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机构地区:[1]浙江大学环境与资源学院,浙江杭州310058 [2]中山市小榄镇农业服务中心,广东中山528415 [3]福建农林大学资源与环境学院,福建福州350002 [4]广东省农业环境综合治理重点实验室//广东省生态环境与土壤研究所,广东广州510650
出 处:《生态环境学报》2013年第11期1853-1858,共6页Ecology and Environmental Sciences
基 金:公益性行业(农业)科研专项(200803029-01-03)
摘 要:研究厌氧条件下土壤中有机氯降解动力学模型及其参数优化方法,对阐明有机氯降解的动力学反应机制具有十分重要的理论意义。文章以厌氧条件下土壤中五氯酚(PCP)降解为例,归纳介绍了两类用于描述土壤中PCP降解动力学过程的模型:一类模型是不考虑微生物生长的基质降解模式,以一级动力学模型最有代表性,但这类模型多数情况下没有或没有完全体现环境因素对PCP降解的抑制作用;另一类模型是考虑微生物生长的基质降解模式,以Monod动力学模型使用最普遍,但这类模型只在微生物生长的指数期适用,对延迟期、稳定期和衰亡期需经扩展才可应用。logistic动力学模型可广泛用于以上两类模型,是可以近似地描述微生物经适应过程和共代谢作用而致有机氯降解的简单模型。文章还总结了有机氯降解非线性模型参数的优化方法,并对其优缺点进行了分析和比较。针对目前土壤中有机氯降解动力学模型及其参数优化研究中存在的问题,对今后的研究方向进行了展望。Study on the kinetic modeling and parameter optimization for organochlorine degradation in anaerobic soil helps to eluci- date the kinetic mechanisms of organochlorine degradation in the environment. Here we introduce two types of kinetic models for organochlorine degradation in anaerobic soil through a case study on pentachlorophenol (PCP). One type of the models exhibits sub- strate degradation patterns without considering microbial growth and is represented by the first-order kinetic model; in most cases, however, this kind of models does not fully reflect (or only partially reflects) the inhibitory effect of environmental factors on PCP degradation. The other type of models exhibits substrate degradation patterns by taking into consideration microbial growth and is represented by the Monod kinetic model; this type of models, however, is applicable only in the exponential phase of microbial growth and needs to be modified for application in the lag, stationary, and decline phases of microbial growth. The logistic kinetic model, which can be used widely in the above two types of kinetic models, provides a simple approach for approximately describing cometabolic degradation of organochlorine by microbial consortium after an adaptation period. Additionally, we summarize the methods for parameter optimization of nonlinear models for organochlorine degradation, and further discuss their advantages and disadvantages. Finally, we propose the research directions for studies on organochlorine degradation in soil related to kinetic model- ing and parameter optimization.
关 键 词:厌氧土壤 有机氯 降解动力学 曲线拟合模型 参数优化
分 类 号:X132[环境科学与工程—环境科学]
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