Center for the Environment, Indian Institute of Technology Guwahati, Guwahati, Assam, 781039, India.
Department of Chemical Engineering, Indian Institute of Technology Guwahati, Guwahati, Assam, 781039, India.
Environ Sci Pollut Res Int. 2019 Aug;26(24):25154-25166. doi: 10.1007/s11356-019-05677-y. Epub 2019 Jun 29.
This study evaluated an enhancement of simultaneous polycyclic aromatic hydrocarbon (PAH) biodegradation and lipid accumulation by Rhodococcus opacus using biochar derived cheaply from biomass gasification effluent. The chemical, physical, morphological, thermal, and magnetic properties of the cheaply derived biochar were initially characterized employing different techniques, which indicated that the material is easy to separate, recover, and reuse for further application. Batch experiments were carried out to study biochar-aided PAH biodegradation by R. opacus clearly demonstrating its positive effect on PAH biodegradation and lipid accumulation by the bacterium utilizing the synthetic media containing 2-, 3- or 4-ring PAH compounds, at an initial concentration in the range 50-200 mg L, along with 10% (w/v) inoculum. An enhancement in PAH biodegradation from 79.6 to 92.3%, 76.1 to 90.5%, 74.1 to 88.2%, and 71.6 to 82.3% for naphthalene, anthracene, phenanthrene, and fluoranthene, respectively, were attained with a corresponding lipid accumulation of 68.1%, 74.2%, 72.4%, and 63% (w/w) of cell dry weight (CDW). From contact angle measurements carried out in the study, enhancement in PAH biodegradation and lipid accumulation due to the biochar was attributed to an improved bioavailability of PAH to the degrading bacterium.
本研究评估了利用廉价的生物质气化废水衍生生物炭增强罗特氏菌(Rhodococcus opacus)同时降解多环芳烃(PAH)和积累脂质的效果。采用不同技术对廉价衍生生物炭的化学、物理、形态、热和磁特性进行了初步表征,表明该材料易于分离、回收和再用于进一步应用。通过批式实验研究了生物炭辅助罗特氏菌降解 PAH,清楚地表明生物炭对利用含有 2-、3-或 4-环 PAH 化合物的合成培养基中的 PAH 生物降解和脂质积累具有积极作用,初始浓度范围为 50-200mg/L,同时接种 10%(w/v)。生物炭使萘、蒽、菲和荧蒽的 PAH 生物降解率分别从 79.6%提高到 92.3%、76.1%提高到 90.5%、74.1%提高到 88.2%和 71.6%提高到 82.3%,细胞干重(CDW)相应的脂质积累率提高到 68.1%、74.2%、72.4%和 63%。从研究中进行的接触角测量来看,生物炭促进 PAH 生物降解和脂质积累是由于 PAH 对降解菌的生物利用度提高。