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中国现代作家笔下的“南洋”热带风物描写
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作者 罗克凌 《青海师范大学学报(哲学社会科学版)》 2019年第4期112-118,共7页
“风物”亦称“方物”,指的是出自某个地方的所有东西,包括各地方所特有的物产资源,如农、林作物和渔、矿资源等;也包括各地方机工、手工生产的各样产品,这些产品通常代表了一个地方的技术文明程度,主要指各种实用制作技艺物品。中国现... “风物”亦称“方物”,指的是出自某个地方的所有东西,包括各地方所特有的物产资源,如农、林作物和渔、矿资源等;也包括各地方机工、手工生产的各样产品,这些产品通常代表了一个地方的技术文明程度,主要指各种实用制作技艺物品。中国现代作家笔下有许多描写“南洋”“风物”的内容,他们对各种“南洋”“风物”(主要通约化地集中在“槟榔”“榴莲”和“橡胶”三种“南洋”特色风物上)进行描叙想像,事实上是对异国的一种“形象”想象,借物拟志,寄寓了作家们各式不同的文学思悟和审美情怀。 展开更多
关键词 中国现代作家 “南洋” 热带风物 形象 想象
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Assessment of Plant-Driven Mineral Weathering in an Aggrading Forested Watershed in Subtropical China 被引量:4
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作者 ZUO Shuangmiao YANG Jinling +2 位作者 HUANG Laiming David G.ROSSITER ZHANG Ganlin 《Pedosphere》 SCIE CAS CSCD 2016年第6期817-828,共12页
Plant growth contributes to mineral weathering, but this contribution remains poorly understood. Weathering rates in an aggrading forested watershed in subtropical China were studied by means of geochemical mass balan... Plant growth contributes to mineral weathering, but this contribution remains poorly understood. Weathering rates in an aggrading forested watershed in subtropical China were studied by means of geochemical mass balance. Rainfall, dry deposition, and streamwater were monitored from March 2007 to February 2012. Samples of vegetative components, rainfall, dry deposition, streamwater, representative soils, and parent rock were collected and determined for mass balance calculation and clarifying plant-driven weathering mechanisms stoichiometrically. Ignoring biomass, weathering rates of Ca^2+, Mg^2+, Na^+, and Si were 25.6, 10.7, 2.8, and 51.0 kg ha^-1 year^-1, respectively. Taking biomass into consideration, weathering rates of Ca^2+, Mg^2+, and Si and the sum of weathering rates of Ca^2+, Mg^2+, Na^+, K^+, and Si were 2.6, 1.8, 1.2, and 1.5-fold higher than those ignoring biomass, respectively. This is attributed to plant-driven weathering due to the nutrient (e.g., Ca^2+, Mg^2+, and K^+) absorption by vegetation and substantial proton production during assimilation of these nutrients, with the former acting as a pump for removing weathering products and the latter being a source of weathering agents solubilizing mineral components. The same pattern of weathering, i.e., higher rates of weathering with than without including biomass in mass balance calculation, was reported in previous studies; however, the extent to which plants drive weathering rates varied with vegetation types and climatic zones. The documented biological weathering driven by plants is expected to play a critical role in regulating nutrient cycling and material flows within the Earth's Critical Zone. 展开更多
关键词 BIOGEOCHEMISTRY BIOMASS Earth's Critical Zone geochemical mass balance nutrient absorption stoichiometric analysis vegetation weathering mechanisms
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