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Ozone enhances biodegradability of heavy hydrocarbons in soil

机译:臭氧增强了土壤中重烃的生物降解性

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摘要

The molecular complexity and the low solubility of petroleum hydrocarbon residuals in weathered soil hinder bioremediation as a clean-up strategy. Pretreatment with advanced oxidation, such as with ozone gas (O_3), is a means to transform recalcitrant organics to more biodegradable forms. The efficacy of gas-phase ozone for enhancing the biodegradability of heavy residual petroleum hydrocarbons in weathered soil was tested. Ozonating soil containing ~1%(w/w) residual petroleum hydrocarbons with a dose of 6 kg ozone/kg initial total petroleum hydrocarbons (TPHs) achieved nearly 50% TPH reduction, simultaneous with a >20-fold increase in soluble chemical oxygen demand, but with a≤12% loss of total organic carbon. TPH molecules were converted to partly oxidised products, ten of which were identified as n-monocarboxylic acids, which were readily biodegraded, and ozonation resulted in a fourfold increase in 5-d biochemical oxygen demand (BOD_5). BO0_5 results after ozonation were the same with or without a microbial seed, which suggests that bioaugmentation is likely not necessary after ozonation. Deoxyribonucleic acid sequencing over the time course of the BOD_5 tests showed increased diversity and changes in predominant genera, both of which underscore that ozonation made the heavy hydrocarbons readily biodegradable for soil bacteria.
机译:石油烃残留在风化土壤中的分子复杂性和低溶解度作为清理策略。具有晚期氧化的预处理,例如具有臭氧气体(O_3),是将醋核糖有机物转化为更生物降解的形式的方法。试验了气相臭氧在风化土壤中提高重剩余石油烃的生物降解性的疗效。含有〜1%(w / w)残留的石油烃的臭氧土壤具有6kg臭氧/ kg初始总石油烃(TPH)的含量近50%TPH还原,同时具有> 20倍的可溶性化学需氧量增加,但总有机碳损失≤12%。将TPH分子转化为部分氧化的产物,其中10个被鉴定为N-一羧酸,其易于生物降解,并且臭氧化导致5-D生物化氧需氧量(BOD_5)的四倍增加。 Bo0_5臭氧处理后的结果与或没有微生物种子的结果,这表明在臭氧化后可能没有必要的生物沉积。脱氧核糖核酸测序在BOD_5试验的时间过程中显示出增加的多样性和变化的主要属性,其中臭氧化使得臭氧化使得重质碳氢化合物易生物降解土壤细菌。

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  • 作者单位

    Swette Center for Environmental Biotechnology Biodesign Institute Arizona State University Tempe AZ USA School of Sustainable Engineering and the Built Environment Arizona State University Tempe AZ USA;

    Swette Center for Environmental Biotechnology Biodesign Institute Arizona State University Tempe AZ USA;

    Swette Center for Environmental Biotechnology Biodesign Institute Arizona State University Tempe AZ USA School of Sustainable Engineering and the Built Environment Arizona State University Tempe AZ USA;

    Swette Center for Environmental Biotechnology Biodesign Institute Arizona State University Tempe AZ USA School of Sustainable Engineering and the Built Environment Arizona State University Tempe AZ USA Transportation Design Premier Engineering Corporation Phoenix AZ USA;

    Swette Center for Environmental Biotechnology Biodesign Institute Arizona State University Tempe AZ USA;

    Chevron Energy Technology Company San Ramon CA USA;

    School of Sustainable Engineering and the Built Environment Arizona State University Tempe AZ USA;

    Swette Center for Environmental Biotechnology Biodesign Institute Arizona State University Tempe AZ USA School of Sustainable Engineering and the Built Environment Arizona State University Tempe AZ USA;

    Swette Center for Environmental Biotechnology Biodesign Institute Arizona State University Tempe AZ USA School of Sustainable Engineering and the Built Environment Arizona State University Tempe AZ USA;

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  • 正文语种 eng
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  • 关键词

    environment; pollution; safetyhazards;

    机译:环境;污染;安全与危险;

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