Department of Land, Air and Water Resources, One Shields Ave., University of California Davis, Davis, CA, 95616, USA; School of Natural and Applied Sciences, William Jessup University, Rocklin, CA, 95765, USA.
Department of Land, Air and Water Resources, One Shields Ave., University of California Davis, Davis, CA, 95616, USA.
Environ Pollut. 2020 Oct;265(Pt B):115006. doi: 10.1016/j.envpol.2020.115006. Epub 2020 Jun 11.
The impact of organic bulking agents on the biodegradation of petroleum hydrocarbons in crude oil impacted soils was evaluated in batch laboratory experiments. Crude oil impacted soils from three separate locations were amended with fertilizer and bulking agents consisting of biochars derived from walnut shells or ponderosa pine wood chips produced at 900 °C. The batch reactors were incubated at 25 °C and sampled at pre-determined intervals to measure changes in total petroleum hydrocarbons (TPH) over time. For the duration of the incubation, the soil moisture content was adjusted to 75% of the maximum water holding capacity (MWHC) and prior to each sampling event, the sample was manually stirred. Results show that the addition of fertilizer and bulking agents increased biodegradation rates of TPH. Soil samples amended with ponderosa pine wood biochar achieved the highest biodegradation rate, whereas the walnut shell biochar was inhibitory to TPH biodegradation. The beneficial impact of biochars on TPH biodegredation was more pronounced for a soil impacted with lighter hydrocarbons compared to a soil impacted with heavier hydrocarbons. This study demonstrates that some biochars, in combination with fertilizer, have the potential to be a low-technology and eco-friendly remediation strategy for crude oil impacted soils.
在批实验室实验中评估了有机膨松剂对受原油影响土壤中石油烃生物降解的影响。用肥料和膨松剂对来自三个不同地点的受原油影响的土壤进行了改良,膨松剂由在 900°C 下产生的核桃壳或黄松木屑制成的生物炭组成。批式反应器在 25°C 下孵育,并在预定的时间间隔取样,以测量随着时间的推移总石油烃(TPH)的变化。在孵育期间,将土壤的水分含量调整至最大持水量(MWHC)的 75%,并且在每次采样之前,手动搅拌样品。结果表明,添加肥料和膨松剂会增加 TPH 的生物降解率。添加黄松木屑生物炭的土壤样品达到了最高的生物降解率,而核桃壳生物炭对 TPH 的生物降解具有抑制作用。与受重质烃类污染的土壤相比,生物炭对轻质烃类污染土壤中 TPH 生物降解的有益影响更为明显。本研究表明,一些生物炭与肥料结合使用,有可能成为受原油污染土壤的一种低技术、环保的修复策略。