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Loss of grassland species resulting from activities such as off-road vehicle use increases the need for models that predict
effects of anthropogenic disturbance. The relationship of disturbance by military training to plant species richness and composition
on two soils (Foard and Lawton) in a mixed prairie area was investigated. Track cover (cover of vehicle disturbance to the
soil) and soil organic carbon were selected as measures of short- and long-term disturbance, respectively. Soil and vegetation
data, collected in 1-m2 quadrats, were analyzed at three spatial scales (60, 10, and 1 m2). Plant species richness peaked at intermediate levels of soil organic carbon at the 10-m2 and 1-m2 spatial scales on both the Lawton and Foard soils, and at intermediate levels of track cover at all three spatial scales
on the Foard soil. Species composition differed across the disturbance gradient on the Foard soil but not on the Lawton soil.
Disturbance increased total plant species richness on the Foard soil. The authors conclude that disturbance up to intermediate
levels can be used to maintain biodiversity by enriching the plant species pool. 相似文献
44.
Assessment of Soil Erodibility Indices for Conservation Reserve Program Lands in Southwestern Kansas Using Satellite Imagery and GIS Techniques 总被引:2,自引:0,他引:2
The soil erodibility index (EI) of Conservation Reserve Program (CRP) lands, which was the major criterion for CRP enrollment,
was assessed for six counties in southwestern Kansas using USGS seamless digital elevation model data and Geographical Informational
System techniques. The proportion of land areas with EI values of 8 or lower was less than 1% of the entire study area and
most of the land areas (72.5%) were concentrated on EI values between 8 and 24. Although land acreage with EI values of 24
or higher decreased dramatically, the proportion of CRP lands to the other land-use types did not change much from low to
high EI levels. The soil EI and physical soil characteristics of the CRP lands were compared to those of other land-use types.
In general, the mean EI values of the land-use types were strongly correlated with physical soil properties, including organic
matter content, clay content, available water capacity, permeability, and texture. CRP lands were compared in detail with
cropland in terms of their soil characteristics to infer the pivotal cause of the land transformation. Although there was
no significant statistical difference in EI between cropland and CRP soils, soil texture, soil family, and permeability were
statistically different between the two. Statistical analyses of these three variables showed that CRP soils had coarser texture
and higher permeability on average than cropland soils, indicating that CRP lands in the study area are drier than cropland
soils. Therefore, soil moisture characteristics, not necessarily soil erosion potential, might have been the key factor for
CRP enrollment in the study area. 相似文献
45.
为了科学地诊断出存在的环境问题,实现对生态环境的保护,以重点生态功能区雷山县为例,结合地形、地貌与气候等数据,以格网为评价单元,构建生态系统敏感性评价指标体系。采用层次分析法、区域综合法及格网GIS技术,对评价体系中各指标进行10 m×10 m尺度下的格网化表达,运用栅格数据的空间叠加方法及生态系统敏感性评价模型,综合评价雷山县生态系统敏感性空间格局。结果表明:雷山县生态系统敏感性较高,其中非敏感区和轻度敏感区面积较小,仅占总面积的5%和13.4%;其次是中度敏感区和极度敏感区,分别占总面积的26.3%和17%;高度敏感区面积最大,占总面积的38.3%。 相似文献
46.
为了解我国主要湖泊沉积物中重金属的污染特征,通过搜集整理已公开发表的文献资料数据,分析了我国31个主要湖泊表层沉积物中As、Cd、Cr、Cu、Hg、Ni、Pb和Zn 8种重金属含量的平均值及其分布特征,并运用地累积指数法、潜在生态风险指数法对其污染程度进行评价。结果显示:我国31个湖泊的沉积物中As、Cd、Cr、Cu、Hg、Ni、Pb、Zn平均含量分别为16.39,0.497,6.29,36.89,0.076,35.37,99.52 mg/kg,大部分元素含量平均值的最大值分布区域较为分散。地累积指数评价结果表明:8种重金属的平均污染程度由高到低依次为Cd>Hg>Cu>Zn>As>Ni>Zn>Cr,Cd和Hg在多个湖泊沉积物中达中度到重污染。潜在生态风险指数评价结果表明:8种重金属的潜在生态风险系数从高到低依次为Cd>Hg>As>Cu>Pb>Ni>Cr>Zn。8种重金属的总地累积指数和综合潜在生态风险具有显著的地域差异(P0.05),表明我国主要湖泊具有各自不同的重金属污染特征。 相似文献
47.
Yini M Yingying Zhao Yongfeng Wang Xiangzhen Li Feifei Sun Phillippe Francois-Xavier Corvini Rong Ji 《环境科学学报(英文版)》2017,29(12):60-67
Soil contamination with tetrabromobisphenol A(TBBPA) has caused great concerns;however, the presence of heavy metals and soil organic matter on the biodegradation of TBBPA is still unclear. We isolated Pseudomonas sp. strain CDT, a TBBPA-degrading bacterium, from activated sludge and incubated it with ~(14)C-labeled TBBPA for 87 days in the absence and presence of Cu~(2+)and humic acids(HA). TBBPA was degraded to organic-solvent extractable(59.4% ± 2.2%) and non-extractable(25.1% ± 1.3%) metabolites,mineralized to CO_2(4.8% ± 0.8%), and assimilated into cells(10.6% ± 0.9%) at the end of incubation. When Cu~(2+)was present, the transformation of extractable metabolites into non-extractable metabolites and mineralization were inhibited, possibly due to the toxicity of Cu~(2+)to cells. HA significantly inhibited both dissipation and mineralization of TBBPA and altered the fate of TBBPA in the culture by formation of HA-bound residues that amounted to 22.1% ± 3.7% of the transformed TBBPA. The inhibition from HA was attributed to adsorption of TBBPA and formation of bound residues with HA via reaction of reactive metabolites with HA molecules, which decreased bioavailability of TBBPA and metabolites in the culture. When Cu~(2+)and HA were both present, Cu~(2+)significantly promoted the HA inhibition on TBBPA dissipation but not on metabolite degradation. The results provide insights into individual and interactive effects of Cu~(2+)and soil organic matter on the biotransformation of TBBPA and indicate that soil organic matter plays an essential role in determining the fate of organic pollutants in soil and mitigating heavy metal toxicity. 相似文献
48.
利用气质联用仪(GC-MS)定量分析了苏州市25个道路灰尘样品中4种有机磷阻燃剂(organophosphate flame retardants,OPFRs)的含量水平和分布特征,并估算了成人、儿童和环卫工人灰尘摄入和呼吸暴露两种不同途径的日暴露量.结果表明,在灰尘样品中4种OPFRs均有不同程度检出,总OPFRs的含量范围为ND~8 901.66 ng·g~(-1),中位值为1 039.21 ng·g~(-1).三(1-氯-2-丙基)磷酸酯[Tris(1-chloro-2-propyl)phosphate,TCPP]、磷酸三(丁氧基乙基)酯[Tris(2-butoxyethyl)phosphate,TBEP]、磷酸三(1,3-二氯-2-丙基)酯[Tris(1,3-dichloro-2-propyl)phosphate,TDCPP]和磷酸三(2-氯乙基)酯[Tris(2-chloroethyl)phosphate,TCEP]含量范围分别为0~6 931.46、0~2 021.15、0~788.44和0~62.16 ng·g~(-1).在高暴露情景下,成人、儿童和环卫工人通过摄入灰尘暴露ΣOPFRs的日均暴露量分别是125.68、915.78和6 314.16 pg·kg~(-1),儿童的暴露量比普通成人高6倍;而成人、儿童和环卫工人通过呼吸途径暴露ΣOPFRs的日均暴露量分别为3.07E-02、1.89E-02和1.54E-01 pg·kg~(-1).因此灰尘中OPFRs对于儿童和环卫工人的潜在危害更大. 相似文献
49.
锌冶炼区耕地土壤和农作物重金属污染状况及风险评价 总被引:30,自引:18,他引:12
对贵州省某典型锌冶炼区耕地土壤和主要谷类农作物(稻米、玉米和小麦)进行取样调查,测定了土壤和谷类农作物中重金属Pb、Cd、Zn和Cu的含量,采用单因子污染指数和综合污染指数法评价了土壤和作物籽粒中重金属的污染状况,并分别采用潜在生态风险指数(RI)和危险商(HQ)法评价了土壤重金属污染的潜在生态风险程度和作物中重金属对成人和儿童的健康风险.结果表明:(1)冶炼区耕地土壤受到了重金属不同程度的污染,污染程度排序:玉米地水稻田小麦地,且CdCuZnPb,内梅罗综合污染指数分析结果表明,玉米地污染程度为重污染,水稻田和小麦地为轻污染,且均以Cd对综合指数的贡献最大;(2)土壤Cd存在极强生态风险,4种重金属潜在生态危害大小顺序为:CdPbCuZn;生态风险指数(RI)研究结果表明,研究区处于轻微、中等、强的和很强的生态风险程度的采样点比例分别为1.41%、21.1%、35.2%和42.3%.(3)冶炼区农作物稻米中重金属Pb、Cd、Zn、Cu的平均含量分别为0.145、0.017、16.97和2.704 mg·kg~(-1);玉米中重金属Pb、Cd、Zn、Cu的平均含量分别为0.094、0.055、26.81和4.464 mg·kg~(-1);小麦中重金属Pb、Cd、Zn、Cu的平均含量分别为0.048、0.085、35.37和5.426 mg·kg~(-1).(4)研究区稻米、玉米和小麦均存在重金属超标现象,重金属污染程度为小麦最重,稻米和玉米的污染程度相当,稻米和玉米污染等级均为安全,小麦处于警戒线.(5)各重金属元素每日摄入量均低于美国环保署的参考暴露剂量,安全性较好,但食用该区域谷类农作物引起复合重金属污染对成人和儿童均存在健康风险.(6)耕地土壤重金属含量与谷类农作物可食部分重金属含量间无明显相关性. 相似文献
50.
酸雨区不同用地类型土壤有效态Cd含量季节变化及关键影响因子 总被引:4,自引:2,他引:2
探明污染土壤重金属有效态含量的季节变化特征及其敏感影响因子,对农业生产过程中减低重金属生态风险具有重要的参考价值.研究于湘江中下游典型Cd超标农业小流域中选取稻田、旱作蔬菜地、丘陵林地这3类主要用地类型,分析不同用地类型Cd活性的季节变化特征及其与土壤基本理化参数的关联.为期1 a的原位监测结果显示,研究区为典型酸雨区,雨水p H值呈现冬、春季节低于夏、秋季.稻田土壤总Cd含量显著高于旱作蔬菜地,菜地显著高于林地,3种用地类型土壤总Cd含量季节特征相似,均为夏秋季节略低于冬春两季.3种用地类型Cd有效态季节变化与总Cd含量无明显的相关性,稻田土壤有效态Cd含量在5~9月的作物生长季明显低于其他月份,而菜地和林地则恰好相反.稻田土壤Cd有效性的最关键影响因子为Eh,呈显著正相关,与土壤p H负相关,菜地土壤与土壤TOC明显负相关,而林地土壤Cd有效性与水溶性有机碳、TOC呈现明显的正相关关系.研究可为Cd超标土壤污染阻控与农业安全生产提供一定的数据参考. 相似文献