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71.
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   
72.
邢钰  庞伟毅  徐笠 《中国环境科学》2022,42(5):2387-2394
利用拉曼光谱技术采集不同铅离子暴露时间(0.5,1.5,3,6,12,24h)、暴露浓度(0.05,0.1,0.5,1,5mg/L)下HepG2细胞的光谱数据,欲探究在不同铅暴露条件下肝细胞的分子变化及其相关机制.研究结果发现,在不同条件下各组细胞的光谱形态基本相同,但部分特征峰的吸光度强度存在差异.经多元统计分析发现,除6h外,同一暴露时间下不同暴露浓度细胞的光谱数据在LD1上均存在离散趋势,并在暴露24h时最明显.细胞内蛋白质、脂质、核酸、类胡萝卜素、碳水化合物等生物分子的特征峰表现出明显差异,但不同类型生物分子发生显著变化的时间并不相同.由此可见铅暴露可损伤肝细胞蛋白质、脂质、核酸、类胡萝卜素的结构并影响其正常功能,这种毒性效应呈剂量-效应关系,且随暴露时间的增加而增加.本研究说明拉曼光谱可以实现铅对肝细胞生物分子变化的相关检测,这不仅为之后的细胞毒理研究提供了新的思路,同时也为环境污染物的安全评价提供了理论依据.  相似文献   
73.
为探究Se-Ca联合膳食干预对生物Cd中毒的缓解效果,选取88只BALB/c小鼠,随机划分为19组,在相同饲料Cd暴露浓度下(2mg/kg)分别设置低、中、高浓度的Se和Ca单独和联合膳食干预处理,并观察30d后小鼠的生长发育、肝肾功能、氧化应激状态和组织病理变化.结果显示,Se-Ca联合干预可有效缓解Cd蓄积所致小鼠生长发育迟缓现象,且进一步促进小鼠生长;肝肾功能及氧化应激指标测定结果表明,Se-Ca联合干预对Cd暴露下小鼠肝脏AST、GSH、SOD、GSH-Px和肾脏BUN、MDA、SOD的保护效果优于单一元素干预;联合干预仅需较小剂量即可达到单独Se或Ca干预对肝肾病理损伤的最佳缓解效果.Se-Ca联合膳食干预可有效缓解Cd摄入导致的生长发育缓慢和肝肾毒性,且较之单一元素的干预效果更佳.  相似文献   
74.
运用Pearson相关性分析,变量重要性评分和随机森林方法构建了溶解氧(DO)实时预测模型,并以深圳湾为例采用浮标资料预测1,3,6和12h的溶解氧.模型预测结果表明,模型最优的输入条件为pH值,水温,叶绿素a,氧化还原电位和蓝绿藻5个水质指标,1h预报的相关系数在0.9以上,6h预报结果一定程度上可以满足工程要求,但对低溶解氧事件的预报必须在3h以内.  相似文献   
75.
目的 研究毫米波引信近炸探测器超宽带(Ultra-wideband,UWB)电磁脉冲防护加固措施,提高引信的电磁防护能力。方法 利用超宽带辐照试验平台,开展辐照试验,通过测试,确定受损探测器的损伤部位,明确辐照效应机理,并提出针对性加固措施。结果 超宽带电磁脉冲可使探测器出现死机或硬损伤的现象,受试探测器的效应场强阈值在50~80 kV/m。死机可在重启后恢复,而硬损伤为不可恢复现象。结论 毫米波引信近炸探测器对超宽带电磁脉冲较为敏感,锁相环回路是探测器的敏感部位。探测器暴露在辐照场下的射频电路和天线窗口是超宽带能量的主要耦合通道。采取改进元器件布局、更换器件和屏蔽线等加固措施后,探测器超宽带的防护能力有较大提升,证明了加固措施的有效性。  相似文献   
76.
目的使用简谐激励替代随机平直谱激励进行振动疲劳试验。方法利用有限元仿真计算某典型铝合金试验件在简谐激励和随机平直谱激励下的疲劳寿命,分析2种工况下试验件寿命相等时激励的等效关系。进行一组定频激励试验和一组谱激励试验,对比试验结果,验证在某典型铝合金试验件上利用简谐激励替代随机平直谱激励进行振动疲劳试验的可行性。结果通过试验与仿真技术,对2024-T4铝合金试验件在一定频率非共振简谐激励和随机平直谱激励作用下的振动疲劳寿命规律进行研究,得出了不同激励作用下试验件寿命相同时载荷的等效关系。结论基于损伤等效,工程中可以使用简谐激励代替随机平直谱激励进行振动疲劳试验,从而解决了一类振动疲劳试验加载困难的问题,实现振动疲劳的试验加速。  相似文献   
77.
以攀枝花市为例,综合运用GIS空间分析技术和变异系数权重分析、灰色关联度等方法建立了城市基础设施与土地收益的关联度模型,定量分析城市基础设施与土地收益的关联关系,揭示两者间的关联规律和作用机理.结果表明:①城市基础与土地收益存在较大关联性;②城市基础设施与土地收益关联度在时间序列上具有明显的波动性且呈周期性变化;③城市基础设施与土地收益关联度在空间上呈分异特征.  相似文献   
78.
The safety of Tinospora cordifolia and its potential to protect against ultraviolet radiation‐induced cytotoxicity and DNA damage in PC12 cells were investigated. To evaluate the safety of T. cordifolia, cell viability and agarose gel electrophoresis were carried out using PC12 cells treated with 0 to 100 μg mL?1 of methanol extract of T. cordifolia. T. cordifolia extracts did not show cytotoxicity ranging 0 to 100 μg mL?1. In addition, T. cordifolia extracts significantly increased cell viability at 1 ng, 10 ng and 1 μg mL?1 concentrations in serum‐deprived medium compared to control. To confirm the protective role against UV‐induced damage, PC12 cells alone or in the presence of 10 ng, 100 ng, or 1 μg mL?1 of T. cordifolia extract were exposed to 250, 270 and 290 nm of UV radiation, which corresponded to doses of 120, 150 and 300 mJ cm?2, respectively. Treatment with T. cordifolia extracts significantly increased the cell survival rate irradiated at 290 nm. In addition, T. cordifolia extracts significantly reduced cyclobutane pyrimidine dimer formation induced by UV irradiation at all wavelengths. In conclusion, T. cordifolia is not toxic and safe for cells. Our findings can support its application as phototherapy in the medical sector.  相似文献   
79.

A chamber study was conducted to evaluate the growth response and leaf nitrogen (N) status of four plant species exposed to continuous ammonia (NH3) for 12 weeks (wk). This was intended to evaluate appropriate plant species that could be used to trap discharged NH3 from the exhaust fans in poultry feeding operations before moving off-site. Two hundred and forty bare-root plants of four species (Juniperus virginiana (red cedar), Gleditsia triacanthos var. inermis (thornless honey locust), Populus sp. (hybrid poplar), and Phalaris arundinacea (reed canary grass) were transplanted into 4- or 8-L polyethylene pots and grown in four environmentally controlled chambers. Plants placed in two of the four chambers received continuous exposure to anhydrous NH3 at 4 to 5 ppm while plants in another two chambers received no NH3. In each of the four chambers, 2 to 4 plants per species received no fertilizer while the rest of the plants were fertilized with a 100 ppm solution containing 21% N, 7% phosphorus, and 7% potassium. The results showed that honey locust was the fastest-growing species. The superior growth of honey locust among all species was also supported by its total biomass, root, and root dry matter (DM) weights. For all species there was a trend for plants exposed to NH3 to have greater leaf DM than their non-exposed counterparts at 6 (43.0 vs. 30.8%; P = 0.09) and 12 wk (47.9 vs. 36.6%; P = 0.07), and significantly greater (P ≤ 0.05) leaf N content at 6 (6.44 vs. 3.67%) and 12 wk (7.05 vs. 3.51%) when exposed to NH3. Numerically greater leaf DM due to NH3 exposure was also consistently measured in poplar at both sampling periods. Hybrid poplar, as well as honey locust and reed canary grass, deposited 1.5 to 2-fold greater N in their leaves than red cedar tissues as a result of NH3 exposure compared to non-exposed plants. Regardless of the effect of NH3 on foliar color and damage score of the plants, the increase of foliar N content (g 100 g?1 of fresh foliage weight) after NH3 exposure at 6 and 12 wk was 0.45 and 0.87 for grass,1.25 and 1.34 for locust, and 2.67 and 6.09 for poplar. However, only honey locust likely benefited from ambient NH3 as indicated by its consistent leaf color quality and lower damage score, compared with other species that were adversely affected by atmospheric NH3.  相似文献   
80.
火电行业是我国经济社会发展的重要基础和保障,但也是碳排放的主要源头之一。在“双碳”目标约束下,新能源装机将持续增长,而火电机组则面临降碳和退役的压力。以安徽省为研究区域,考虑“双碳”目标与污染导致的健康损失等因素,对全省现役火电机组的计划退役与有序退役方案进行对比分析,为火电行业实现低碳发展提供路径参考。在有序退役方案下,结合初始投资、使用年限、年度发电收益与污染物排放计算出现役机组每年的净现值,并且根据未来安徽省碳排放削减目标,得到优化后的机组退役时间和顺序。结果表明:与常规的计划退役方案相比,有序退役方案使安徽省火电机组退役时间平均提前约5 a,在2060年碳中和之前可实现现役机组全部退役。2020—2060年,现役机组有序退役可累计减少碳排放量12.76亿t;累计减少SO2、NOx、PM2.5排放量分别为1.44万t、2.13万t、0.17万t,比计划退役方案减少8.66亿元的健康损失。机组的有序退役不仅能带来巨大的环境效益与社会效益,也为“双碳”目标的实现提供了有力保障。  相似文献   
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