Safinazlou Shahrzad, Abdin Ahmad Yaman, Tiganescu Eduard, Lilischkis Rainer, Schäfer Karl-Herbert, Fink-Straube Claudia, Nasim Muhammad Jawad, Jacob Claus
Division of Bioorganic Chemistry, School of Pharmacy, Saarland University, 66123 Saarbruecken, Germany.
Working Group Informatic and Microsystems Technology Department, University of Applied Sciences Kaiserslautern, Amerikastrasse 1, 66482 Kaiserslautern, Germany.
Materials (Basel). 2025 Jun 13;18(12):2784. doi: 10.3390/ma18122784.
Selenium sulfide, the active ingredient of traditional antidandruff shampoos, is industrially produced from selenium dioxide (SeO) and hydrogen sulfide (HS) under acidic conditions. This reaction can also be carried out with natural HS and HS generated by sulfate-reducing bacteria (SRB). These bacteria are robust and, by relying on their conventional growth medium, also thrive in "waste" materials, such as a mixture of cabbage juice and compost on the one side, and a mixture of spoiled milk and mineral water on the other. In these mixtures, SRB are able to utilize the DL-lactate and sulfate (SO) present naturally and produce up to 4.1 mM concentrations of HS in the gas phase above a standard culture medium. This gas subsequently escapes the fermentation vessel and can be collected and reacted with SeO in a separate compartment, where it yields, for instance, pure selenium sulfide, therefore avoiding the need for any cumbersome workup or purification procedures. Thus "harvesting" HS and similar (bio-)gases produced by the fermentation of organic waste materials by suitable microorganisms provides an elegant avenue to turn dirty waste into valuable clean chemical products of considerable industrial and pharmaceutical interest.
硫化硒是传统去屑洗发水的活性成分,在工业上是在酸性条件下由二氧化硒(SeO)和硫化氢(HS)生产的。该反应也可以用天然的HS以及由硫酸盐还原菌(SRB)产生的HS来进行。这些细菌生命力顽强,依靠其传统生长培养基,也能在“废料”中生长,比如一边是白菜汁和堆肥的混合物,另一边是变质牛奶和矿泉水的混合物。在这些混合物中,SRB能够利用天然存在的DL-乳酸和硫酸盐(SO),并在标准培养基上方的气相中产生高达4.1 mM浓度的HS。这种气体随后逸出发酵容器,可以收集起来并在单独的隔室中与SeO反应,例如在那里生成纯硫化硒,因此无需任何繁琐的后处理或纯化程序。因此,通过合适的微生物“收集”有机废料发酵产生的HS和类似的(生物)气体,为将肮脏的废料转化为具有相当工业和制药价值的有价值的清洁化学产品提供了一条优雅的途径。