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生物炭性质对页岩气田污染土壤生物修复的影响。

Effects of biochar properties on the bioremediation of the petroleum-contaminated soil from a shale-gas field.

机构信息

College of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu, 610500, China.

Petroleum China Key Laboratory of HSE, Research Laboratory of Southwest Petroleum University, Chengdu, 610500, China.

出版信息

Environ Sci Pollut Res Int. 2020 Oct;27(29):36427-36438. doi: 10.1007/s11356-020-09715-y. Epub 2020 Jun 19.

Abstract

The characteristics of biochar carriers prepared from different biomass (corncob, straw, and sawdust) were investigated, and the bioremediation performance of the biochar through microbial immobilization was analyzed. Corncob biochar had the highest specific surface area (157.11-312.30 m g) among the different biomass, and the specific surface area and total pore volume reached the maximum at 500 °C. The pore size was primarily micropore, which aided to the fixation of microorganisms and the adsorption of petroleum pollutants. With increased pyrolysis temperature, the polar functional groups in biochar decreased, and the aromatic functional groups gradually increased, thereby benefiting the adsorption of hydrophobic organic compounds. Corncob biochar had the highest zeta potential, i.e., from - 30.95 to - 6.43 mV, conducive to the electrostatic adsorption between carrier and microorganism. The highest oil-removal and microbial-immobilization rates of biochar CC500 (with corncob pyrolyzed at 500 °C) were about 70.7% and 71.2%, respectively. A strong recovery of microbial growth activity was also observed; recovery was 83.38% compared with free bacteria, and the fixed microorganisms reached logarithmic-growth period at 8-18 h.

摘要

研究了不同生物质(玉米芯、秸秆和木屑)制备的生物炭载体的特性,并分析了微生物固定化对生物炭的生物修复性能。在不同生物质中,玉米芯生物炭的比表面积(157.11-312.30 m²/g)最高,在 500°C 时比表面积和总孔体积达到最大值。孔径主要为微孔,有利于微生物的固定和石油污染物的吸附。随着热解温度的升高,生物炭中的极性官能团减少,芳香族官能团逐渐增加,有利于疏水性有机化合物的吸附。玉米芯生物炭的 ζ 电位最高,为-30.95 至-6.43 mV,有利于载体与微生物之间的静电吸附。热解温度为 500°C 的玉米芯生物炭 CC500 的除油率和微生物固定化率最高,分别约为 70.7%和 71.2%。还观察到微生物生长活性的强烈恢复;与游离菌相比,回收率为 83.38%,固定化微生物在 8-18 h 达到对数生长期。

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