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951.
黄河流域是中华文明的重要发祥地,是我国重要的生态廊道和经济地带,也是我国开发历史最为悠久、人地矛盾最为紧张的区域之一。黄河流域生态保护和经济发展对于国家生态安全、经济社会现代化和文化传承发展具有重要意义。作为复杂巨系统,黄河流域的自然资源状况和人类活动变迁深刻影响着区域城乡发展,充分研究流域内各类要素的相互作用是实现流域人地和谐、有序发展的关键。  相似文献   
952.
Paddy soil and irrigation water are commonly contaminated with hexavalent chromium [Cr(VI)] near urban industrial areas, thereby threatening the safety of agricultural products and human health. In this study, we develop a porous and high specific area bone char (BC) to support nanoscale zero-valent iron (nZVI) and apply it to remediate Cr(VI) pollution in water and paddy soil under anaerobic conditions. The batch experiments reveal that BC/nZVI exhibits a higher removal capacity of 516.7 mg/(g?nZVI) for Cr(VI) than nZVI when normalized to the actual nZVI content, which is 2.8 times that of nZVI; moreover, the highest nZVI utilization is the nZVI loading of 15% (BC/nZVI15). The Cr(VI) removal efficiency of BC/nZVI15 decreases with increasing pH (4 – 10). Coexisting ions (phosphate and carbonate) and humic acid can inhibit the removal of Cr(VI) with BC/nZVI15. Additionally, BC exhibits a strong advantage in promoting Cr(VI) removal by nZVI compared to the widely used biochar and activated carbon. Our results demonstrate that reduction and coprecipitation are the dominant Cr(VI) removal mechanisms. Furthermore, BC/nZVI15 shows a significantly higher reduction and removal efficiency as well as a strong anti-interference ability for Cr(VI) in paddy soil, as compared to nZVI. These findings provide a new effective material for remediating Cr(VI) pollution from water and soil.  相似文献   
953.
主要总结了零价铁与微生物耦合体系修复污染地下水的作用效能与机制,介绍了零价铁与微生物耦合体系中零价铁的和微生物的主要来源及特征,总结了该耦合技术对地下水中氯代烃、重金属以及硝酸盐的去除效能、作用机制以及产物,由于零价铁与微生物之间的协同作用,相较于单一体系,耦合体系对多种污染物的去除效率具有明显的优势,且耦合体系中污染物的去除产物更加无害化.此外,从材料本身与环境因子两个方面概述了零价铁与微生物耦合体系降解效率的影响因素,阐明了零价铁与微生物之间的交互作用机制.零价铁的毒性作用和刺激作用对微生物的生长与群落变化起到了重要作用,同时微生物的存在影响了零价铁的电子传递与钝化产物的构成.最后,提出了零价铁与微生物耦合体系的未来研究需求,总结了该技术的优势与不足,有利于该技术在地下水修复中的高效应用.  相似文献   
954.
基于污染场地,筛选了一株可降解氯苯(CB)的微生物,经鉴定该菌株属于粘质沙雷氏菌属(Serratia marcescans),命名为Serratia marcescans TF-1.同化降解结果表明,该菌株能够在有氧的条件下以CB为唯一碳源和能源,菌体平均增长速率为0.0063~0.022gcell/(molCB·h),最大比生长速率(μmax)为0.015~0.42h-1,CB降解速率(VCB)为1.35~4.47mol/(gcell·h),菌株对CB最高耐受浓度高于200mg/L.共代谢降解结果显示,TF-1可以琥珀酸钠和柠檬酸钠为底物共代谢降解CB;氯苯浓度(cCB)<80mg/L时,μmax(柠檬酸钠)(0.21~0.87h-1)>μmax(琥珀酸钠)(0.20~0.81h-1),VCB(柠檬酸钠)(0.15~0.47mol/(gcell·h))<VCB(琥珀酸钠)(0.17~0.48mol/(gcell·h));cCB>80mg/L时,μmax(柠檬酸钠)(0.086~0.21h-1)<μmax(琥珀酸钠)(0.17~0.25h-1),VCB(柠檬酸钠)(0.61~1.11mol/(gcell·h))>VCB(琥珀酸钠)(0.56~0.95mol/(gcell·h)),表明共代谢降解过程中,CB浓度,底物种类是调控污染降解的重要因素.最后考察了温度、pH值和接种量对TF-1降解CB的影响,结果发现,该菌株适宜生长的温度范围为20~35℃,最适温度为30℃;适宜生长pH值为5~9,最适pH值为7;最适接种量为5%.与现有菌株比较发现TF-1的温度和pH值适用范围更广,降解能力更强,污染物耐受浓度更高,既能同化又能共代谢降解CB,在贫营养和富营养污染场地中应用潜力更大.本研究可为原位CB污染场地修复提供有效的生物资源.  相似文献   
955.
以自制的g-C3N4和氧化石墨烯(GO)及TiO2为原料,通过静电吸附组装、水热还原等反应过程制备以还原氧化石墨烯(rGO)为光生电子传输介质的g-C3N4/rGO/TiO2光催化材料,并通过冷场发射扫描电镜(SEM)、X射线衍射光谱(XRD)、紫外-可见光漫反射光谱(UV-Vis-DRS)、光电流密度测试等方法对催化剂形貌结构和光学性能进行了表征.选择含氮浓度为50mg/L的氨氮溶液作为模拟原水,调节氨氮溶液的pH值至9~10,研究了该光催化材料在氙灯照射下的氨氮去除效果.结果表明,g-C3N4/rGO/TiO2光催化材料的SEM照片显示其为TiO2包覆结构,复合材料的XRD图谱同时出现了TiO2和g-C3N4的衍射峰,DRS光谱则体现出复合材料在可见光区的光吸收能力明显增强;对氨氮的去除实验表明原材料GO:g-C3N4=1:10的复合光催化材料有较好的光催化降解氨氮的性能,氨氮平均去除率为97%.通过采用电子顺磁共振(EPR)测定反应过程中的活性自由基,推测降解机理为:复合光催化剂在氙灯照射下生成的超氧阴离子自由基和羟基自由基直接在材料表面对吸附的NH3进行氧化,而rGO则作为光催化材料的传输介质起到了传导光生电荷的作用.  相似文献   
956.
Alternaria mycotoxins are of concern due to its adverse health effect, they affect various cereal crops and grain-based food along with modified forms that contribute to overall exposure. This study aimed to determine the frequency and level of exposure to Alternaria mycotoxins (tenuazonic acid, TeA; alternariol, AOH; alternariol monomethyl ether, AME; tentoxin, TEN; and altenuene, ALT) in human urine from Beijing adults. A total of 2212 urine samples were collected and analyzed for five mycotoxins using LC–ESI–MS/MS. More than 98% of the samples had at least one Alternaria mycotoxin detected. Among the mycotoxins, AME had the highest detection rate (96.0%), followed by TeA (70.5%). The calculated average daily intake values of AME (12.5 ng/kg b.w.) was 5 times the TTC value (2.5 ng/kg b.w.) set by the EFSA, indicating the potential health risks associated with mycotoxins. Immediate attention and subsequent actions should be taken to identify the sources of mycotoxins and the corresponding exposure pathways to humans in the investigated regions.  相似文献   
957.
Lead (Pb) and manganese (Mn) are common neurotoxins. However, individuals are subject to co-exposures in real life, and it is therefore important to study these metals in combination. Weaning Sprague-Dawley rats were given ad libitum access to drinking water solutions containing Pb (100 mg/L), Mn (2.5 mg/mL) or a mixture, and each treatment had its own minocycline (50 mg/(kg•day)) supplement group. The results showed a significant difference in spatial memory and induction levels of hippocampal long-term potentiation (LTP) in all exposure groups when compared with controls. The combined-exposure group exhibited the most pronounced effect when compared with each of the single-metal exposure groups. Microglia displayed activation at day 3 after exposure alone or in combination, while astrocytes showed activation at day 5, accompanied by decreased expression levels of GLAST, GLT-1, and GS. Furthermore, the levels of glutamate in the synaptic cleft increased significantly. When microglial activation was inhibited by minocycline, the activation of astrocytes and the expression of GLAST, GLT-1, and GS were both reversed. In addition, upon minocycline treatment, hippocampal LTP impairment and cognitive injury were significantly alleviated in each of the exposure groups. These results suggest that combined exposure to Pb and Mn can cause greater effects on cognition and synaptic plasticity when compared to single-metal exposure groups. The reason may involve abnormal activation of microglia leading to excessive regulation of astrocytes, resulting in glutamate reuptake dysfunction in astrocytes and leading to perturbed cognition and synaptic plasticity.  相似文献   
958.
Landfill leachate is a complex effluent and it is difficult to deal with. Electrochemical methods have been considered as a promising alternative technology for treatment of landfill leachate with refractory organic contaminants and heavy metals. Peroxi-coagulation (PC) process with iron anode and modified graphite felt cathode was developed for efficient landfill leachate concentrate treatment. Compared to electro-Fenton (EF) and electrocoagulation (EC) processes, the PC process was more cost-effective due to the combined action of OH oxidation and iron hydroxides coagulation. A maximal TOC removal of 77.2% ± 1.4% was obtained after 360 min at initial pH = 5.0 and current density of 10 mA/cm2. After the PC process, concentrations of all seven heavy metals in the final effluents were below the allowable emission limits given by the present regulatory standards. The method preference for heavy metal removal was PC > EC > EF. Based on the three-dimensional fluorescence spectroscopy coupled with regional integration analysis during the PC treatment, the florescence peaks of both humic acids and fulvic acids disappeared after treatment for 360 min. Decreasing trends were observed in the fluorescent regional standard volumes for aromatic protein I (31.4%), aromatic protein II (63.7%), fulvic acid-like (69.5%), soluble microbial by-product-like (75%) and humic acid-like regions (76.3%). The results indicate that comparing to the EF and EC process, the PC process provide a promising and more cost-effective alternative for the treatment of landfill leachate concentrate.  相似文献   
959.
Wu  Xiaosong  Chen  Yin  Wang  Ling  Guo  Xiling  Cui  Lunbiao  Shen  Yiming  Li  Fang  Sun  Hong  Zhang  Liubo  Shen  Jin  Xu  Yan 《Food and environmental virology》2022,14(1):101-104
Food and Environmental Virology - To prevent the spread of SARS-CoV-2 in cold-chain transportation in China, we developed specific cryogenic disinfectants. Carrier tests were performed against...  相似文献   
960.
黔西北是喀斯特重金属地质高背景区,受历史上土法炼锌影响,区域内大气降尘重金属含量高,土壤污染严重.为探究叶菜类蔬菜重金属的累积途径,以大白菜为供试作物,选择Cd、 Pb和Zn含量一致的地质高背景土壤和锌冶炼污染土壤,在锌粉厂污染区和无污染对照区进行盆栽试验,研究露天、覆膜和大棚栽培条件下大白菜重金属含量、富集系数(BCF)和转运系数(TF).结果表明,污染区和对照区大白菜ω(Cd)范围分别在0.10~1.01 mg·kg-1和0.10~0.91 mg·kg-1,ω(Pb)为0.31~0.62 mg·kg-1和0.23~0.37 mg·kg-1,ω(Zn)为7.50~32.74 mg·kg-1和4.88~21.79 mg·kg-1,总体上污染区重金属含量偏高,在地质高背景土壤上种植的大白菜,Cd和Pb基本达到国家食品安全标准限值的要求.受大气沉降的影响,污染区大白菜Pb和Zn含量显著高于对照区,Cd差异不明显.污染土壤弱酸溶态Cd、 Pb和Zn占比分别为48...  相似文献   
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