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981.
Certain poly- and perfluoroalkyl substances (PFASs) exhibit significant bioaccumulation/biomagnification behaviors in ecosystems. PFASs, such as perfluorooctane sulfonate (PFOS), perfluorooctanoic acid (PFOA), perfluorohexanesulfonic acid (PFHxS) and related precursors, have elicited attention from both public and national regulatory agencies, which has resulted in worldwide restrictions on their production and use. Apex predators occupy the top trophic positions in ecosystems and are most affected by the biomagnification behavior of PFASs. Meanwhile, the long lifespans of apex predators also lead to the high body burden of PFASs. The high body burden of PFASs might be linked to adverse health effects and even pose a potential threat to their reproduction. As seen in previous reviews of PFASs, knowledge is lacking between the current stage of the PFAS body burden and related effects in apex predators. This review summarized PFAS occurrence in global apex predators, including information on the geographic distribution, levels, profiles, and tissue distribution, and discussed the trophic transfer and ecotoxicity of PFASs. In the case where legacy PFASs were restricted under international convention, the occurrence of novel PFASs, such as 6:2 chlorinated polyfluorinated ether sulfonate (6:2 Cl-PFESA) and perfluoroethylcyclohexane sulfonate (PFECHS), in apex predators arose as an emerging issue. Future studies should develop an effective analytical method and focus on the toxicity and trophic transfer behavior of novel PFASs.  相似文献   
982.
Polymyxin B (PMB) is considered as the last line of antibiotic defense available to humans. The environmental effects of the combined pollution with PMB and heavy metals and their interaction mechanisms are unclear. We explored the effects of the combined pollution with PMB and arsenic (As) on the microbial composition of the soil and in the earthworm gut, as well as the spread and transmission of antibiotic resistance genes (ARGs). The results showed that, compared with As alone, the combined addition of PMB and As could significantly increase the bioaccumulation factor and toxicity of As in earthworm tissues by 12.1% and 16.0%, respectively. PMB treatment could significantly increase the abundance of Actinobacteria in the earthworm gut (from 35.6% to 45.2%), and As stress could significantly increase the abundance of Proteobacteria (from 19.8% to 56.9%). PMB and As stress both could significantly increase the abundance of ARGs and mobile genetic elements (MGEs), which were positively correlated, indicating that ARGs might be horizontally transferred. The inactivation of antibiotics was the main resistance mechanism that microbes use to resist PMB and As stress. Network analysis showed that PMB and As might have antagonistic effects through competition with multi-drug resistant ARGs. The combined pollution by PMB and As significantly promoted the relative abundance of microbes carrying multi-drug resistant ARGs and MGEs, thereby increasing the risk of transmission of ARGs. This research advances the understanding of the interaction mechanism between antibiotics and heavy metals and provides new theoretical guidance for the environmental risk assessment and combined pollution management.  相似文献   
983.
为明确中国春节期间大气污染物"春节效应"时空变化特征及其原因,利用2014年春节期间(2014-01-17?—?2014-02-14)31个城市(22个省会、5个自治区首府、4个直辖市,不含港澳台地区)大气PM2.5、NO2和SO2浓度监测数据,并结合相应时段的气象数据,分析这三种大气污染物时空分布特征及其与气象要素的关系.结果表明:PM2.5和SO2受除夕夜燃放烟花爆竹影响较大(受影响的城市分别占66%和58%),而NO2表现不明显(受影响的城市只占16%).此外,春节中期大部分城市三种大气污染物的浓度都比春节前期低,而与春节后期差异不明显.从空间来看,南方城市三种大气污染物浓度在春节中期与春节前期差异比北方城市大.气象要素对不同城市各大气污染物浓度变化影响不同.总体而言,"春节效应"在全国各大城市间存在明显的时空差异.  相似文献   
984.
通过引入Lotka-Volterra模型预测了中国未来30年的乘用车竞争趋势;通过引入CHG、VOC、CO、SO2、PM2.5、NOx6类污染物更新了全生命周期清单;并据此建立了政策影响模型和敏感性模型评估电动化、轻量化和清洁化政策情景减排效果.结果表明,乘用车市场的主要竞争力来源于新能源与传统能源的竞争,且纯电动与混合动力乘用车呈S型曲线发展,汽油乘用车占比由92%减少到1%;全生命周期中,纯电动乘用车对CHG、VOC、CO减排效益最优,为20%~85%;汽油与天然气乘用车对SO2和PM2.5的减排效益最优,为50.0%;3类情景下税收补贴类政策敏感性最强,CHG、VOC和CO的最优减排情景为电气化情景,PM2.5、NOx的最优减排情景为清洁化情景,而SO2的最优减排情景则为整车轻量化.  相似文献   
985.
“三生空间”统筹的科学基础与优化途径探析   总被引:4,自引:0,他引:4  
江东  林刚  付晶莹 《自然资源学报》2021,36(5):1085-1101
党的十八大提出了将优化国土空间开发格局作为生态文明建设的首要举措,以及“促进生产空间集约高效、生活空间宜居适度、生态空间山清水秀”的目标要求。通过文献调研和总结归纳法,系统梳理了“三生空间”统筹优化的研究进展。总结发现,现有工作主要从国土空间利用质量、土地利用适宜性评价、资源环境承载力与比较优势等角度开展了“三生空间”统筹优化研究。但由于对“三生空间”科学内涵的认识不足、定量识别方法与分类体系的构建不完善,目前“三生空间”统筹优化的技术途径存在诸多问题尚待明晰。未来“三生空间”统筹优化的技术途径应以美丽中国建设愿景为目标导向,以人地耦合系统理论为核心,系统构建识别与优化国土空间的理论体系与技术框架。  相似文献   
986.
Constructed wetlands (CWs) have been introduced to and developed in China for environmental engineering over the most prosperous three decades (1990–2020). To study the origin, development process, and future trend of CWs, this review summarized a wide range of literatures between 1990 and 2020 by Chinese authors. Firstly, the publication number over years, research highlights, and the author contributions with the most published papers in this field were conducted through bibliometric analysis. Secondly, the most principal components of CWs, substrates and macrophytes were summarized and analyzed. Thirdly, the typical application cases from traditional CWs, pond systems to combined pond-wetland systems were presented. In China, CWs were predominately distributed in the east of the so-called 'Hu Huanyong Line'. Therefore CWs were limited by the socio-economic level and climatic conditions. It is unquestionable that the overall level of China's CWs has improved significantly, and one of the most prominent features has started towards the plural pattern development. There has been a trend of large-scale or low-cost CW application in the recent years. However, lifecycle research and management are required for better strategies in the future.  相似文献   
987.
Algal organic matter (AOM), including extracellular organic matter (EOM) and intracellular organic matter (IOM) from algal blooms, is widely accepted as essential precursors of disinfection byproducts (DBPs). This study evaluated the effect of ozonation or ozone combined with activated carbon (O3-AC) treatment on characteristic alternation and DBP formation with subsequent chlorination of Chlorella sp.. The effects of pH and bromide concentration on DBP formation by ozonation or O3-AC treatment were also investigated. Results showed that the potential formation of DBPs might be attributed to ozonation, but these DBP precursors could be further removed by activated carbon (AC) treatment. Moreover, the formation of target DBPs was controlled at acidic pH by alleviating the reactions between chlorine and AOM. Besides, the bromide substitution factor (BSF) value of trihalomethanes (THMs) from EOM and IOM remained constant after AC treatment. However, THM precursors could be significantly decreased by AC treatment. The above results indicated that O3-AC was a feasible treatment method for algal-impacted water.  相似文献   
988.
Numerous studies have evaluated the toxicity and endocrine disrupting properties of organic UV filters for aquatic organisms, but little is known about their biodegradation in river sediments and their impact on microorganisms. We have set up the sterile and microbiological systems in the laboratory, adding 2-ethylhexyl-4-methoxycinnamate (EHMC), one of organic UV filters included in the list of high yield chemicals, at concentrations of 2, 20 and 200 μg/L, and characterized the microbial community composition and diversity in sediments. Monitoring of EHMC degradation within 30 days revealed that the half-life in the microbial system (3.49 days) was much shorter than that in the sterile system (7.55 days). Two potential degradation products, 4-mercaptobenzoic acid and 3-methoxyphenol were identified in the microbial system. Furthermore, high-throughput 16s and 18s rRNA gene sequencing showed that Proteobacteria dominated the sediment bacterial assemblages followed by Chloroflexi, Acidobacteria, Bacteroidetes and Nitrospirae; Eukaryota_uncultured fungus dominated the sediment fungal assemblages. Correlation analysis demonstrated that two bacterium genera (Anaerolineaceae_uncultured and Burkholderiaceae_uncultured) were significantly correlated with the biodegradation of EHMC. These results illustrate the biodegradability of EHMC in river sediments and its potential impact on microbial communities, which can provide useful information for eliminating the pollution of organic UV filters in natural river systems and assessing their potential ecological risks.  相似文献   
989.
蒋昕桐  刘东  钟朴  段洪涛 《中国环境科学》2022,42(12):5824-5835
基于2021年夏秋两季西部干旱区博斯腾湖表层50个采样点位实测数据,通过对DOC特征的统计学分析、内外源因素影响的时空差异以及电导率相关性验证,将博斯腾湖划分为河口和非河口区域.然后以CDOM特征波长吸收系数a250a365为自变量,以DOC浓度(cDOC)为因变量,分别构建了基于CDOM的河口和非河口水域DOC浓度估算模型.结果表明:河流与湖泊进行水体交换的同时,会将大量陆源DOC输送到博斯腾湖中,使得河口区域DOC浓度明显高于非河口区域(t-tests,P<0.01),河口区域的DOC浓度(cDOC)约是非河口区域的2.2~2.3倍,且在河口区域cDOC与电导率呈现显著相关关系(夏季:R2=0.81,P<0.01;秋季:R2=0.84,P<0.01).本文构建拟合模型(cDOC=α+β·α250+γ·α365),并通过交叉验证的方法来检验模型精度.将夏季和秋季同区域数据统一建模,河口和非河口区域CDOM与DOC均存在较好的相关关系,且模型精度较高(河口区域:R2=0.60,RMSE=8.56%;非河口区域:R2=0.66,RMSE=8.77%).本文所建立的模型可以在不增加环境因子变量的前提下提高精度,有利于实现卫星遥感反演.同时,本研究揭示了河流输入对博斯腾湖DOC分布和估算的时空影响,提出可利用CDOM估算DOC浓度,但需根据水文特征和cDOC等因素区分河口和非河口区域.本研究对实现新疆水资源合理开发、有效保护以及综合治理提供科学依据,对我国西部干旱区湖泊DOC遥感动态监测具有重要意义.  相似文献   
990.
UV/peroxymonosulfate (UV/PMS) advanced oxidation process has attracted significant attention for removal of micropollutants in water. However, during practical water treatment applications, the PMS treatment must be performed before the UV treatment to achieve full contact. In this study, sulfamethoxazole (SMX) was selected as the target micropollutant. Four different operational approaches, including UV alone, PMS alone, simultaneous UV/PMS and sequential PMS-UV, were compared for their differences in SMX removal and disinfection by-product (DBP) formation potentials during chlorine-driven disinfection. Among the four approaches, UV/PMS and PMS-UV achieved over 90% removal efficiencies for SMX without substantial differences. For raw water, the trichloronitromethane (TCNM) formation potential after treatment with PMS-UV was lower than that after UV/PMS treatment. The time interval over which the PMS-UV process was conducted had little effect on the final removal efficiency for SMX. However, a brief (5 min) pre-PMS treatment significantly reduced the TCNM formation potential and the genotoxicity from DBPs. The formation risk for TCNM during chlorination increased markedly with increasing PMS dosages, and the appropriate dosage under these experimental conditions was suggested to be 0.5–1.0 mmol/L. Under alkaline conditions, PMS-UV treatment can enhance SMX degradation as well as dramatically reduced the formation potentials for haloketones, haloacetonitriles and halonitromethanes. This study suggests that proper optimization of UV/PMS processes can remove SMX and reduce its DBP formation.  相似文献   
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