity.
Unlike crude acid hydrolysis—which degrades essential amino acids like tryptophan and cystine while generating high salt levels—our factories employ cold-active and moderate-temperature multi-enzyme complexes. This targeted enzymatic cleavage splits complex proteins into defined molecular weight fractions: polypeptides, oligopeptides, and free amino acids. Short-chain peptides (2-3 amino acids) are rapidly absorbed by plant roots and leaf stomata, acting as direct signaling molecules that trigger defensive pathways and lateral root branching. The remaining polypeptides serve as long-term carbon and nitrogen sources for beneficial soil microbes, preventing nitrogen leaching and maintaining soil fertility over extended cultivation cycles.
| Parameters | Enzymatic Hydrolysis (Hongrun Baoshun Standard) | Standard Acid Hydrolysis (Industry Average) | Agronomic Impact |
|---|---|---|---|
| L-Amino Acid Integrity | 100% Preserved (Bio-active L-form) | Partially Racemized (D-form, non-absorbable) | Maximizes biological efficacy & crop energy savings. |
| Tryptophan Content | Fully Intact (>1.2%) | Destroyed by concentrated acids | Crucial precursor for Auxin (IAA) biosynthesis in roots. |
| Salinity (Cl- / Na+) | Extremely Low (<1.5%) | High (due to acid neutralization with NaOH) | Prevents osmotic stress and leaf burn during foliar sprays. |
| Carbon Co-Factor | Rich in soluble organic carbon (>18%) | Degraded carbon structure | Supports rhizosphere colonization by Bacillus and mycorrhizae. |
Our dual-line manufacturing capabilities allow us to segment and optimize plant-based and animal-based organic nitrogen liquid intermediates. Soy peptone and fermented soybean meal flour are highly rich in glutamic and aspartic acids, which enhance chlorophyll production and chelate microelements in the soil. On the other hand, zootechnical animal nitrogen bases like Beef Extract Paste and Fish Peptone provide rich growth factors, vitamins, and high lipid-protein ratios, which are essential for manufacturing microbial inoculants, bio-pesticides, and high-energy organic root stimulants.
Inside our high-capacity Sichuan Langzhong production facility, where technology meets strict quality control.
Separated Production Lines for Perfect Purity: We strictly operate separate, non-overlapping production lines for plant-derived and animal-derived raw materials. This setup eliminates any risk of cross-contamination, ensuring that our plant-derived items, like Wheat Peptone and Soy Peptone, remain 100% vegan-safe and allergen-compliant.
Advanced Molecular Filtration: Our factory is equipped with modern ultrafiltration systems that sort peptide sizes down to specific molecular weights (Daltons). By removing insoluble proteins and heavy impurities, we produce liquid organic nitrogen that is highly stable and soluble. This prevents nozzle blockages in industrial sprayers, pivot irrigation, and micro-drip setups.
Year-Round Supply & Storage: With a dedicated 20,000 m² warehouse, we maintain consistent raw material stocks. This setup insulates our international partners from seasonal price shifts, ensuring stable supply and reliable shipping times throughout the year.
How our organic nitrogen intermediates drive value across diverse biotech, feed, and agricultural sectors.
Our high-purity Beef Tryptone and Yeast Peptone are standard nutrients in microbial culture media, ensuring quick growth and biomass yields for research and diagnostics.
We supply high-grade raw ingredients with low endotoxin levels, supporting industrial-scale production of enzymes, vaccines, and therapeutic proteins.
Our plant-derived peptones serve as highly stable carbon-nitrogen bases, suitable for complex organic synthesis and large bioreactor applications.
Excellent nutrient sources for beneficial soil microbes. They stimulate PGPR (Plant Growth-Promoting Rhizobacteria) like Bacillus subtilis, improving crop defense.
Highly effective bio-stimulants that increase leaf greenness, improve crop recovery after frost or drought, and reduce reliance on synthetic minerals.
Our fermented soybean flour is rich in bioavailable peptides, promoting growth and strengthening immunity in aquaculture and livestock feeds.
From tailor-made molecular weights to dedicated logistical routes, we support your unique supply chain needs.
At Beijing Hongrun Baoshun Technology Co., Ltd., we understand that one size does not fit all. Different soil profiles, crop categories, and biological fermentation processes demand customized nutrient balances. We offer comprehensive OEM and ODM options to adjust key parameters of our liquid organic nitrogen intermediates:
Why distributors and biostimulant formulators in over 40 countries partner with us.
We provide full-cycle support, including pre-sales consulting, custom recipe trials, and laboratory compatibility checks to ensure optimal field performance.
We support personalized product development, tailoring nutrient levels, molecular weights, and packaging to match your regional regulations.
Our strict quality management system guarantees high purity, low ash content, and consistent physical properties in every batch.
With multiple distribution points and raw material stocks, we offer swift order processing and secure shipping routes globally.
Our large-scale Sichuan facility lowers production costs, allowing us to offer competitive pricing and flexible terms for long-term partners.
Our experienced export specialists ensure smooth, efficient, and transparent business communication, overcoming language barriers.
We stand behind our products with batch traceability, return policies, and agronomic support to help you achieve your sales targets.
Get professional advice on shelf life, mixing compatibility, crop applications, and order details.
Explore our highly refined organic peptones and botanical extracts, trusted by biotech laboratories worldwide.