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1.
Mercury, lead, and cadmium are among the most toxic and carcinogenic heavy metal ions (HMIs), posing serious threats to the sustainability of aquatic ecosystems and public health. There is an urgent need to remove these ions from water by a cheap but green process. Traditional methods have insufficient removal efficiency and reusability. Structurally robust, large surface-area adsorbents functionalized with high-selectivity affinity to HMIs are attractive filter materials. Here, an adsorbent prepared by vulcanization of polyacrylonitrile (PAN), a nitrogen-rich polymer, is reported, giving rise to PAN-S nanoparticles with cyclic π-conjugated backbone and electronic conductivity. PAN-S can be coated on ultra-robust melamine (ML) foam by simple dipping and drying. In agreement with hard/soft acid/base theory, N- and S-containing soft Lewis bases have strong binding to Hg2+, Pb2+, Cu2+, and Cd2+, with extraordinary capture efficiency and performance stability. Furthermore, the used filters, when collected and electrochemically biased in a recycling bath, can release the HMIs into the bath and electrodeposit on the counter-electrode as metallic Hg0, Pb0, Cu0, and Cd0, and the PAN-S@ML filter can then be reused at least 6 times as new. The electronically conductive PAN-S@ML filter can be fabricated cheaply and holds promise for scale-up applications.  相似文献   
2.
《Ceramics International》2020,46(14):22282-22289
Self-assembly is an emerging strategy for preparing composite cathodes with good oxygen electrochemical reduction activity and congenital chemical compatibility for intermediate-temperature solid oxide fuel cell (IT-SOFC). Here we report that a self-assembled BaCo0.6Zr0.4O3-δ (BZC-BC) nanocomposite is prepared through one-pot glycine-nitrate process and exhibits high cathode performance. The BZC-BC nanocomposite is composed of 62 mol% cubic perovskite BaZr0.82Co0.18O3-δ (BZC) as an ionic conductor and 38 mol% hexagonal perovskite BaCo0.96Zr0.04O2.6+δ (12H-BC) as a mixed ionic and electronic conductor. The BZC-BC nanocomposite has the pomegranate-like particles aggregated with a larger number of nanoparticles (50-100 nm) which greatly enlarge the three-phase boundary sites. The BZC-BC nanocomposite exhibits a thermal expansion coefficient of 12.89 × 10−6 K−1 well-matched with that of Ce0.8Gd0.2O3-δ (12.84 × 10−6 K−1) electrolyte. The high electro-catalytic activity of BZC-BC nanocomposite cathode for oxygen reduction is reflected by the low polarization resistances of oxygen ions incorporation at cathode/electrolyte interface (0.02823 Ω cm2), oxygen species diffusion (0.03702 Ω cm2) and oxygen adsorptive dissociation (0.07609 Ω cm2) at 700 °C. The single cell with BZC-BC nanocomposite cathode achieves the maximum power density of 1094 mW cm−2 at 650 °C and shows good stability under 25 h run.  相似文献   
3.
七角井矿区的钒、铁双层矿体走向长度超4 km且呈近似平行产出,下盘铁矿开采时损失贫化率高且上盘钒矿资源保护难度大。根据钒铁矿体走向长、近平行产出、厚度负相关、空区隐患大的开采技术条件 特征,采用平面分区、开采时序规划、采矿方法优化、区域稳定性控制等技术来实现钒铁矿协同开采。根据铁矿“中间厚、两端薄”、钒矿“中间薄、两端厚”的形态特征,将长走向的钒铁矿体分为东区、中区及西 区。工程空间上,双层矿体共用一套开拓、采准、运输等开采系统;开采时序上,在提高铁矿生产能力的同时保证了钒矿开采的时间灵活性;采矿方法上,东区及西区铁矿采用阶段矿房嗣后膏体微胶结充填法,中区 铁矿采用阶段矿房法转崩落法;此外,通过中区崩落顶板及上盘围岩,东、西区膏体充填方式保证了矿区开采时及开采后的区域稳定性。研究表明:所提出的协同开采方案使矿山铁矿设计开采储量增加了1 064.7万t ,膏体充填每年消耗干抛层、尾矿等矿山固废86万t以上,矿山安全及经济效益明显。  相似文献   
4.
刮板输送机中板磨损失效已成为输送机运行故障的主要原因之一,为了提高中板耐磨性,基于蜣螂非光滑单元进行了仿生中板设计,以磨损量为响应值,进行了单因素和响应面法优化试验。根据响应面法试验结果得到的因素显著性影响顺序(从高至低)依次为:径向距离,深径比,直径,节距角。基于试验结果建立了磨损量与因素的回归预测模型,经试验对比发现,预测模型与真实试验的相对误差为3.2%。在特定工况(煤散料粒度为6~8 mm、载荷为20 N、刮板链速为0.65 m/s及试验时长为6 600 s)下,当深径比为1.41、直径为0.69 mm、节距角为6.55°和径向距离为4.66 mm时,磨损量最小,仿生中板的耐磨性提高了12.6%。分析其耐磨机理发现,与光滑板相比,仿生板的磨粒磨损及黏着磨损较轻。凹坑分布可破坏持续切削中板表面的煤粒运动状态。中板的仿生优化可为今后刮板输送机的设计提供一定参考。  相似文献   
5.
针对红岭铅锌矿分级充填骨料来源不足、地表废石堆积污染环境的情况,提出将该矿选厂产生的全尾砂和地表废石作为充填骨料的联合胶结充填方案。分别测试了全尾砂和地表废石的物理化学性质,验证了碎石和全尾砂作为联合充填骨料的可行性。通过充填配比试验,分析了不同配比全尾砂废石充填体强度特性,得出了最佳充填配比。结果表明,充填试块的强度随灰砂比减小而减小,随养护龄期增加呈增大趋势,随充填料浆质量浓度增大而增大,最佳配比为: 胶结充填灰砂比1∶8、普通充填灰砂比1∶12,全尾砂∶废石配比4∶6,质量浓度78%。根据研究结果,在红岭铅锌矿进行了全尾砂废石充填技术工业应用,证实该技术可行。  相似文献   
6.
Enhanced gravity concentrators such as Knelson concentrator (KC) are extensively used in the mineral processing industry. The complexities of KC bowl geometry and variation of feed characteristics have forced process engineers to design empirically new units using laboratory and pilot-scale Knelson concentrators. However, numerical modelling methods such as computational fluid dynamics (CFD) and discrete element method (DEM) provide a better insight of flow behaviour of fluid and particulate solid phases inside these processing units. This article reports findings of CFD simulations for single-phase water flow inside the laboratory KC. An available standard 7.5-cm laboratory KC bowl was numerically simulated using realisable k-ε turbulence model to resolve the turbulence dispersion of existing transitional flow regime. The effects of relative centrifugal force (RCF) intensity and bed fluidisation water flow rate on the water velocity and pressure distributions were studied. Simulations confirmed the swirling flow pattern governing inside the bowl. The results revealed that the impact of RCF intensity on the water field values is greater than that of bed fluidisation water flow rate. Both velocity and pressure variations inside the bowl rings followed a linear trend.  相似文献   
7.
The integration of planning and scheduling decisions in rigorous mathematical models usually results in large scale problems. In order to tackle the problem complexity, decomposition techniques based on duality and information flows between a master and a set of subproblems are widely applied. In this sense, ontologies improve information sharing and communication in enterprises and can even represent holistic mathematical models facilitating the use of analytic tools and providing higher flexibility for model building. In this work, we exploit this ontologies’ capability to address the optimal integration of planning and scheduling using a Lagrangian decomposition approach. Scheduling/planning sub-problems are created for each facility/supply chain entity and their dual solution information is shared by means of the ontological framework. Two case studies based on a STN representation of supply chain planning and scheduling models are presented to emphasize the advantages and limitations of the proposed approach.  相似文献   
8.
Traditional maximum power point tracking (MPPT) methods can hardly find global maximum power point (MPP) because output characteristics curve of photovoltaic (PV) array may have multi local maximum power points in irregular shadow, and thus easily fall into the local maximum power point. To address this drawback, Considering that sliding mode variable structure (SMVS) control strategy have such advantages as simple structure, fast response and strong robustness, and P&O method have the advantages of simple principle and convenient implementation, so a new algorithm combining SMVS control method and P&O method is proposed, besides, PI controller is applied to reduce system chattering caused by switching sliding surface. It is applied to MPPT control of PV array in irregular shadow to solve the problem of multi-peak optimization in partial shadow. In order to verity the rationality of the proposed algorithm, the experimental circuit is built, which achieves MPPT control by means of the proposed algorithm and P&O method. The experimental results show that compared with the traditional P&O algorithm, the proposed algorithm can fast track the global MPP, tracking speed increases by 60% and the relative error decreased by 20%. Moreover, the system becomes more stable near the MPP, the fluctuations of output power is greatly reduced, and thus make full use of solar energy.  相似文献   
9.
为了改善尾矿制砖的力学性质,解决尾矿堆积问题,采用焙烧铁尾矿、水泥和粉煤灰为胶凝材料,2.36~4.75 mm粒级铁尾矿为粗骨料,通过搅拌、成型和养护工艺制备透水砖,探究了焙烧铁尾矿用量、水胶比、目标孔隙率和振动时间对透水砖性能的影响,对比未焙烧尾矿制备透水砖的性能。结果表明:① 焙烧尾矿制备透水砖最佳试验条件为:焙烧尾矿掺量60%,振动时间40 s、水胶比0.3,目标孔隙率20%;此时,透水砖抗折强度为3.34 MPa,符合国家标准Rf3.0,抗压强度为15.44 MPa,符合国家标准MU15,透水系数为2.58×10-2 cm/s,符合国家标准A级标准,实测孔隙率为23.41%。② 焙烧尾矿掺量为60%时效果最佳;未焙烧尾矿掺量为50%时效果最佳,抗折、抗压强度分别为3.38 MPa和14.54 MPa,透水系数符合国家A级标准;焙烧尾矿比未焙烧尾矿多替代水泥10%的情况下,力学性能焙烧尾矿透水砖较好,而透水性能则未焙烧尾矿透水砖较好。  相似文献   
10.
为了揭示吐哈盆地克尔碱凹陷不同矿区煤质形成条件,探讨该区煤质与成煤环境的关系,基于对主采煤层样品工业分析、有害组分及灰成分指标等数据分析,在对克尔碱凹陷地层分布、含煤岩系特征等基本地质条件分析的基础上,运用煤地质学、煤岩学、煤化学等理论和方法,系统总结凹陷内各矿区煤层赋存特征、煤质特征,探讨区内煤岩煤质与成煤环境的关系。结果表明:研究区自西向东划分6个主要矿区,区内煤层主要发育于中侏罗统西山窑组(J2x)和下侏罗统八道湾组(J1b)地层之中。研究区煤质呈低灰、低硫、高挥发分特征,煤灰成分以SiO2、Al2O3为主。综合分析表明,研究区中-下侏罗统主要煤层形成于湖泊-河流三角洲淡水沉积环境,具陆相成煤特征,成煤环境温暖潮湿。  相似文献   
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