生物高聚物
生物转化
聚羟基丁酸酯
自养
商品化学品
发酵
二氧化碳
生化工程
化学
羟基烷酸
工业生物技术
碳源
制浆造纸工业
食品科学
聚合物
细菌
生物
有机化学
生物化学
工程类
催化作用
遗传学
作者
Linsey Garcia‐Gonzalez,Heleen De Wever
标识
DOI:10.1093/femsle/fnx196
摘要
As one of the key enabling technologies, industrial biotechnology has a high potential to tackle harmful CO2 emissions and to turn CO2 into a valuable commodity. So far, experimental work mainly focused on the bioconversion of pure CO2 to chemicals and plastics and little is known about the tolerance of the bioprocesses to the presence of impurities. This work is the first to investigate the impact of real CO2-rich off-gases on autotrophic production of polyhydroxybutyrate. To this end, two-phase heterotrophic-autotrophic fermentation experiments were set up, consisting of heterothrophic cell mass growth using glucose as substrate followed by autotrophic biopolymer production using either pure synthetic CO2 or industrial off-gases sampled at two point sources. The use of real off-gases did not affect the bacterial performance. High biopolymer content (up to 73%) and productivities (up to 0.227 g/lh) were obtained. Characterisation of the polymers showed that all biopolymers had similar properties, independent of the CO2 source. Moreover, the CO2-derived biopolymers' properties were comparable to commercial ones and biopolymers reported in literature, which are all produced from organic carbon sources.
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