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首页> 外文期刊>Journal of Environmental Protection >Assessing the Impact of Sulfur Atmospheric Deposition on Terrestrial Ecosystems Close to an Industrial Corridor in the Southeast of Mexico
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Assessing the Impact of Sulfur Atmospheric Deposition on Terrestrial Ecosystems Close to an Industrial Corridor in the Southeast of Mexico

机译:评估墨西哥东南部工业走廊陆地生态系统对陆地生态系统的影响

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The main objective of this research work was to diagnose the vulnerability of terrestrial ecosystems to S deposition in Atasta region in Campeche State, Mexico, comprising two simultaneous sampling programs in both, soil and atmospheric deposition on an annual basis during three climatic periods: dry, rainy and cold fronts seasons. From the estimation of soil properties estimation (pH, texture, mineralogy, cationic exchange capacity, and basis saturation %), critical loads and sensitivity classes were assigned to sampled soils based according to the empirical methodology proposed by UNECE. During the dry season, 10 sites fell into sensitivity class 2 (moderately sensitive) and 3 (sensitive). On the other hand, during the rainy season, 8 sites showed a sensitivity class 1 (highly sensitive) and 2 sites presented a sensitivity class 2 (moderately sensitive); whereas along cold fronts season, 12 sites fell into sensitivity class 1 that corresponds to highly sensitive. Sensitivity classes showed a seasonal trend, with a higher sensitivity during rainy and cold fronts seasons; this agrees with the kind of sources influencing on the study area as a result of the prevailing meteorology during these climatic periods. Likewise, S concentration in atmospheric deposition was determined by turbidimetric method, and S deposition fluxes were estimated from surface area of the funnel opening of the sampling device and the sampling period. S deposition fluxes ranged from 0.29 and 14.06 kg S ha-1·yr-1; with a mean value of 8.57 kg S ha-1·yr-1. From the comparison between the current deposition rates and proposed critical loads, exceedances percentages were obtained (from 1.65% to 62.8%) and mapped to identify critical zones of S deposition in the studied area. It was established the important role which mangrove vegetation plays in the attenuation of the potential ecological effects on terrestrial ecosystems of the study area associated to atmospheric deposition.
机译:本研究工作的主要目标是诊断陆地生态系统在墨西哥坎佩切州阿斯塔地区沉积的脆弱性,包括在三个气候期间每年的两种同时采样计划,土壤和大气沉积:干燥,雨寒和冷的前季。从估计土壤性质估计(pH,质地,矿物学,阳离子交换能力和基础饱和度%),根据UNECE提出的经验方法将临界载荷和敏感性分配给基于实证方法的采样土壤。在干燥的季节,10位点落入敏感性2级(适度敏感)和3(敏感)。另一方面,在雨季期间,8个遗址显示敏感性1(高度敏感),2个网站呈现敏感性2(适度敏感);虽然沿着冷锋季节,12个网站陷入敏感性1,这对应于高度敏感。敏感性课程展示了季节性趋势,在多雨和冷锋季节期间具有更高的敏感性;这同意在这些气候时期的普遍气象导致研究领域的这种来源。同样地,通过浊度法测定大气沉积中的S浓度,并且从采样装置的漏斗开口的表面积和采样周期估计S沉积助熔剂。 S沉积通量范围为0.29和14.06 kg S ha -1 -1 / sup>·Yr -1 ;平均值为8.57 kg s ha -1 ·Yr -1 。从电流沉积速率与提出的临界载荷之间的比较来看,获得的百分比(从1.65%到62.8%)并映射以识别所研究区域中S沉积的关键区域。建立了红树林植被在衰减对与大气沉积相关的研究区域的陆地生态系统潜在生态学作用的潜在生态学作用的重要作用。

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