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41.
以沼泽湿地典型草甸植被小叶章(Calamagrostis angustifolia)为研究对象,在三江平原进行了野外培养实验,探讨了4个不同氮素输入水平(0(NO)、6(N6),12(N12)、24(N24)g·m-2· a-1)下沼泽湿地植物生长与光合特性的响应特征,并从光合固"碳"的角度分析了小叶章沼泽湿地的固"碳"潜势.结果表明,外源氮输入明显促进了小叶章的株高、叶面积及植株数,显著增加了碳的生物量积累,到植物生长季结束,N6、N12和N24三个施氮水平下,小叶章地上部分生物量分别比对照增加了58.79%、133.11%和190.55%.同时,小叶章叶片全氮含量、叶绿素、可溶性蛋白和游离氨基酸含量也显著增加,净光合速率明显提高,分别比对照增加了20.70%、26.69%和53.54%.从光合固"碳"的角度来看,外源氮输入能够促使沼泽湿地植物通过光合作用固定更多CO2.  相似文献   
42.
高分辨率监测下的漓江省里断面生物地球化学特征分析   总被引:1,自引:1,他引:0  
为了获得漓江流域不同季节生物地球化学昼夜动态变化过程、影响因素与规律,分别于2016年10月30日~11月1日(秋季)和2017年9月14~16日(夏季)对漓江流域省里断面进行了为期48 h的高分辨率在线监测和高频率取样工作,研究水体电导率(EC)、水温(T)、pH以及Ca~(2+)、HCO_3~-、NO_3~-等离子含量和溶解无机碳同位素(δ~(13)C_(DIC))等水化学参数的昼夜变化规律,并分析其影响因素,同时评估水生植物对输入岩溶水生生态系统中溶解无机碳的固定量.结果表明:①省里断面水化学参数表现出显著的昼夜变化规律,T、pH、DO、SIC白天上升夜间下降,Ca~(2+)、HCO_3~-、EC、p(CO_2)白天降低夜晚上升且秋季昼夜变化幅度大于夏季.②SO_4~(2-)、NO_3~-、Cl~-、Na~+、K~+和Mg~(2+)等营养元素含量昼夜变化主要受水生植物代谢过程(同化作用)控制,呈现白天降低夜间升高的变化规律.同时,省里断面夏季营养元素昼夜变化幅度小于秋季.③省里断面溶解无机碳同位素(δ~(13)C_(DIC))主要受水生植物光合作用和呼吸作用控制,表现为白天偏重晚上偏轻的动态变化.受土壤根系和土壤微生物呼吸作用强度和河流水文要素季节变化的影响,夏季省里断面δ~(13)C_(DIC)总体上偏轻于秋季,两者的平均值分别为-10. 08‰和-8. 90‰.④通过计算,实验期间省里断面水生植物光合作用岩溶碳汇量日平均值为2. 12 mmol·L~(-1)和0. 94mmol·L~(-1),秋季比夏季具有更高的固碳效率.  相似文献   
43.
Foliar application of Si can generally reduce As translocation from roots to shoots in rice; however, it does not always work, particularly under high As stress. Here, the effects of foliar application of nanoscale silica sol on As accumulation in rice were investigated under low (2 μmol/L) and high (8 μmol/L) arsenite stress. The results revealed that foliar Si application significantly decreased the As concentration in shoots under low arsenite stress, but showed different effects under high arsenite stress after 7 days of incubation. The reduction in root-to-shoot As translocation under the 2As+Si treatment was related to the down-regulation of OsLsi1 and OsLsi2 expression and up-regulation of OsABCC1 expression in roots. In the 8As+Si treatment, the expressions of OsLsi1, OsLsi2, and OsABCC1 were significantly promoted, which resulted in substantially higher As accumulation in both the roots and shoots. In the roots, As predominantly accumulated in the symplasts (90.6%–98.3%), in which the majority of As was sequestered in vacuoles (79.0%–94.0%) under both levels of arsenite stress. Compared with that of the 8As treatment, the 8As+Si treatment significantly increased the As concentration in cell walls, but showed no difference in the vacuolar As concentration, which remained constant at approximately 69.1–71.7 mg/kg during days 4–7. It appeared that the capacity of root cells to sequester As in the vacuoles had a threshold, and the excess As tended to accumulate in the cell walls and transfer to the shoots via apoplasts under high arsenite stress. This study provides a better understanding of the different effects of foliar Si application on As accumulation in rice from the view of arsenite-related gene expression and As subcellular distribution in roots.  相似文献   
44.
To offset the carbon dioxide released by fossil fuels, a proposed sequestration strategy relies on burying garbage and waste in landfills. This paper roughly estimates the current annual world supply of carbonaceous waste to be 35.5 billion metric tons and to contain about 18 billion metric tons of carbon. If landfills received all of this waste, sequestration of more than 5.6 billion metric tons of carbon seems theoretically possible—an amount well in excess of the 3.3 billion metric tons which the atmosphere is currently gaining.  相似文献   
45.
Global emissions trading allows for agricultural measures to be accounted for the carbon sequestration in soils. The Environmental Policy Integrated Climate (EPIC) model was tested for central European site conditions by means of agricultural extensification scenarios. Results of soil and management analyses of different management systems (cultivation with mouldboard plough, reduced tillage, and grassland/fallow establishment) on 13 representative sites in the German State Baden-Württemberg were used to calibrate the EPIC model. Calibration results were compared to those of the Intergovernmental Panel on Climate Change (IPCC) prognosis tool. The first calibration step included adjustments in (a) N depositions, (b) N2-fixation by bacteria during fallow, and (c) nutrient content of organic fertilisers according to regional values. The mixing efficiency of implements used for reduced tillage and four crop parameters were adapted to site conditions as a second step of the iterative calibration process, which should optimise the agreement between measured and simulated humus changes. Thus, general rules were obtained for the calibration of EPIC for different criteria and regions. EPIC simulated an average increase of +0.341 Mg humus-C ha−1 a−1 for on average 11.3 years of reduced tillage compared to land cultivated with mouldboard plough during the same time scale. Field measurements revealed an average increase of +0.343 Mg C ha−1 a−1 and the IPCC prognosis tool +0.345 Mg C ha−1 a−1. EPIC simulated an average increase of +1.253 Mg C ha−1 a−1 for on average 10.6 years of grassland/fallow establishment compared to an average increase of +1.342 Mg humus-C ha−1 a−1 measured by field measurements and +1.254 Mg C ha−1 a−1 according to the IPCC prognosis tool. The comparison of simulated and measured humus C stocks was r2 ≥ 0.825 for all treatments. However, on some sites deviations between simulated and measured results were considerable. The result for the simulation of yields was similar. In 49% of the cases the simulated yields differed from the surveyed ones by more than 20%. Some explanations could be found by qualitative cause analyses. Yet, for quantitative analyses the available information from farmers was not sufficient. Altogether EPIC is able to represent the expected changes by reduced tillage or grassland/fallow establishment acceptably under central European site conditions of south-western Germany.  相似文献   
46.
有机污染物土地生物处理过程动态规律模拟研究   总被引:2,自引:0,他引:2  
刘凌  崔广柏  夏自强 《环境科学》2001,22(2):101-105
应用土壤颗粒内部有机污染物屏蔽理论,说明土地生物处理过程中残余有机污染物在土壤中的滞留现象,提出描述有机污染物在土壤及相连的水环境中生物降解过程的数学模型.其中,污染物的扩散过程用Fick第二扩散定律表示,可逆的吸附和解吸过程用线性吸附等温线表示,不可逆的土壤颗粒内部屏蔽过程用假一级反应动力学方程表示,生物降解过程用Monod动力学方程表示.模型计算结果与实验结果基本拟合,表示模型基本可靠.利用该数学模型,可以定量预测有机污染物进行土地生物处理所需的时间、处理的程度及动态规律.  相似文献   
47.
Zero tillage is recognized as a potential measure to sequester carbon dioxide in soils and to reduce CO2 emissions from arable lands. An up-scaling approach of the output of the Environmental Policy Integrated Climate (EPIC) model with the information system SLISYS-BW has been used to estimate the CO2-mitigation potential in the state of Baden-Württemberg (SW-Germany). The state territory of 35,742 km2 is subdivided into eight agro-ecological zones (AEZ), which have been further subdivided into a total of 3976 spatial response units. Annual CO2-mitigation rates where estimated from the changes in soil organic carbon content comparing 30 years simulations under conventional and zero tillage. Special attention was given to the influence of tillage practices on the losses of organic carbon through soil erosion, and consequently on the calculation of CO2-mitigation rates. Under conventional tillage, mean carbon losses through erosion in the AEZ were estimated to be up to 0.45 Mg C ha−1 a−1. The apparent CO2-mitigation rate for the conversion from conventional to zero tillage ranges from 0.08 to 1.82 Mg C ha−1 a−1 in the eight AEZ, if the carbon losses through soil erosion are included in the calculations. However, the higher carbon losses under conventional tillage compared to zero tillage are composed of both, losses through enhanced CO2 emissions, and losses through intensified soil erosion. The adjusted net CO2-mitigation rates of zero tillage, subtracting the reduced carbon losses through soil erosion, are between 0.07 and 1.27 Mg C ha−1 a−1 and the estimated net mitigation rate for the entire state amounts to 285 Gg C a−1. This equals to 1045 Gg CO2-equivalents per year with the cropping patterns in the reference year 2000. The results call attention to the necessity to revise those estimation methods for CO2-mitigation which are exclusively or predominantly based on the measurements of differential changes in total soil organic carbon without taking into account the tillage effects on carbon losses through soil erosion.  相似文献   
48.
生物质炭的性质及其对土壤环境功能影响的研究进展   总被引:37,自引:0,他引:37  
袁金华  徐仁扣 《生态环境》2011,20(4):779-785
在厌氧或者绝氧的条件下对生物质进行热解,可产生含碳丰富的固体物质,称为生物质炭。由于生物质炭在农业和环境中的巨大应用前景和对土壤碳的增汇减排作用,近期成为土壤学和环境科学的研究热点。综述了生物质炭的一些基本性质及其对土壤环境功能的影响,分析了该领域未来的发展趋势。国内外的研究表明:生物质炭含有大量植物所需的营养元素,可以促进土壤养分的循环和植物的生长;生物质炭一般呈碱性,施用生物质炭可以降低土壤的酸度和有毒元素如铝和重金属对植物的毒性;生物质炭表面含有丰富的-COOH、-COH和-OH等含氧官能团,它们产生的表面负电荷使生物质炭具有较高的阳离子交换量(CEC),施用后可以提高土壤的CEC;生物质炭对农药等有机污染物和重金属等有很强的吸附能力,可用于污染土壤的修复;生物质炭具有高度的孔隙结构,可以增加土壤的空隙度和保水能力,降低土壤容重,有利植物根系生长;生物质炭是一种含碳的聚合物,主要由单环和多环的芳香族化合物组成,这种结构特点决定了生物质炭具有较高的化学和生物学稳定性,较强的抵抗微生物分解的能力,增强了土壤的固碳作用,减少碳向大气的再释放。该文可为从事农业废弃物的资源化利用、固碳减排、污染土壤修复和土壤改良与管理等领域的科研人员提供参考。  相似文献   
49.
黑河中游边缘绿洲农田退耕还草的土壤碳、氮固存效应   总被引:4,自引:0,他引:4  
苏永中 《环境科学》2006,27(7):1312-1318
研究黑河中游边缘绿洲农田退耕种植苜蓿5a后土壤碳、氮库的变化,通过对2个土类(开垦耕种的风沙土和灰棕漠土)退耕苜蓿地和相邻农田0~5、5~10和10~20cm土层土壤有机碳(SOC)和全氮(TN)、颗粒有机碳和氮(POC、PON)储量的分析表明:开垦耕种的风沙土和灰棕漠土有极低的SOC和TN含量,退耕种植苜蓿后0~20cm SOC储量提高了22.1%~27.8%,SOC的固存率平均为0.47 Mg/(hm2·a),0~5cm表层SOC储量变化最大,提高32%~66%;TN储量0~20cm储量变化不显著,在0~5cm表层TN储量风沙土和灰棕漠土分别提高12.8%和48.1%.退耕后POC和PON较SOC和TN有更显著的变化,其分配比例增加,0~20cm土层POC和PON储量分别提高22.8%~42.7%和18.6%~57.6%,在0~5cm变化最大;在瘠薄耕地转变为多年生苜蓿地后土壤C库的增加主要是由于POC的形成量增加.SOC含量相对更低的灰棕漠土比风沙土退耕后土壤C、N的增加更为明显.  相似文献   
50.
海洋碳汇渔业绿色发展空间关联性及其外溢效应对于海水养殖业的有效协调和区域海洋环境的有效保护具有重要意义,科学估算沿海各省(自治区)海水养殖渔业碳汇量并探讨其空间相关性特征是制定差异化渔业碳汇发展政策的重要基础。根据2006—2016年中国大陆沿海9个省(自治区)的碳汇渔业资源清查数据,在检验和比较省域空间渔业碳汇总量相关性特征的基础上,运用空间计量模型分析了渔业碳汇的外溢效应及其影响因素。结果表明:①中国海水养殖渔业碳汇量整体上呈现上升趋势,但各省渔业碳汇量也存在明显差异。②研究期内的Moran's I指数整体呈现为"V"型的波动变化特征,渔业碳汇在省域空间分布上的差异性并不是随机的,而是具备显著的空间相关性。③海水养殖渔业碳汇存在明显的空间外溢效应,通过随机效应的杜宾模型分解后得出渔业产值、劳动力投入的直接效应为正,而渔业受灾面积和科研项目经费投入的直接效应为负;从间接效应来看,渔业产值在各省域间存在竞争与依存关系,海水养殖业劳动力投入和渔业技术推广的项目经费投入在各省域间存在互补关系。因此,中国沿海各省份在发挥海洋水产养殖业生态功能时,应当考虑省域区位因素,合理制定兼具差异化和协调性的海洋碳汇渔业发展政策。  相似文献   
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