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研究将花卉废弃物作为可持续原料生产生物活性化合物的潜力。

Study of the potential for to produce bioactive compounds from flower waste as a sustainable feedstock.

作者信息

Jennings Sarah, Craig Sean, Bryan Samantha, Shivaprasad Parimala

机构信息

Department of Chemical and Environmental Engineering, University of Nottingham, Nottingham, NG7 2RD, United Kingdom.

出版信息

Sustain Chem Clim Action. 2025 Jun;6:None. doi: 10.1016/j.scca.2025.100084.

Abstract

Agricultural and horticultural industries across the globe lead to vast quantities of waste, often disposed of indiscriminately both at the point of production and by consumers. These wastes can lead to pollution of local environments and eco-systems, such as those in India affected by the 800 thousand tonnes of floral waste annually. Floral waste is rich in compounds useful in the personal care and pharmaceutical industries, such as terpenoids and other phenolics. These compounds are synthesised and modified by many microorganisms, including the microorganisms responsible for many anti-cancer and antibiotic drugs used today. species are also known to produce lignocellulolytic enzymes, leading to the degradation of plant matter. This study aims to explore whether can utilise a semi-solid flower media whilst producing industrially useful bioactive compounds from natural floral compounds. Blended flowers in ISP4 media were inoculated with M145 and sampled regularly over a 6-week aerobic incubation period. A range of bioactive compounds were identified through GC-MS analysis of the aqueous media, providing evidence that under the correct conditions floral waste has potential as a sustainable feedstock.

摘要

全球的农业和园艺产业产生了大量废物,这些废物在生产点和消费者手中常常被随意丢弃。这些废物会导致当地环境和生态系统受到污染,比如印度每年受80万吨花卉废物影响的地区。花卉废物富含在个人护理和制药行业有用的化合物,如萜类化合物和其他酚类物质。这些化合物由许多微生物合成和修饰,包括当今许多抗癌和抗生素药物所涉及的微生物。已知这些物种还会产生木质纤维素分解酶,导致植物物质降解。本研究旨在探讨[具体微生物名称未给出]能否利用半固体花卉培养基,同时从天然花卉化合物中生产出具有工业用途的生物活性化合物。在ISP4培养基中混合的花卉接种了[具体微生物名称未给出]M145,并在为期6周的需氧培养期内定期取样。通过对水相培养基的气相色谱 - 质谱分析鉴定出一系列生物活性化合物,这证明在正确条件下花卉废物有潜力成为可持续的原料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce53/12216961/8729f66b4e63/ga1.jpg

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