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持久性有机污染物在陆生食物链中的生物积累放大模拟研究进展 被引量:8
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作者 王雪莉 高宏 《生态与农村环境学报》 CAS CSCD 北大核心 2016年第4期531-538,共8页
借助环境模型模拟污染物在多介质间的迁移、归趋行为和生物积累放大,既是生态和健康风险的评估基础,又是研究污染物环境过程的一种重要的方法和手段。利用生物积累模型研究持久性有机污染物(POPs)在食物链中的生物富集和生物积累放大对... 借助环境模型模拟污染物在多介质间的迁移、归趋行为和生物积累放大,既是生态和健康风险的评估基础,又是研究污染物环境过程的一种重要的方法和手段。利用生物积累模型研究持久性有机污染物(POPs)在食物链中的生物富集和生物积累放大对于生态及健康风险评价具有重要意义。重点介绍了国内外关于POPs在陆生食物链中的各类生物积累模型及应用,包括原理、模型的特点和优势及不足之处,并对模型的改进提出了相应的建议。基础环境参数不足、实验数据缺乏和物种特异性是制约此类模型发展的主要原因。 展开更多
关键词 POPS 陆生食物链 生物积累模型
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长白山区几种主要造林树种苗木生物量积累与分配的仿生模拟 被引量:1
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作者 王玉杰 张大克 《生物数学学报》 CSCD 北大核心 1994年第4期95-102,共8页
本文应用数学模拟和计算机绘图的手段,对长白山区几种主要造林树种樟子松、落叶松、红皮云杉及大青杨等苗木各器官生物量积累与分配的动态变化规律进行了仿生模拟,提供了反映各树种苗木生物量积累与分配的动态变化模型及几何直观图象。
关键词 樟子松、落叶松、红皮云杉及大青杨苗木 生物积累与分配的动态变化规律模型
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Simulation Model for Photosynthetic Production in Oilseed Rape 被引量:5
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作者 TANG Liang, ZHU Yan 2 , LIU Xiao-Jun, TIAN Yong-Chao, YAO Xia and CAO Wei-Xing Jiangsu Key Laboratory for Information Agriculture, Nanjing Agricultural University, Nanjing 210095 (China) 《Pedosphere》 SCIE CAS CSCD 2009年第6期700-710,共11页
Photosynthetic production is a major determinant of final yield in crop plants. A simulation model was developed for canopy photosynthesis and dry matter accumulation in oilseed rape (Brassica napus L.) based on the e... Photosynthetic production is a major determinant of final yield in crop plants. A simulation model was developed for canopy photosynthesis and dry matter accumulation in oilseed rape (Brassica napus L.) based on the ecophysiological processes and using a three-layer radiation balance scheme for calculating the radiation interception and absorption by the layers of flowers, pods, and leaves within the canopy. Gaussian integration method was used to calculate photosynthesis of the pod and leaf layers, and the daily total canopy photosynthesis was determined by the sum of photosynthesis from the two layers of green organs. The effects of physiological age, temperature, nitrogen, and water deficit on maximum photosynthetic rate were quantified. Maintenance and growth respiration were estimated to determine net photosynthetic production. Partition index of the shoot in relation to physiological development time was used to calculate shoot dry matter from plant biomass and shoot biomass loss because of freezing was quantified by temperature effectiveness. Testing of the model for dynamic dry matter accumulation through field experiments of different genotypes, sowing dates, and nitrogen levels showed good fit between the observed and simulated data, with an average root mean square error of 10.9% for shoot dry matter. Thus, the present model appears to be reliable for the prediction of photosynthetic production in oilseed rape. 展开更多
关键词 CANOPY CO2 assimilation dry matter accumulation N nutrition index RADIATION
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