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Pyrite ash is created as waste from the roasting of pyrite ores during the production of sulphuric acid. These processes generate great amounts of pyrite ash waste that is generally land filled. This creates serious environmental pollution due to the release of acids and toxic substances. Pyrite ash waste can be utilized in the iron production industry as a blast furnace feed to process this waste and prevent environmental pollution. The essential parameters affecting the pelletization process of pyrite ash were studied using bentonite as a binder. Experiments were then carried out using bentonite and a mixture of bentonite with calcium hydroxide and calcium chloride in order to make the bentonite more effective. The metallurgical properties of pyrite ash, bentonite, calcium hydroxide, calcium chloride, a mixture of these and sintered pellets were studied using X-ray analysis. The crushing strength tests were carried out to investigate the strength of pyrite ash waste pellets. The results of these analyses showed that pyrite ash can be agglomerated to pellets and used in the iron production industry as a blast furnace feed. The crushing strength of the pellets containing calcium hydroxide and calcium chloride in addition to bentonite was better than the strength of pellets prepared using only bentonite binder. 相似文献
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Wastewater reclamation and reuse has been proved to be an effective way to relieve the fresh water crisis. However, toxic contaminants remaining in reclaimed water could lead to potential risk for reuse, and the conventional water quality standards have difficulty guaranteeing the safety of reclaimed water. Bioassays can vividly reflect the integrated biological effects of multiple toxic substances in water as a whole, and could be a powerful tool for evaluating the safety of reclaimed water. Therefore, in this study, the advantages and disadvantages of using bioassays for evaluating the safety of reclaimed water were compared with those of conventional water quality standards. Although bioassays have been widely used to describe the toxic effects of reclaimed water and treatment efficiency of reclamation techniques, a single bioassay cannot reflect the complex toxicity of reclaimed water, and a battery of bioassays involving multiple biological effects or in vitro tests with specific toxicity mechanisms would be recommended. Furthermore, in order to evaluate the safety of reclaimed water based on bioassay results, various methods including potential toxicology, the toxicity unit classification system, and a potential eco-toxic effects probe are summarized as well. Especially, some integrated ranking methods based on a bioassay battery involving multiple toxicity effects are recommended as useful tools for evaluating the safety of reclaimed water, which will benefit the promotion and guarantee the rapid development of the reclamation and reuse of wastewater. 相似文献
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Baiwen M Siqi Wu Bodong Wang Zenglu Qi Yaohui Bai Huijuan Liu Jiuhui Qu Ruijun Wu 《环境科学学报(英文版)》2020,32(4):10-19
Cake layer formation is inevitable over time for ultrafiltration (UF) membrane-based drinking water treatment. Although the cake layer is always considered to cause membrane fouling, it can also act as a “dynamic protection layer”, as it further adsorbs pollutants and dramatically reduces their chance of getting to the membrane surface. Here, the UF membrane fouling performance was investigated with pre-deposited loose flocs in the presence of humic acid (HA). The results showed that the floc dynamic protection layer played an important role in removing HA. The higher the solution pH, the more negative the floc charge, resulting in lower HA removal efficiency due to the electrostatic repulsion and large pore size of the floc layer. With decreasing solution pH, a positively charged floc dynamic protection layer was formed, and more HA molecules were adsorbed. The potential reasons were ascribed to the smaller floc size, greater positive charge, and higher roughness of the floc layer. However, similar membrane fouling performance was also observed for the negative and positive floc dynamic protection layers due to their strong looseness characteristics. In addition, the molecular weight (MW) distribution of HA also played an important role in UF membrane fouling behavior. For the small MW HA molecules, the chance of forming a loose cake layer was high with a negatively charged floc dynamic protection layer, while for the large MW HA molecules it was high with a positively charged floc dynamic protection layer. As a result, slight UF membrane fouling was induced. 相似文献
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The degradation of pharmaceutical micropollutants is an intensifying environmental problem and synthesis of efficient photocatalysts for this purpose is one of the foremost challenges worldwide. Therefore, this study was conducted to develop novel plasmonic Ag/Ag2O/BiVO4 nanocomposite photocatalysts by simple precipitation and thermal decomposition methods, which could exhibit higher photocatalytic activity for mineralized pharmaceutical micropollutants. Among the different treatments, the best performance was observed for the Ag/Ag2O/BiVO4 nanocomposites (5 wt.%; 10 min's visible light irradiation) which exhibited 6.57 times higher photodegradation rate than the pure BiVO4. Further, the effects of different influencing factors on the photodegradation system of tetracycline hydrochloride (TC-HCl) were investigated and the feasibility for its practical application was explored through the specific light sources, water source and cycle experiments. The mechanistic study demonstrated that the photogenerated holes (h+), superoxide radicals (?O2?) and hydroxyl radicals (?OH) participated in TC-HCl removal process, which is different from the pure BiVO4 reaction system. Hence, the present work can provide a new approach for the formation of novel plasmonic photocatalysts with high photoactivity and can act as effective practical application for environmental remediation. 相似文献
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Hao Yu Xueyan Zhao Jing Wang Baohui Yin Chunmei Geng Xinhua Wang Chao Gu Lihua Huang Wen Yang Zhipeng Bai 《环境科学学报(英文版)》2020,32(9):217-224
In order to understand the compositions characteristics of particulate matter with aerodynamic diameter less than 2.5 μm (PM2.5) fraction in road dust (RD2.5) of oasis cities on the edge of Tarim Basin, 30 road dust (RD) samples were collected in Kashi, Cele, and Yutian in the spring, 2018, and RD2.5 was collected using the resuspension approach. Eight water-soluble ions, 39 trace elements and 8 fractions of carbon-containing species in PM2.5 were analyzed. Ca2+ and Ca were the most abundant ions and elements in RD2.5 (7.1% and 9.5%). Cl- in RD2.5 was affected not only by attributed to saline-alkali soils in oasis cities of the Tarim Basin and dust from Taklimakan Desert but also by human activities. Moreover, the organic carbon/elemental carbon (OC/EC) ratio indicated that carbon components in RD2.5 in Cele town mainly come from fossil fuel combustion, while those in Yutian and Kashi mainly come from biomass combustion. It is noteworthy that high Ca in RD2.5 was seriously affected by anthropogenic emissions, and high Na and K contents in RD2.5 could be derived from soil and desert dust. It was estimated that Cd, Tl, Sn and Cr were emitted from anthropogenic emissions using the enrichment factor. The coefficients of divergence (COD) result indicated that the influence of local emission on road dust emission is greater than that of long-distance transmission. This study is the first time to comprehensively analyze the chemical characteristics of road dust in oasis cities, and the results provides the sources of road dust at the margin of Tarim Basin. 相似文献
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为了解深圳市龙岗区大气颗粒物中多溴联苯醚的污染状况,于2017年1月、4月、8月和11月分别采集龙岗区大气颗粒物样品.利用气相色谱-质谱联用仪(GC/MS)对深圳市龙岗区4个功能区(工业区、商业区、居民区和生态区)的80个大气颗粒物样品进行检测,得到PBDEs(多溴联苯醚)8种单体(BDE-28、BDE-47、BDE-99、BDE-100、BDE-153、BDE-154、BDE-183、BDE-209)的质量浓度,同时研究了大气颗粒物中PBDEs质量浓度的时空分布特征.结果表明:①深圳市龙岗区大气颗粒物中ρ(∑8PBDEs)(∑8PBDEs为PBDEs 8种单体的加和)范围为0.07~77.80 pg/m3,ρ(∑8PBDEs)年均值为(6.86±14.17)pg/m3.ρ(BDE-209)范围为0.01~76.23 pg/m3,年均值为(5.10±13.58)pg/m3,BDE-209为主要污染单体.② 4个功能区的ρ(∑8PBDEs)平均值大小顺序依次为工业区(13.65 pg/m3)>商业区(7.75 pg/m3)>生态区(3.95 pg/m3)>居民区(2.19 pg/m3),工业区是环境空气颗粒物中PBDEs的主要污染区.③ ρ(∑8PBDEs)平均值的季节性变化规律为春季(13.32 pg/m3)>冬季(9.18 pg/m3)>秋季(2.17 pg/m3)>夏季(1.51 pg/m3),符合深圳市亚热带海洋季风气温和气候对环境空气中颗粒物质量浓度的影响规律.研究显示,深圳市龙岗区大气颗粒物中PBDEs质量浓度处于较高水平,污染严重,建议减少含PBDEs产品的生产、使用和运输等活动,或找到更利于环境安全和人体健康的替代品,降低PBDEs对该地区的污染. 相似文献
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分析生态系统质量与服务现状及变化特征,有助于准确了解流域生态系统状况与趋势,为流域生态保护与修复的高效管理提供参考依据.采用相对生物量密度与相对植被覆盖度指数以及生态系统服务(土壤保持、防风固沙、洪水调蓄、粮食生产)评估模型,评估2000—2015年长江流域生态系统质量及服务变化特征.结果表明:①2000—2015年,长江流域森林、灌丛以及草地生态系统质量提升显著,56.56%的森林、45.65%的灌丛以及19.26%的草地生态系统质量得到不同程度的提高.②研究期间,长江流域粮食生产、洪水调蓄、土壤保持、防风固沙均呈显著上升趋势,其中粮食生产能力增加13.7%,洪水调蓄功能提升10.1%,土壤保持服务提高19.5%,防风固沙总量增加30.0%.③长江流域生态系统质量不高,处于低与差质量等级的生态系统面积比例在25%~35%之间;受不同类型的自然和人类活动影响,长江流域生态系统质量与服务均存在局部退化现象.研究显示,在生态质量与服务评估的基础上,分区域、分类型实施不同的生态系统保护与恢复途径,是今后长江流域加强生态系统管理的重要途径. 相似文献