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121.
Environmental Science and Pollution Research - Municipal solid waste (MSW) incineration power generation is an important treatment technology, which has been widely concerned in recent years. It is...  相似文献   
122.
Environmental Science and Pollution Research - In the process of coal gangue surface accumulation and underground filling disposal, the heavy metals contained in coal gangue will inevitably...  相似文献   
123.
Mg–Al–Cl layered double hydroxide (Cl-LDH) was prepared to simultaneously remove Cu(II) and Cr(VI) from aqueous solution. The coexisting Cu(II) (20 mg/L) and Cr(VI) (40 mg/L) were completely removed within 30 min by Cl-LDH in a dosage of 2.0 g/L; the removal rate of Cu(II) was accelerated in the presence of Cr(VI). Moreover, compared with the adsorption of single Cu(II) or Cr(VI), the adsorption capacities of Cl-LDH for Cu(II) and Cr(VI) can be improved by 81.05% and 49.56%, respectively, in the case of coexisting Cu(II) (200 mg/L) and Cr(VI) (400 mg/L). The affecting factors (such as solution initial pH, adsorbent dosage, and contact time) have been systematically investigated. Besides, the changes of pH values and the concentrations of Mg2+ and Al3+ in relevant solutions were monitored. To get the underlying mechanism, the Cl-LDH samples before and after adsorption were thoroughly characterized by X-ray powder diffraction, transmission electron microscopy, Fourier transform infrared spectroscopy, and X-ray photoelectron spectroscopy. On the basis of these analyses, a possible mechanism was proposed. The coadsorption process involves anion exchange of Cr(VI) with Cl in Cl-LDH interlayer, isomorphic substitution of Mg2+ with Cu2+, formation of Cu2Cl(OH)3 precipitation, and the adsorption of Cr(VI) by Cu2Cl(OH)3. This work provides a new insight into simultaneous removal of heavy metal cations and anions from wastewater by Cl-LDH.  相似文献   
124.
N-nitrosodimethylamine(NDMA) precursors consist of a positively charged dimethylamine group and a non-polar moiety, which inspired us to develop a targeted cation exchange technology to remove NDMA precursors. In this study, we tested the removal of two representative NDMA precursors, dimethylamine(DMA) and ranitidine(RNTD), by strong acidic cation exchange resin. The results showed that pH greatly affected the exchange efficiency, with high removal(DMA 78% and RNTD 94%) observed at pH pk_a-1 when the molar ratio of exchange capacity to precursor was 4. The exchange order was obtained as follows: Ca~(2+) Mg~(2+) RNTD~+ K~+ DMA~+ NH_4~+ Na~+. The partition coefficient of DMA~+to Na~+was 1.41 ± 0.26, while that of RNTD~+to Na~+was 12.1 ± 1.9. The pseudo second-order equation fitted the cation exchange kinetics well. Bivalent inorganic cations such as Ca~(2+)were found to have a notable effect on NA precursor removal in softening column test. Besides DMA and RNTD, cation exchange process also worked well for removing other 7 model NDMA precursors. Overall, NDMA precursor removal can be an added benefit of making use of cation exchange water softening processes.  相似文献   
125.
为了保证海水中铁元素含量的检测质量,更好地深入了解铁在整个海水体系的生物地球化学中扮演的角色,需科学地评定检测结果的分散性。文章依据《测量不确定度的评定与表示》(JJF1059-1999)的理论,以浙江近海海水为例,评定原子吸收法测定海水中铁含量的不确定度。测得浙江近海样品中铁的浓度为5.2μg/L,扩展不确定度U=0.8μg/L(k=2)。通过对各不确定度分量进行评定发现,利用该方法测定海水中铁含量时,对其合成标准不确定度的主要贡献来自于样品制备过程,尤其是萃取过程。  相似文献   
126.
建筑材料隐含环境影响评估   总被引:1,自引:0,他引:1       下载免费PDF全文
我国建筑业快速发展,建筑开发使用大量的建筑材料给资源和环境带来严重负荷.以上海市为案例,运用生命周期评价方法,基于北京工业大学和Ecoinvent数据库中的建筑材料生产数据,采用ReCiPe法对上海市建筑物的材料隐含环境影响进行评估,并对未来的环境影响潜值进行预测.结果表明:在上海市居住建筑和非居住建筑所产生的各类环境影响中人类毒性、金属损耗最为突出,约占总环境影响的45%和20%;环境影响主要来源于钢筋和木材的生产,对各类环境影响贡献度分别约为47%、17%;高层居住建筑和非居住建筑中的工厂建筑物化环境影响在各自类型中所占比例最高.按现有趋势发展,2020年上海市居住建筑开发规模和环境影响潜值均将达到2014年的1.52倍,非居住建筑则可达到2014年的1.14倍.针对上海市建筑材料环境影响分析结果,为有效减轻上海市建筑物的环境影响,需重点关注钢筋、铝材、木材以及混凝土的生产,识别生产过程中污染物转移环节进而改进工序;在设计阶段考虑选择环境影响负荷低的绿色建材,如混凝土砌块、高性能混凝土等,从而降低环境影响;同时,应重点关注隐含环境负荷高的高层居住和工厂建筑类建筑,通过降低建材使用量等方案降低环境影响.   相似文献   
127.
In 2013,China issued "Air Pollution Prevention and Control Action Plan(Action Plan)" to improve air quality.To assess the benefits of this program in Beijing-Tianjin-Hebei(BTH)region,where the density of population and emissions vary greatly,we simulated the air quality benefit based on Ben MAP to satisfy the Action Plan.In this study,we estimate PM_(2.5) concentration using Voronoi spatial interpolation method on a grid with a spatial resolution of 1 × 1 km~2.Combined with the exposure-response function between PM_(2.5) concentration and health endpoints,health effects of PM_(2.5) exposure are analyzed.The economic loss is assessed by using the willingness to pay(WTP) method and human capital(HC) method.When the PM_(2.5) concentration falls by 25% in BTH and reached 60 μg/m~3 in Beijing,the avoiding deaths will be in the range of 3175 to 14051 based on different functions each year.Of the estimated mortality attributable to all causes,3117 annual deaths were due to lung cancer,1924 – 6318 annual deaths were due to cardiovascular,and343 – 1697 annual deaths were due to respiratory.Based on WTP,the estimated monetary values for the avoided cases of all cause mortality,cardiovascular mortality,respiratory mortality and lung cancer ranged from 1110 to 29632,673 to 13325,120 to 3579,1091 to 6574 million yuan,respectively.Based on HC,the corresponding values for the avoided cases of these four mortalities were 267 to 1178,161 to 529,29 to 143 and 261 million yuan,respectively.  相似文献   
128.
Environmental exposure and health risk upon engineered nanomaterials are increasingly concerned. The family of mesoporous carbon nanomaterials(MCNs) is a rising star in nanotechnology for multidisciplinary research with versatile applications in electronics,energy and gas storage, and biomedicine. Meanwhile, there is mounting concern on their environmental health risks due to the growing production and usage of MCNs. The lung is the primary site for particle invasion under environmental exposure to nanomaterials. Here, we studied the comprehensive toxicological profile of MCNs in the lung under the scenario of moderate environmental exposure. It was found that at a low concentration of 10 μg/mL MCNs induced biophysical inhibition of natural pulmonary surfactant. Moreover, MCNs at similar concentrations reduced viability of J774 A.1 macrophages and lung epithelial A549 cells.Incubating with nature pulmonary surfactant effectively reduced the cytotoxicity of MCNs.Regarding the pro-inflammatory responses, MCNs activated macrophages in vitro, and stimulated lung inflammation in mice after inhalation exposure, associated with lung fibrosis.Moreover, we found that the size of MCNs played a significant role in regulating cytotoxicity and pro-inflammatory potential of this nanomaterial. In general, larger MCNs induced more pronounced cytotoxic and pro-inflammatory effects than their smaller counterparts. Our results provided valuable information on the toxicological profile and environmental health risks of MCNs, and suggested that fine-tuning the size of MCNs could be a practical precautionary design strategy to increase safety and biocompatibility of this nanomaterial.  相似文献   
129.
文章以闲置12个月的厌氧氨氧化生物膜填料重新启动厌氧氨氧化反应器,并对反应器的活性恢复情况、脱氮效果和微生物菌群结构开展研究。实验结果表明:在启动的200 d逐渐将进水氨氮、亚硝态氮浓度从50 mg/L提高到70 mg/L,水力停留时间从12 h缩短到4 h,后期氨氮去除率达80%以上,亚硝酸盐去除率达95%。170~200 d的稳定期中,平均去除负荷0.71±0.15 kg/(m~3·d)。另外,通过高通量测序技术对反应器中微生物群落变化情况进行了系统分析。启动过程中填料中污泥微生物浮霉菌门Planctomyctes的相对丰度从13.7%增长到了36.0%,成为优势菌群。  相似文献   
130.
开展海水增养殖区卫生安全评价对于减少人体健康风险、提高增养殖区的有效管理尤为重要。本研究于2013年3月、5月、8月和10月对大连市金石滩、大长山岛、大李家3个重要海水增养殖区的贝类和海水进行了粪便污染指示菌总大肠菌群(TC)和粪大肠菌群(FC)的监测,同时监测了弧菌总数(TV)和主要环境要素(包括水温、pH、盐度、COD、DO、Chl a)。结果表明:这3个海区贝类组织中TC及海水中的TC、FC浓度均呈显著的时间和空间分布变化。贝类组织中TC含量随时间的分布趋势为:8月> 5月> 3月> 10月,空间分布为:大长山岛>金石滩,大长山岛>大李家,而金石滩和大李家差异不显著(P < 0.05);海水中TC和FC浓度分布特征相似,时间分布特征均为:金石滩8月份最高,大李家5月份最高,而大长山岛各月份均低于最低检测限(2 MPN/100 mL),空间分布特征均为:大李家增养殖区污染较为严重,而金石滩和大长山岛差异不显著(P < 0.05)。3个增养殖区8月份和10月份的海水中TV浓度较高,为3.3×102~4.23×105 CFU/100 mL。通过分析不同季节海水增养殖区中TC、FC、TV之间及其与水温、pH、盐度、COD、DO、Chl a的相关性,表明环境要素以及增养殖区水域特点对于粪便污染指示菌和弧菌的时空分布具有重要的影响。为更好地反映增养殖区的卫生安全状况,海水和养殖生物体内指示生物应同时监测,在监测传统粪便污染指示菌的同时,建议将弧菌作为重要的病原菌指标。  相似文献   
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