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171.
Environmental Geochemistry and Health - The causes of Kashin–Beck disease (KBD) in children are multifactorial, and particular consideration has been given to childhood selenium (Se)...  相似文献   
172.
Chen  Long  Huang  Xingyun  Tang  Min  Zhou  Danna  Wu  Feng 《Environmental Chemistry Letters》2018,16(4):1507-1511
Environmental Chemistry Letters - Glyphosate is a broad-spectrum toxic herbicide that has entered the environment. Advanced oxidation processes efficiently remove various persistent organic...  相似文献   
173.
As the world's freshwater resources and available energy are alarmingly decreasing, the bioelectrochemical system (BES) is a cutting-edge technology for the resolution of the resource and energy issue. Researchers have paid much attention to t he application of t he BES configuration. Based on t he brief i ntroduction of m icrobial f uel cell a nd m icrobial electrolytic cell structure, principles, and domestic and foreign research, the BES and its influencing factors are introduced, specifically including: microbial activity, electrode materials, and configuration. Three important aspects (i.e., the electrode chamber, the reaction chamber, and micro-sensor) are summarized, and the advantages and disadvantages of single-electrode and multi-electrode chambers are compared, based on the microbial desalination cell. Microbial electrolysis desalination cell: Microbial electrolysis desalination and chemical-production cell have been discussed to introduce increasing reaction chamber configuration; this review focuses on the research of BES monitoring with regards to biochemical oxygen demand. The potential applications of the research progress are explored. The results show that the configuration of multi-chamber microbial fuel cell is complex and its efficiency is low, while the single chamber configuration is advantageous. The reaction chamber added is mainly aimed at desalination, and the study of the desalination pool still needs to be focused on optimizing the cation exchange membrane to maintain the anode pH balance and reduce the air cathode dissolved oxygen. Microbial electrode sensor can be applied in more areas, and its sensitivity and long-term stability need to be further improved. However, there is relatively less research on the abundance and activity of electricigen communities; the configurations and scopes of application of BES are still the research priority. © 2018 Science Press. All rights reserved.  相似文献   
174.
Desertification has emerged as a serious threat to the alpine meadows of Northwest Sichuan in recent decades. Artificial vegetation had certain effects on desertification recovery, while how the CO2 flux changed and its reasons are still unclear. During the growing season in 2016 (i.e., from July to September), we selected the desertified alpine meadows with different recovery degrees, including the early stage of restoration, the middle stage of restoration, the late stage of restoration, and control (the unrecovered desertification meadow) as four transects. CO2 flux was measured by the instrument LI-8100, and the microenvironment factors that affected CO2 flux changes were analyzed. The results showed that the carbon sequestration function of desertified alpine meadows gradually increased with the degree of recovery. Net ecosystem exchange (NEE) were -1.61, -3.55, and -4.38 μmol m-2 s-1 in the early, mid-term, and late transects, respectively, and the most dramatic changes occurred from the early stage to mid-term stage, increasing by 120.50%. Both ecosystem respiration (ER) and soil respiration (SR) were enhanced significantly with restoration (P < 0.05). In mid or late July, NEE, ER, and SR reached their maximum values, and thereafter, the indicators varied to near zero (P < 0.05). During the whole growing season, the daily dynamic in CO2 flux for the control alpine meadow was mild and retained the trend of continuous release all day, but that in the desertified alpine meadow was a single peak pattern. Moreover, with restoration process, the peak of CO2 flux increased and reached a peak in the late stage of the recovery process. The regression analysis showed that there was a significant positive correlation between CO2 flux and vegetation coverage, aboveground biomass, and soil moisture (0-5 cm) (P < 0.01), and a weak correlation with 0-5-cm soil temperature (P < 0.01). This indicates that topsoil moisture (5 cm) is a more significant factor for CO2 flux than topsoil temperature during the growing season in the restoration of desertified alpine meadows in Northwest Sichuan. In general, the vegetation recovery significantly improved the carbon-sequestration ability of the desertified alpine meadows during the growing season in Northwest Sichuan, and at the middle stage of restoration, the carbon-sequestration ability improved significantly due to vegetation restoration and increase in topsoil (0-5 cm) moisture. © 2018 Science Press. All rights reserved.  相似文献   
175.
水力负荷对厌氧氨氧化反应器运行影响的研究   总被引:4,自引:0,他引:4  
采用一套有效容积为4.46 L的UASB-ANAMMOX反应器,通过对水力负荷进行3个阶段的调节,研究水力停留时间对ANAMMOX反应器处理效果的影响.3个阶段的水力负荷分别为0.20~0.25、0.38~0.43、0.16~0.20 L/(Ld).在试验过程中,水力负荷的冲击对NH 4-N、NO-2-N的去除率影响明显.其中水力负荷为0.20~0.25 L/(L·d)时,NH 4-N、NO-2-N去除率都能达到99%以上;当水力负荷为0.38~0.43 L/(L·d)时,NH 4-N、NO-2-N去除率分别降至64%和62%;当水力负荷为0.16~0.20 L/(L·d)时,NH 4-N、NO-2-N去除率立刻分别回升至94%和97%.ANAMMOX反应过程中,NO-2-N和NH 4-N的去除量比值基本在1.3∶1.0左右变化,ANAMMOX反应的优势菌种代谢在运行过程中会将一部分NO-2-N转化为NO-3-N,水力负荷的改变对NO-3-N的出水浓度影响不大;但NO-3-N日生成量与水力负荷的大小成正比.试验表明,UASB-ANAMMOX反应器对水力负荷冲击有较强的抵抗力,但是仍会造成一定量的ANAMMOX反应的优势菌流失,使该反应器在短时间内不能恢复最佳的去除效果.  相似文献   
176.
硝基修饰的超高交联树脂对酚类化合物的吸附研究   总被引:1,自引:0,他引:1  
对超高交联聚苯乙烯树脂进行硝基修饰,制得硝基修饰超高交联聚苯乙烯树脂JN-5(简称JN-5).JN-5树脂具有比表面积高、亲水性强等优点.对酚类化合物在水溶液中进行静态吸附研究,平衡吸附试验数据和吸附热力学计算结果都表明,JN-5对4种酚类化合物(对甲基苯酚、苯酚、对氯苯酚、对硝基苯酚)的吸附性能优于大孔吸附树脂XAD-4.这主要得益于JN-5的高比表面积和丰富的微孔结构.动态小柱吸附试验中,在流速4.77mL/h、303K的条件下,JN-5对苯酚的穿透吸附量为2.43mmol/g,总吸附量为3.26mmol/g,吸附后的树脂能用8%(质量分数)的NaOH溶液完全洗脱.  相似文献   
177.
Wang L  Huang X  Zhou Q 《Chemosphere》2008,73(3):314-319
In order to investigate the effects of rare earth elements (REEs) on horseradish, the distribution of the mineral elements and heavy metals in different organs of horseradish have been studied by using inductively coupled plasma-atomic emission spectrometry (ICP-AES). Meanwhile, three variable major parameters, namely the concentration of REEs, the type of REEs, and the growth stage of plant were chosen. The results indicated that the test REEs, Ce(III) and Tb(III), could be accumulated in leaves, stems and roots of horseradish. In addition, we found that the content of mineral elements was increased in horseradish treated with 20mgl(-1) of Ce(III), but not those with the 20mgl(-1) of Tb(III). Moreover, the content of mineral elements in horseradish was decreased with the increasing concentration of REEs (100, 300mgl(-1)). Furthermore, we found that there were the opposite effects on the content of the heavy metals in horseradish treated with REEs. Finally, we found that the effect of REEs on the accumulation of REEs, and the content of mineral elements or heavy metals of horseradish during vigorous growth stage, no matter positive or negative, was more obvious than that of the other growth stages. These results demonstrated that the distribution behaviors of mineral elements and heavy metals in horseradish can be affected by the type and concentration of REEs, and the growth period of plant.  相似文献   
178.
沟渠式生物接触氧化法对有机物和氨氮的去除研究   总被引:2,自引:0,他引:2  
生物接触氧化工艺是目前较为成熟的水质净化技术,国内外在河流水质净化、水体修复中都有较多的研究和应用.在实验室采用沟渠式生物接触氧化组合系统处理模拟村庄面源污水,较好地去除了有机物并实现氨氮转化.结果表明,当进水COD为130~290mg/L、氨氮为30~40mg/L、水力负荷为0.19~0.24m3/(m2·d)的条件下,该系统稳定运行11周,COD和氨氮的平均去除率分别达85%和79%.  相似文献   
179.
醇胺溶液吸收与解吸CO2的研究   总被引:5,自引:0,他引:5  
在温度333K、常压条件下,在羟乙基乙二胺(AEE)总量一定的溶液中,研究了不同浓度AEE对CO2的吸收性能;在总胺质量分数为40%的溶液中,研究了不同配比的AEE N-甲基二乙醇胺(MDEA)对CO2的吸收性能.考察了吸收过程中吸收速率、吸收量、吸收时间、AEE浓度以及吸收液温度的相互关系.控制解吸过程温度为393K,考察了CO2解吸量与解吸时间的关系.实验表明,适当降低AEE浓度有利于充分发挥AEE溶液的CO2吸收性能;在MDEA溶液中加入适量AEE,可以明显提高CO2的吸收与解吸性能;其中质量分数为20?E 20%MDEA的复合溶液在CO2吸收与解吸过程中表现出良好的实际操作性.  相似文献   
180.
为了解爆破制浆的排污情况和废水处理的可行性,以烧碱和石灰作投加药剂,进行了不同加碱量条件下爆破制浆产生源强的试验研究,以确定最佳的加碱量和适宜的黑液提取率.研究表明,在加碱量相同的情况下,采用常规爆破浆样,浆样性能较好;在保持吨粗干浆产生的COD一致时,投加价格低廉的石灰,既能降低生产成本,又便于后续的废水处理;工程调试运行结果表明,控制吨粗干浆的石灰投加量为25~30 kg时,黑液提取率超过80%,最终出水COD<100 mg/L.  相似文献   
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