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11.
文章通过对黄茅海底质沉积样品中的介形类生态类型进行研究,探讨其空间分布特征。研究结果显示:研究区内出现的介形类可划分为4种生态类型,总体表现为以近岸广盐型分子占主导地位,优势度极高;浅海多盐 真盐型分子次之;而广海真盐型和淡水 微盐型分子丰度很低。根据黄茅海河口湾的水体条件,可大致将研究区划分为5种亚环境区,各区内的介形类生态类型组成也存在较大差别,表现出不同的空间分布特征。介形类分布受海水盐度控制最大,其次为水动力条件。在水体盐度小、水动力条件强的河流入海口及其影响区域,介形类丰度小,且生态类型单一;而在黄茅海河口湾南部海域,由于海水底层盐度全年在15‰以上,水动力条件适宜,介形类丰度总体较高,生态类型增多。  相似文献   
12.
为了揭示季节性低温胁迫下陇东黄土高原油污土壤环境因子对耐冷混合菌场地生态修复的响应机制,利用自主筛选构建的耐冷石油降解混合菌在甘肃省庆阳市庆城县马岭镇长庆油田陇东油泥处理站开展了为期7个月的场地修复实验,采用常规方法测定了不同季节土壤理化特性、酶活性和微生物群落特性等环境指标。结果表明:(1)在季节性低温胁迫下(9-11月)M2组(耐冷混合菌处理组)月平均降解率明显增加(P<0.01),JZJ+M1组(金盏菊联合常温混合菌处理组)和M2组累计TPH降解率分别为15.37%±3.51%和28.64%±4.12%。(2)M2组土壤脱氢酶和多酚氧化酶在低温季节(LT)活性最高,且温度和处理存在显著交互作用(P<0.01)。在土壤营养元素方面,无论何种处理方式(JZJ+M1和M2)二者含量均为RT(常温季节)高于LT(P<0.05),同时明显高于CK组(P<0.05)。(3)M2组土壤微生物群落Shannon-Wiener指数和均匀度指数在LT高于RT(P<0.05)。(4)NMDS和Pearson相关性分析结果显示,M2组在低温季节具有较高TPH降解率主要与土壤多酚氧化酶、脱氢酶、单月TPH降解率(μ2)和Shannon-Wiener指数有关,且均呈极显著正相关关系。通过分析环境因子的季节响应,优化场地修复在低温环境的降解条件、加速低温期石油烃降解速率,以期为陇东地区低温耐冷混合菌场地生态修复技术的推广应用提供参考和基础数据资料。  相似文献   
13.
本文以烟台市牟平区某废弃矿山为例,介绍了该区域存在的地质环境问题,分析了造成该区域矿山地质环境破坏的原因,以恢复耕地、草地、林地为目的,对区内的现状进行分析,对采坑、残丘、料场提出相应的修复方案。矿山地质环境恢复治理需从科学的角度树立正确的修复理念,落实地貌重塑、土壤重构和植被恢复三大矿山修复核心技术,为矿山地质环境保护与生态恢复治理提供重要的科学依据。  相似文献   
14.
生态需水是湖泊生态系统的重要指标,维持着湖泊生态系统的良性循环.以内蒙古中部半干旱湖泊岱海为研究对象,对湖泊动态生态需水进行分析.本研究在遥感和气象数据的基础上,获得1975-2020年长时间序列高精度水文要素数据,分析岱海水文要素时空演变规律;通过天然生态水深分析法、水深经验频率分析法和湖泊形态分析法分析岱海的水深随面积变化的关键水深;构建基于生态耗水规律的湖泊生态需水模型,计算自然状态下岱海生态需水动态变化范围.研究结果如下:岱海地区6-9月为丰水期,10月至次年5月为枯水期;45 a以来岱海水面面积呈显著下降趋势,近年来下降速率减缓;枯水期岱海适宜生态水深为8.72~9.92 m,丰水期为9.40~10.69 m,适宜生态需水量为5.62亿~7.71亿m3,适宜湖面面积为70.92~84.77 km2.本文构建了长时间序列气候水文数据库,确定岱海动态生态需水范围可以实现对湖泊生态健康的实时监测,为相关规划与管理提供科学依据及可操作性指导,从而为岱海湖泊治理提供理论参考.  相似文献   
15.
In the current research,the impact of the COVID-19 lockdown period on sediment quality of the MericErgene River Basin was evaluated by determining the potentially toxic elements(PTEs) in sediment samples collected from 25 sampling points in the basin.Also some important ecological indicators including potential ecological risk index(PERI),contamination factor(CF),pollution load index(PLI),biological risk index(BRI),and geo-accumulation index(Igeo) and some important statistical indica...  相似文献   
16.
重金属不可降解,长期存在于土壤环境会严重影响作物安全。添加巯基改性凹凸棒石黏土(ATP-SH)到不同Cd污染程度土壤中,进行盆栽油菜实验,以石墨炉原子吸收光谱法测定了土壤有效态Cd和油菜不同部位Cd的含量;采用SPSS讨论了ATP-SH添加量、土壤有效态Cd、油菜不同部位Cd的相关性;计算了油菜对Cd的富集系数及转运系数,探究了ATP-SH对土壤Cd的钝化效果及对油菜富集和转运Cd的影响。实验结果显示,添加ATP-SH后,土壤有效态Cd、油菜各部位Cd含量显著降低,土壤有效态Cd降低率为40.65%~74.27%,油菜根、茎、枝、菜籽中Cd降低率分别为29.36%~79.46%、41.44%~88.45%、43.19%~95.89%和38.02%~95.81%;ATP-SH添加量与土壤有效态Cd、油菜各部位Cd含量均呈显著或极显著负相关,土壤有效态Cd与油菜各部位Cd含量均呈显著或极显著正相关,油菜各部位之间的Cd含量存在明显正相关关系;对照组油菜根、茎、枝、菜籽对Cd的富集系数分别是实验组的1.42~4.87倍、1.71~8.66倍、1.92~24.43倍、1.61~23.76倍,油菜各部位Cd的转运系数的大小是茎>枝>菜籽,且茎远大于枝和菜籽,是枝和菜籽转运系数的3.5~25倍。综上,ATP-SH能降低土壤Cd的生物有效性,阻隔土壤Cd向油菜迁移。  相似文献   
17.
为了解决微米铁的重力沉降问题,提高微米铁修复地下水Cr(Ⅵ)污染的原位修复效果,本文利用黄原胶对微米铁进行改性,并通过沉降实验探究改性微米铁浆液的稳定性,同时选择Cr(Ⅵ)作为目标污染物,探究黄原胶改性微米铁去除地下水Cr(Ⅵ)污染的降解能力。实验结果显示:当黄原胶的投加质量浓度分别为0.0、1.0、1.5、2.0、2.5、3.0、6.0 g/L时,改性微米铁浆液的悬浮稳定性逐渐得到加强,在5 h沉降实验结束时,对应的相对分光光度值分别为0.05、0.25、0.46、0.57、0.65、0.73和0.87;黄原胶具有抑制微米铁吸附Cr(Ⅵ)的能力,其可促进Cr(Ⅵ)的还原,提高Cr(Ⅵ)的去除率;随着黄原胶投加质量浓度的增加,对应的Cr(Ⅵ)去除率分别为33.4%、41.2%、47.4%、51.1%、53.0%、63.9%和64.1%;6.0 g/L黄原胶改性的微米铁浆液具有最佳的悬浮稳定性,黄原胶的投加提高了微米铁的反应活性,但当黄原胶投加质量浓度超过3.0 g/L时,其对Cr(Ⅵ)的去除率没有显著提高;黄原胶投加质量浓度越大,黄原胶的缓冲作用就越明显。  相似文献   
18.
《China Geology》2021,4(3):421-432
The Badain Jaran Desert is the third largest desert in China, covering an area of 50000 km2. It lies in Northwest China, where the arid and rainless natural environment has a great impact on the climate, environment, and human living conditions. Based on the results of 1∶250000 regional hydrogeological surveys and previous researches, this study systematically investigates the circulation characteristics and resource properties of the groundwater as well as the evolution of the climate and ecological environment since the Quaternary in the Badain Jaran Desert by means of geophysical exploration, hydrogeological drilling, hydrogeochemistry, and isotopic tracing. The results are as follows. (1) The groundwater in the Badain Jaran Desert is mainly recharged through the infiltration of local precipitation and has poor renewability. The groundwater recharge in the desert was calculated to be 1.8684×108 m3/a using the water balance method. (2) The Badain Jaran Desert has experienced four humid stages since the Quaternary, namely MIS 13-15, MIS 5, MIS 3, and the Early–Middle Holocene, but the climate in the desert has shown a trend towards aridity overall. The average annual temperature in the Badain Jaran Desert has significantly increased in the past 50 years. In detail, it has increased by about 2.5°C, with a higher rate in the south than in the north. Meanwhile, the precipitation amount has shown high spatial variability and the climate has shown a warming-drying trend in the past 50 years. (3) The lakes in the hinterland of the Badain Jaran Desert continuously shrank during 1973–2015. However, the vegetation communities maintained a highly natural distribution during 2000–2016, with the vegetation cover has increased overall. Accordingly, the Badain Jaran Desert did not show any notable expansion in that period. This study deepens the understanding of groundwater circulation and the climate and ecological evolution in the Badain Jaran Desert. It will provide a scientific basis for the rational exploitation of the groundwater resources and the ecological protection and restoration in the Badain Jaran Desert.© 2021 China Geology Editorial Office.  相似文献   
19.
Assessment of ecological risk (ER) is a key approach to adapting and mitigating ecological deterioration in cities of developing countries. In developing countries, the ecological landscapes such as vegetation cover, water bodies, and wetlands are highly vulnerable due to rapid urban expansion. Therefore, urban ER (UER) assessment and its drivers are crucial to guide ecological protection as well as restoration. This study aims to explore the spatiotemporal pattern of UER and the impact of urban spatial form on UER in the Kolkata Megacity Region (KMR), India. This study developed a UER index and used spatial regression models across the urban centres. The ER has been assessed at city scale as well as grid-scale (2 km × 2 km and 5 km × 5 km) from 2000 to 2020. The results showed that ER has substantially increased over the last 20 years. The urban centres with very high and high ER substantially increased, i.e. from 21.95% in 2000 to 31.70% in 2020. Kolkata and its surrounding urban centres were mostly characterized by very high and high ER. ER was influenced by spatial variables (such as land use and landscapes pattern). However, remote sensing parameters were weakly related to ER. The spatial lag model (SLM) (R2 = 0.8686) was found to be better fit model than spatial error model (SEM) (R2 = 0.8661) and ordinary linear regression model (OLS) (R2 = 0.8641). Thus, the findings of the study can improve research and a comprehensive framework for urban ecological resources and provide a scientific basis for urban ecosystem planning and restoration. In addition to this, it will guarantee the sustainable utilization of urban ecosystems.  相似文献   
20.
The objective of this study was to analyze the response of runoff in the area of runoff yield of the upstream Shiyang River basin to climate change and to promote sustainable development of regional water resources and ecological environment. As the biggest tributary of the Shiyang River, Xiying River is the only hydrological station (Jiutiaoling) that has provincial natural river and can achieve long time series monitoring data in the basin. The data obtained from this station is representative of natural conditions because it has little human activites. This study built a regression model through identifying the characteristics of runoff and climate change by using Mann-Kendall nonparametric statistical test, cumulative anomaly, and correlation analysis. The results show that the average annual runoff is 320.6 million m3/a with the coefficient of variation of 0.18 and shows slightly decrease during 1956–2020. It has a significant positive correlation the average annual precipitation (P<0.01). Runoff is sensitive to climate change, and the climate has becoming warm and wet and annual runoff has entering wet period from 2003. Compared to the earlier period (1955–2000), the increases of average annual temperature, precipitation and runoff in recent two decades were 15%, 9.3%, and 7.8%, respectively. Runoff in the Shiyang River is affected by temperature and precipitation among climate factors, and the simulation results of the runoff-climate response model (R = 0.0052P ? 0.1589T + 2.373) indicate that higher temperature leads to a weakening of the ecological regulation of surface runoff in the flow-producing area.  相似文献   
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