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长期土壤酸化模型(LTSAM) 被引量:9
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作者 安俊岭 黄美元 +1 位作者 陶树旺 胡朝霞 《环境科学学报》 CAS CSCD 北大核心 1999年第3期284-291,共8页
以碱总量守恒为基础,以Ulrich缓冲范围为模型主要框架建立了兼能描述酸性与石灰性土壤长期酸化反应过程的动态模型.经与SMART模型在理论设计和模拟结果两方面作对比之后,又利用新建模型以北京地区典型褐土为例进行了硫沉... 以碱总量守恒为基础,以Ulrich缓冲范围为模型主要框架建立了兼能描述酸性与石灰性土壤长期酸化反应过程的动态模型.经与SMART模型在理论设计和模拟结果两方面作对比之后,又利用新建模型以北京地区典型褐土为例进行了硫沉降与酸(H+)沉降的对比计算.结果表明:(1)LTSAM模型能够很好地反映土壤缓冲酸的主要机制.(2)模式运行即稳定又省时.(3)大气硫沉降不同于酸沉降.也就是说,硫沉降改变时,阳离子(尤其是主要离子)沉降量的变化应当加以考虑. 展开更多
关键词 Ulrich缓冲范围 土壤污染 酸化模型 ltsam
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Effects of Aluminum Toxicity Induced by Acid Deposition on Pine Forest Ecosystem in Longli of Guizhou Province, Southwestern China
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作者 ZHANG Jing LYU Zhipeng +5 位作者 SHAO Siya LI Fangfang YANG Shengtian SONG Wenlong LI Wei LI Shun-jiang 《Chinese Geographical Science》 SCIE CSCD 2016年第4期495-507,共13页
The effects of acid deposition on pine forest ecosystems in Longli of Guizhou Province, southwestern China are studied using indoor experiments and model simulations. Indoor experiments are designed to explore the alu... The effects of acid deposition on pine forest ecosystems in Longli of Guizhou Province, southwestern China are studied using indoor experiments and model simulations. Indoor experiments are designed to explore the aluminum toxicity on pine seedlings, and the long-term soil acidification model (LTSAM) and a terrestrial biogeochemistry model (CENTURY) are used to simulate the influences of acid deposition on pine forest ecosystems. The indoor experiment results of aluminum toxicishow that aluminum ions in solution limit plant growth and acid deposition enhances this effect by facilitating the release of aluminum ions from the soil. Pine seedling bio- mass and root elongation decrease as the aluminum concentration increases. The results of model simulations show that the soil chemis- try varies significantly with different changes in acid deposition. When the acid deposition increases, the pH value in the soil solution decreases and the soil A13+ concentration increases. The increased acid deposition also has negative impacts on the forest ecosystem, i.e., decreases plant biomass, net primary productivity (NPP) and net C02 uptake. As a result, the soil organic carbon (SOC) decreases be- cause of the limited supply of decomposition material. Thus acid deposition need be reduced to help protect the forest ecosystems. 展开更多
关键词 acid deposition aluminum toxicity long-term soil acidification model ltsam terrestrial biogeochemistry model(CENTURY) pine forest
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