海洋溢油生物修复的现场评价。

R P Swannell, K Lee, M McDonagh
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引用次数: 64

摘要

生物修复被定义为向污染环境中添加或提高物质(如营养物、微生物或氧气)的可用性,以加速自然生物降解过程的行为。对现场试验和实际泄漏事件后的试验结果进行了审查,以评价这种方法作为处理海洋环境中石油污染的可行性。海洋环境中普遍存在的石油降解微生物是公认的,研究表明,当地微生物群在接触石油后不久就能降解石油的许多成分。研究已经确定了许多影响石油自然生物降解率的因素,如石油的来源和浓度、石油降解微生物的可用性、营养物质浓度、氧气水平、气候条件和沉积物特征。以施肥为基础的生物修复策略已被证明可以促进好氧潮间带沉积物(如沙子和鹅卵石)中石油的生物降解率。间质水中含油量与氮浓度的比值是影响生物修复策略成功的主要控制因素。然而,在自然环境条件下,需要用碳氢化合物降解细菌播种还没有得到明确的证明。有人建议,生物补救现在应该在处理石油泄漏的许多现有技术中占有一席之地,尽管显然仍然需要为其使用设定操作限制。在现有证据的基础上,我们提出了岸线环境生物修复的初步操作指南。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field evaluations of marine oil spill bioremediation.

Bioremediation is defined as the act of adding or improving the availability of materials (e.g., nutrients, microorganisms, or oxygen) to contaminated environments to cause an acceleration of natural biodegradative processes. The results of field experiments and trials following actual spill incidents have been reviewed to evaluate the feasibility of this approach as a treatment for oil contamination in the marine environment. The ubiquity of oil-degrading microorganisms in the marine environment is well established, and research has demonstrated the capability of the indigenous microflora to degrade many components of petroleum shortly after exposure. Studies have identified numerous factors which affect the natural biodegradation rates of oil, such as the origin and concentration of oil, the availability of oil-degrading microorganisms, nutrient concentrations, oxygen levels, climatic conditions, and sediment characteristics. Bioremediation strategies based on the application of fertilizers have been shown to stimulate the biodegradation rates of oil in aerobic intertidal sediments such as sand and cobble. The ratio of oil loading to nitrogen concentration within the interstitial water has been identified to be the principal controlling factor influencing the success of this bioremediation strategy. However, the need for the seeding of natural environments with hydrocarbon-degrading bacteria has not been clearly demonstrated under natural environmental conditions. It is suggested that bioremediation should now take its place among the many techniques available for the treatment of oil spills, although there is still a clear need to set operational limits for its use. On the basis of the available evidence, we have proposed preliminary operational guidelines for bioremediation on shoreline environments.

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