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Research Areas
Hardcore technological innovations decode the essence of aroma; Green process innovations empower efficient production; Interdisciplinary integration leads to high-quality development of the aroma chemical industry.
The R&D Center: Driving Multidimensional Innovation in the Aroma Chemical Field
Precisely Decipher Molecular Structures to Lead the Future of Aroma Chemical Innovation
By leveraging quantum chemistry simulation and advanced sensory analytics, we integrate breakthrough core technologies to accurately elucidate the molecular structure-activity relationship and rationally design unique aroma chemical profiles. We deliver highly distinctive and stable aroma chemical solutions that support quality upgrades across food, daily chemical and other diversified application sectors.
Green Technology Empowers the Industry, Efficient Synthesis Sustains the Future
Guided by the principles of green chemistry, we redesign reaction pathways and process systems to enable large-scale aroma chemical manufacturing with reduced consumption, minimized emissions and enhanced product quality. We achieve an optimal balance between production efficiency and environmental responsibility, establishing a solid foundation for the sustainable development of the industry.
Cross-disciplinary Integration Drives Progress, Biomanufacturing Shapes the Future
Centering on cutting-edge fields such as synthetic biology and AI-enabled molecular design, we integrate cross-disciplinary technologies to establish a next-generation technological framework for aroma chemical manufacturing. We set new industry standards for natural-grade, high-safety fragrance ingredients and steer the sector toward continuous technological iteration and industry-wide upgrading.
Synthetic Biology: Shaping the Future of Aroma Materials
Addressing the challenges of traditional aroma chemicals — “resource-constrained natural extraction and environmentally challenged chemical synthesis”, Hangzhou Grascent breaks technological boundaries through synthetic biology.
Core Innovation: Redefining The Manufacturing Paradigm
At the heart of this innovation is the use of gene-editing and metabolic-regulation technologies to engineer microbial cells into programmable “aroma chemical-innovation factories”. These systems design synthetic pathways, produce target molecules with precision, and overcome the inherent complexity and instability of natural fragrance components. This approach also allows for the creation of rare and entirely new aroma precursors, providing the industry with imaginative and forward-thinking solutions.