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901.
通过对污灌区农田土壤多环芳烃(Polycyclic Aromatic Hydrocarbons,PAHs)的分布特征、污染程度及来源进行解析,深入了解污水灌溉引发的土壤污染问题,实现污水灌溉农田土壤的污染预警和科学合理利用.在太原污灌农田共采集110个土壤样品,使用气相色谱-质谱仪(Gas Chromatography...  相似文献   
902.
The United States and other developed countries are faced with restoring and managing degraded ecosystems. Evaluations of the degradation of ecological resources can be used for determining ecological risk, making remediation or restoration decisions, aiding stakeholders with future land use decisions, and assessing natural resource damages. Department of Energy (DOE) lands provide a useful case study for examining degradation of ecological resources in light of past or present land uses and natural resource damage assessment (NRDA). We suggest that past site history should be incorporated into the cleanup and restoration phase to reduce the ultimate NRDA costs, and hasten resource recovery. The lands that DOE purchased over 50 years ago ranged from relatively undisturbed to heavily impacted farmland, and the impact that occurred from DOE occupation varies from regeneration of natural ecosystems (benefits) to increased exposure to several stressors (negative effects). During the time of the DOE releases, other changes occurred on the lands, including recovery from the disturbance effects of farming, grazing, and residential occupation, and the cessation of human disturbance. Thus, the injury to natural resources that occurred as a result of chemical and radiological releases occurred on top of recovery of already degraded systems. Both spatial (size and dispersion of patch types) and temporal (past/present/future land use and ecological condition) components are critical aspects of resource evaluation, restoration, and NRDA. For many DOE sites, integrating natural resource restoration with remediation to reduce or eliminate the need for NRDA could be a win-win situation for both responsible parties and natural resource trustees by eliminating costly NRDAs by both sides, and by restoring natural resources to a level that satisfies the trustees, while being cost-effective for the responsible parties. It requires integration of remediation, restoration, and end-state planning to a greater degree than is currently done at most DOE sites.  相似文献   
903.
Because the large rivers of the Seine watershed have a low microbiological water quality, the main sources of fecal contamination were investigated in the present study. The inputs of the point (wastewater treatment plants (WWTPs) effluents) and non-point sources (surface runoff and soil leaching) of fecal bacteria were quantified for Escherichia coli and intestinal enteroccoci used as bacterial indicators. In order to assess the contamination through non-point sources, fecal indicators abundance was estimated in samples collected in small streams located in rural areas upstream from all point sources; these small rivers were characterized by the land use of their watershed. Bacterial indicator numbers were also measured in effluents of WWTPs, some using classical treatment (settling followed by activated sludge process) and some using an additional disinfection stage (UV irradiation). These data were used to estimate the respective importance of each type of source at the scale of the whole Seine river watershed taking into account the land use and the population density. It shows the predominant importance of the point sources of fecal indicator bacteria at the scale of the whole watershed. In a scenario in which activated sludge treatment would be complemented with UV in all WWTPs located in this watershed, the non-point sources of fecal indicator bacteria would be dominant.  相似文献   
904.
In the Heihe River Basin in the arid inland area of northwest China, the distribution of water resources in vegetation landscape zones controls the ecosystems. The carbon sequestration capacity of vegetation is analyzed in relation to water resources and vegetation growing conditions. During the last 20 years, the vegetation ecosystems have degenerated in the Heihe River Basin. Simulation using the C-FIX model indicates that, at present, the total amount of NPP of vegetation accounts for about 18.16 TgC, and the average value is 106 gC/m(2)/yr over the whole basin. NPP has generally the highest value in the upperstream mountain area, middlestream artificial oases area, downstream river bank area, alluvial fan and the terminal lake depression where vegetation grows relatively well. The lowest value is found in the vast downstream desert and Gobi area. Protection of vegetation ecosystems and enhancement of carbon sequestration require such inland river basins as the Heihe River Basin to be brought under management in a comprehensive way, taking water as a key, to carry out a rational and efficient allocation and utilization of water resources.  相似文献   
905.
Preliminary surveys are used to prioritize between contaminated sites to select those to be investigated more thoroughly. The data-gathering steps are almost identical between countries; however, the assessment procedures differ significantly. In this study, we have investigated 21 contaminated sites assessed as belonging to the high-risk or the very high-risk class using the Swedish Methods for Inventories of Contaminated Sites (MICS). We then applied the US Preliminary Assessment (PA) method to the same sites and compared the results and conclusions from the two screening procedures. In both cases, all sites were recommended for further investigation and the two approaches seem to corroborate one another; however, the PA assessment scores and the preliminary MICS classifications did not correlate. The results obtained with the PA method were easier to explain than the final MICS classification. The PA method also seems more transparent and easier to standardize, although objections could be made regarding the weighting scheme, because the outcome in this study was entirely dependent on the surface exposure pathway. However, to examine this in greater detail, it is necessary to include sites with less contamination: The importance of preliminary surveys in the overall risk management process gives a strong motivation for such an evaluation. Generally, the lack of research and scientific support for the various assessment procedures in use suggests that there is a need for method development, standardization, and validation.  相似文献   
906.
目前,土壤重金属污染形势严峻,而微生物辅助植物修复的措施以其绿色友好的特性备受关注,其中,研发高效的微生物菌剂对提高修复效率至关重要.针对一种能代谢植物激素脱落酸(ABA)的微生物—樊庆生红球菌(Rhodococcus qingshengii)进行菌剂制备研究,并验证其对超积累植物东南景天提取重金属镉(Cd)、铜(Cu)、镍(Ni)和锌(Zn)能力的强化效果.结果表明,该菌种制备优化条件为:80%麦麸∶15%锯末∶5%活性炭;料水比1∶2、pH=9;接菌量40%;培养温度30℃、培养时间3 d、烘干温度40℃.优化后,固体菌剂有效活菌数可达2×1012CFU·g-1,与土壤混合后其有效活菌数峰值达1×1011CFU·g-1,是接种相同活菌数液体菌剂的4倍,30 d保有的有效活菌数是液体菌剂的23倍.与未配施的空白相比,该菌剂配施于不同重金属污染土壤中,可使东南景天的Cd含量提高110%~260%,Ni和Zn含量分别提高约100%和90%;生物富集因子(BCF)则提高50%~500%,转运系数(TF)...  相似文献   
907.
为探究农业土地利用转变对土壤团聚体组成、稳定性及有机碳(SOC)、全氮(TN)含量变化的影响,选取玉米地、玉米地转变为姜地、稻田和稻田转变为姜地4种农业土地利用类型为研究对象,对土壤水稳性团聚体的组成、稳定性及SOC、TN含量进行测定与分析.结果表明: ①玉米地转变为姜地后,>0.25 mm粒级的大团聚体减少21.48%(p<0.01),>0.25 mm稳定性团聚体的含量(DR0.25)显著降低53.39%;稻田转变为姜地后,大团聚体差异不显著,<0.053 mm粒级的粉黏团聚体增加8.93%(p<0.01);冗余分析和相关分析表明,土壤含水量是团聚体组成和 稳定性的重要影响因素;②玉米地转变为姜地后,0.25~1 mm粒级团聚体中SOC、TN含量分别减少52.68%、50.98%,粉黏团聚体(<0.053 mm)中SOC和TN含量增加约2倍(p<0.01);稻田转变为姜地后,>0.25 mm的大团聚体和0.053~0.25 mm的微团聚体中的SOC、TN含量均减少(p<0.05),其中,大团聚体碳氮比与团聚体组成和稳定性存在相关关系(p<0.05);③所有处理均为大团聚体SOC、TN贡献率最高,转变后的姜地较玉米地、稻田的土壤粉黏团聚体的SOC、TN贡献率显著增加,尤其是较玉米地的粉黏团聚体SOC、TN贡献率增加3倍(p<0.01);④平均质量 直径(MWD)和几何平均直径(GMD)与大团聚体的SOC、TN含量呈显著正相关(p<0.05),分形维数(D)与MWD及1~2 mm粒级大团聚体的SOC、TN含量呈显著负相关(p<0.01),DR0.25与大团聚体的SOC、TN含量呈显著正相关(p<0.01).总体上,玉米地和稻田两种用地转变为姜地后,土壤团聚体的组成发生较大变化,团聚体稳定性变化虽不显著,但大团聚体中SOC、TN含量降低,粉黏团聚体中SOC、TN含量增加.本研究的开展对农田科学管理和可持续生产具有重要的指导意义.  相似文献   
908.
推动冰雪资源高质量开发,是实现联合国可持续发展目标的新路径与新模式,是践行“两山理论”的重要环节,也是落实全民健身国家战略、助力体育强国建设的重要手段。在实际建设的理论指导层面,社会学所倡导的幸福感理论明确了冰雪资源高质量开发的终极目标,资源经济学的资源价值理论为冰雪资源的价值认识及价格核算提供了科学工具,地理学的人地关系理论是探究空间分异规律及人地系统耦合路径的理论基石。基于我国冰雪资源开发实践的系列转变及现实挑战,提出我国冰雪资源高质量开发的实现路径,即坚持观念创新的发展方式、多重协调的发展要求、积极开放的发展理念以及主客共赢的发展目标。  相似文献   
909.
黑土地是重要的农产品生产基地之一,承担着保障国家粮食安全和维护农业生态安全的重要责任,保护好黑土地对促进我国农业可持续发展至关重要。测算与分析2000—2020年东北黑土地粮食生产耕地压力的变化情况,研究国际贸易对东北黑土地粮食生产的耕地压力的影响,利用国际市场占有率指数和贸易竞争优势指数分析东北黑土地农产品在国内及国际两个市场的竞争优势。结果表明:近20年来东北黑土地粮食生产的耕地压力基本处于安全压力区并呈逐步下降的趋势,玉米、大豆、稻谷三种主要作物生产的耕地压力分别从2000年的1.94、1.09和0.63下降至2020年的0.69、0.26和0.54。国际粮食贸易对黑土地粮食生产耕地压力减缓的作用显著且呈现出逐年上升的趋势,2020年对黑土地粮食生产耕地压力减缓的贡献率达26.22%,其中对大豆生产的耕地压力减缓的贡献率达511.48%。农产品贸易优势度分析结果显示,东北黑土地农产品在国内市场具有明显的贸易竞争优势,但在国际贸易中的竞争优势不明显。为此,提出了国际贸易粮食贸易变化背景下黑土地保护的若干建议,为东北黑土地保护及其粮食产能保障相关决策提供参考。  相似文献   
910.
铁基硅盐对土壤环境镉砷赋存形态及转化影响   总被引:1,自引:0,他引:1  
为探明铁基硅盐对土壤镉砷赋存形态影响及各形态间转化规律,采用室内长期淹水培养吸附实验,研究不同比例铁硅材料对土壤离子态镉砷活性影响;筛选适宜铁基硅盐(FS)配比同时添加腐殖酸(FSC)和金属氧化物(FSCa),明确复配处理土壤中镉砷分级形态转化程度.结果显示,铁:硅比值增加10%,土壤pH值平均降低0.35;F2-S8处理土壤离子态镉降幅71%;F10-S0处理土壤离子态砷降低59.9%,离子态镉砷含量与硅酸盐-铁盐施用量互呈反比;处理F4-S6和F6-S4之间镉、砷钝化率产生交点,约为25%~30%.土壤中镉主要以可溶态为主,占比58%;砷主要以铁铝氧化态和钙结合态为主,占比40%和23%.铁硅比例为5:5或5.5:4.5左右复配能有效将铝结合态砷和铁铝氧化态砷转变为钙结合态砷和残渣态砷,可溶态镉转化为碳酸盐结合态镉以及铁锰氧化态镉,同步降低土壤中镉砷的活性.  相似文献   
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