Zhang Bofan, Zhang Liang, Zhang Xiuxia
College of Chemical Engineering, China University of Petroleum (East China) Qingdao 266580 China
RSC Adv. 2019 Oct 31;9(60):35304-35311. doi: 10.1039/c9ra06726d. eCollection 2019 Oct 28.
Biochar is investigated experimentally as a new highly effective amendment to remediate contaminated soil. A crucial consideration is the influence of biochar on the bioremediation of soil polluted with total petroleum hydrocarbons (TPHs), and in particular, the use of biochar as a bacteria immobilization carrier with a synergistic effect of absorption and degradation. Therefore, we studied the ability of petroleum-degrading bacteria immobilized on biochar, free bacteria, and biochar alone on the removal of TPHs in soil using gravimetric analysis and gas chromatography-mass spectrometry. After 60 days of remediation, the strategy involving immobilized bacteria on biochar was more effective than other treatments in reducing the contents of TPHs and -alkanes with C, which showed the shortest half-life and highest biodegradation efficiency; variations in the features of enzymatic activities and microbial respiration indicated that the biochar treatment improved not only the soil fertilizer and carbon storage, but the immobilization greatly affected both the physicochemical properties of soil and bacterial activities. Moreover, the bacterial population diversity and bioavailability of hydrocarbons were promoted by the inputs of the combination of biochar and petroleum-degrading bacteria. Overall, our results highlight the potential of applying immobilized microorganisms on biochar for accelerating the biodegradation of petroleum and maintaining the balance of the soil ecosystem, which may be ascribed to the synergistic effect of biostimulation and bioaugmentation.
生物炭作为一种新型高效的修复剂用于修复污染土壤,已开展了相关实验研究。一个关键的考量因素是生物炭对被总石油烃(TPHs)污染土壤的生物修复的影响,特别是将生物炭用作细菌固定化载体,发挥吸附与降解的协同作用。因此,我们采用重量分析法和气相色谱 - 质谱联用技术,研究了固定在生物炭上的石油降解菌、游离细菌以及单独的生物炭对土壤中TPHs去除的能力。修复60天后,生物炭固定化细菌的策略在降低TPHs和C链烷烃含量方面比其他处理更有效,其半衰期最短,生物降解效率最高;酶活性和微生物呼吸特征的变化表明,生物炭处理不仅改善了土壤肥力和碳储存,而且固定化极大地影响了土壤的物理化学性质和细菌活性。此外,生物炭与石油降解菌组合的投入促进了细菌种群多样性和烃类的生物可利用性。总体而言,我们的研究结果凸显了将固定化微生物应用于生物炭以加速石油生物降解和维持土壤生态系统平衡的潜力,这可能归因于生物刺激和生物强化的协同效应。