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Ordered mesoporous materials for water pollution treatment:Adsorption and catalysis 被引量:2
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作者 Peng Zhang Mingming He +4 位作者 Wei Teng Fukuan Li Xinyuan Qiu Kexun Li Hao Wang 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第8期1239-1256,共18页
To meet the growing emission of water contaminants,the development of new materials that enhance the efficiency of the water treatment system is urgent.Ordered mesoporous materials provide opportunities in environment... To meet the growing emission of water contaminants,the development of new materials that enhance the efficiency of the water treatment system is urgent.Ordered mesoporous materials provide opportunities in environmental processing applications due to their exceptionally high surface areas,large pore sizes,and enough pore volumes.These properties might enhance the performance of materials concerning adsorption/catalysis capability,durability,and stability.In this review,we enumerate the ordered mesoporous materials as adsorbents/catalysts and their modifications in water pollution treatment from the past decade,including heavy metals(Hg^(2+),Pb^(2+),Cd^(2+),Cr^(6+),etc.),toxic anions(nitrate,phosphate,fluoride,etc.),and organic contaminants(organic dyes,antibiotics,etc.).These contributions demonstrate a deep understanding of the synergistic effect between the incorporated framework and homogeneous active centers.Besides,the challenges and perspectives of the future developments of ordered mesoporous materials in wastewater treatment are proposed.This work provides a theoretical basis and complete summary for the application of ordered mesoporous materials in the removal of contaminants from aqueous solutions. 展开更多
关键词 water pollution treatment Ordered mesoporous materials Toxic contaminants ADSORPTION CATALYSIS
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Influences of water treatment agents on oil-water interfacial properties of oilfield produced water 被引量:9
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作者 Guo Jixiang Cao Jingjing +1 位作者 Li Mingyuan Xia Haiying 《Petroleum Science》 SCIE CAS CSCD 2013年第3期415-420,共6页
The emulsion stability of oilfield produced water is related to the oil-water interfacial film strength and the zeta potential of the oil droplets. We investigated the effects of water treatment agents (corrosion inh... The emulsion stability of oilfield produced water is related to the oil-water interfacial film strength and the zeta potential of the oil droplets. We investigated the effects of water treatment agents (corrosion inhibitor SL-2, scale inhibitor HEDP, germicide 1227, and flocculant polyaluminium chloride PAC) on the stability of oilfield produced water. The influence of these treatment agents on oil-water interfacial properties and the mechanism of these agents acting on the oilfield produced water were studied by measuring the interfacial shear viscosity, interfacial tension and zeta electric potential. The results indicated that the scale inhibitor HEDP could increase the oil-water interfacial film strength, and it could also increase the absolute value of the zeta potential of oil droplets. HEDP played an important role in the stability of the emulsion. Polyaluminum chloride (PAC) reduced the stability of the emulsion by considerably decreasing the absolute value of the zeta potential of oil droplets. Corrosion inhibitor SL-2 and germicide 1227 could decrease the oil-water interfacial tension, whereas they had little influence on oil-water interfacial shear viscosity and oil-water interfacial electricity properties. 展开更多
关键词 water treatment agents oil-water interracial properties emulsion stability oilfield produced water
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Catalytic Effect of Activated Carbon and Activated Carbon Fiber in Non-Equilibrium Plasma-Based Water Treatment 被引量:2
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作者 张延宗 郑经堂 +2 位作者 曲险峰 于维钊 陈宏刚 《Plasma Science and Technology》 SCIE EI CAS CSCD 2008年第3期358-362,共5页
Catalysis and regeneration efficiency of granular activated carbon (GAC) and activated carbon fiber (ACF) were investigated in a non-equilibrium plasma water treatment reactor with a combination of pulsed streamer... Catalysis and regeneration efficiency of granular activated carbon (GAC) and activated carbon fiber (ACF) were investigated in a non-equilibrium plasma water treatment reactor with a combination of pulsed streamer discharge and GAC or ACF. The experimental results show that the degradation efficiency of methyl orange (MO) by the combined treatment can increase 22% (for GAC) and 24% (for ACF) respectively compared to pulsed discharge treatment alone, indicating that the combined treatment has a synergetic effect. The MO degradation efficiency by the combined treatment with pulsed discharge and saturated GAC or ACF can increase 12% and 17% respectively compared to pulsed discharge treatment alone. Both GAC and ACF show catalysis and the catalysis of ACF is prominent. Meanwhile, the regeneration of GAC and ACF are realized in this process. When H202 is introduced into the system, the utilization efficiency of ozone and ultraviolet light is improved and the regeneration efficiency of GAC and ACF is also increased. 展开更多
关键词 non-equilibrium plasma water treatment activated carbon activated carbon fiber catalytic effect
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Development of high quality Fe_3O_4/rGO composited electrode for low energy water treatment 被引量:1
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作者 Ngoc Tuan Trinh Sangho Chung +1 位作者 Jae Kwang Lee Jaeyoung Lee 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2016年第3期354-360,共7页
Electrochemical water treatment is an attractive technology for water desalination and softening due to its low energy consumption. Especially, capacitive Deionization(CDI) is promising as a future technology for wate... Electrochemical water treatment is an attractive technology for water desalination and softening due to its low energy consumption. Especially, capacitive Deionization(CDI) is promising as a future technology for water treatment. Graphene(rGO) has been intensively studied for CDI electrode because of its advantages such as excellent electrical conductivity and high specific surface area. However, its 2D dimensional structure with small specific capacitance, high resistance between layers and hydrophobicity degrades ion adsorption efficiency. In this work, we successfully prepared uniformly dispersed Fe3O4/rGO nanocomposite by simple thermal reactions and applied it as effective electrodes for CDI. Iron oxides play a role in uniting graphene sheets, and specific capacitance and wettability of electrodes are improved significantly;hence CDI performances are enhanced. The hardness removal of Fe3O4/rGO nanocomposite electrodes can reach 4.3 mg/g at applied voltage of 1.5V, which is 3 times higher than that of separate r GO electrodes.Thus this material is a promising candidate for water softening technology. 展开更多
关键词 Electrochemical water treatment Capacitive deionization water softening GRAPHEME Fe_3O_4/rGO nanocomposite Fe_3O_4 nanoparticle
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Study on water treatment effect of dispersion discharge plasma based on flowing water film electrode 被引量:1
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作者 Wenzheng Liu Ying Bao +1 位作者 Xiaoxia Duan Jian Zhang 《Plasma Science and Technology》 SCIE EI CAS CSCD 2021年第10期168-178,共11页
To improve the utilization rate of plasma active species,in this study,a closed non-uniform air gap is formed by a flowing water film electrode and a sawtooth insulating dielectric layer to realize the diffuse glow di... To improve the utilization rate of plasma active species,in this study,a closed non-uniform air gap is formed by a flowing water film electrode and a sawtooth insulating dielectric layer to realize the diffuse glow discharge in the atmosphere.Firstly,the electric field distribution characteristics of non-uniform air gap in the sawtooth dielectric layer are studied,and the influence of aspect ratio on the characteristics of diffuse discharge plasma is discussed.Subsequently,the effects of wire mesh,the inclination angle of the dielectric plate,and liquid inlet velocity on the flow characteristics of the water film electrode are analyzed.The results show that the non-uniform electric field distribution formed in the sawtooth groove can effectively inhibit the filamentous discharge,and the 1 mm flowing water film is directly used as the electrode,and high-active plasma is formed directly on the lower surface of the water film.In addition,a plasma flowing water treatment device is built to treat the methyl orange solution and observe its decolorization effect.The experimental results show that after 50 min of treatment,the decolorization rate of the methyl orange solution reaches 96%,which provides a new idea for industrial applications of wastewater treatment. 展开更多
关键词 water film electrode dispersive glow discharge plasma inhomogeneous electric field closed discharge space flowing water treatment
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Characteristics of Electrode-Water-Electrode Discharge and its Application to Water Treatment
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作者 王小平 李中坚 +1 位作者 张兴旺 雷乐成 《Plasma Science and Technology》 SCIE EI CAS CSCD 2014年第5期479-485,共7页
Atmospheric air discharge above the surface of water is an effective method for water treatment.The leakage current and Joule heating of water are reduced by the air gap,which raises the energy efficiency of the water... Atmospheric air discharge above the surface of water is an effective method for water treatment.The leakage current and Joule heating of water are reduced by the air gap,which raises the energy efficiency of the water treatment.However,the application of this kind of discharge is limited by a pair of conflicting factors:the chemical efficiency grows as the discharge gap distance decreases,while the spark breakdown voltage decreases as the gap distance decreases.To raise the spark breakdown voltage and the chemical efficiency of atmospheric pressure water surface discharge,both the high-voltage electrode and the ground electrode are suspended above the water surface to form an electrode-water-electrode discharge system.For this system,there are two potential discharge directions:from one electrode to another directly,and from the electrodes to the water surface.The first step in utilizing the electrode-water-electrode discharge is to find out the discharge direction transition criterion.In this paper,the discharge direction transition criterions of spark discharge and streamer discharge are presented.By comparing the discharge characteristics and the chemical efficiencies,the discharge propagating from the electrodes to the water surface is proved to be more suitable for water treatment than that propagating directly between the electrodes. 展开更多
关键词 water treatment electrode-water-electrode discharge discharge direction discharge intensity chemical efficiency
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Study of Water Treatment Residue Used as a Profile Control Agent
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作者 Hou Tianjiang Zhao Huating +2 位作者 Li Zongtian Zhao Puchun Xiao Liping 《Petroleum Science》 SCIE CAS CSCD 2005年第4期50-55,共6页
A large amount of residue from the water treatment process has gradually accumulated and thus caused serious environmental pollution in waterflood oilfields. The water treatment residue is a grey suspension, with a de... A large amount of residue from the water treatment process has gradually accumulated and thus caused serious environmental pollution in waterflood oilfields. The water treatment residue is a grey suspension, with a density of 1.08 g/cm^3, and mainly contains over 65% of light CaCO3, MgCO3, CaSO4, Fe2S3 and Ca(OH)2. This paper ascertains the effect of water treatment residue on core permeability and its application in oilfields. Coreflooding tests in laboratory were conducted in two artificial cores and one natural core. Core changes were evaluated by cast model image analysis, mercury injection method and scanning electron microscopy (SEM). Fresh water was injected into another natural core, which was plugged with water treatment residue, to determine the effective life. The results indicate that the water treatment residue has a strongly plugging capability, a resistance to erosion and a long effective life, and thus it can be used as a cheap raw material for profile control. In the past 8 years, a total of 60,164 m^3 of water treatment residue has been used for profile control of 151 well treatments, with a success ratio of 98% and an effective ratio of 83.2%. In the field tests, the profile control agent increased both starting pressure and injection pressure of injectors, and decreased the apparent water injectivity coefficient, significantly improving intake profiles and lengthening average service life of injectors. 28,381 tons of additional oil were recovered from these corresponding oil wells, with economic benefits of ¥3,069.55×10^4 (RMB) and a remarkable input-output ratio of 8.6:1. 展开更多
关键词 water treatment residue coreflooding test profile control agent permeability modification field application
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Surface treatment technology of downhole water cut sensor
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作者 YANG Qinghai GAO Wei +6 位作者 WEI Songbo YU Xiang YU Chuan SHI Bairu YANG Xingguo SHEN Qiaochu XU Jilei 《Petroleum Exploration and Development》 CSCD 2022年第6期1440-1451,共12页
Based on the structure,working principle,and working conditions of conductance water cut sensor,it is revealed that the early failure of the metal electrode of the sensor is due to the comprehensive influence of well ... Based on the structure,working principle,and working conditions of conductance water cut sensor,it is revealed that the early failure of the metal electrode of the sensor is due to the comprehensive influence of well fluid erosion,electrochemical corrosion,and oil pollution during its long-term service in the downhole.A technology for electrode surface treatment is proposed using boron-doped diamond(BDD)films to improve the service performance of the modified electrode.The hot wire chemical vapor deposition method was adopted to fabricate BDD film,the boron doping concentration and deposition time were optimized,and fluorination treatment was applied to improve the wear resistance,electrochemical corrosion resistance,and oleophobic property of the BDD film comprehensively.The results showed that BDD film with boron doping concentration of 6×10^(-3) exhibited high wear resistance and good electrochemical corrosion resistance,and endowed the modified electrode with superior erosion resistance and corrosion resistance.The friction coefficient and wear rate of BDD modified electrode were 92%and 78%lower than those of Invar alloy,also,the low-frequency impedance modulus value of the modified electrode was higher than 1×10^(4) Ω·cm^(2).The BDD film prepared with a deposition time of 8 h had a favorable micro-nano structure owing to small grain size and uniform distribution.Such morphology was conducive to enhancing the oleophobic performance of the modified electrode,and its contact angle in the simulated well fluid was high to 102°.The engineering applicability of BDD film modified electrode under simulated working conditions indicated that,the modified electrode had excellent comprehensive performances of erosion resistance,electrochemical corrosion resistance and oil adhesion resistance,and can realize the long-term stable operation of the conductance water cut sensor under harsh downhole conditions. 展开更多
关键词 water cut sensor surface treatment boron-doped diamond film wear resistance electrochemical corrosion resistance oleophobic property
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STUDY ON APPLICATION OF AERATION BIOLOGICAL FLUID TANK TECHNOLGY IN NH_4^+-N WASTE WATER TREATMENT 被引量:1
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作者 CHEN Yi, LU Jian guo (Safety & Environment Protection Department, Lanzhou Prtrochemical Corporation, Lanzhou 730060, China) 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2003年第1期74-78,共5页
This paper introduces an application of "Aeration biological fluid tank" technology (ABFT) for the treatment of waste water containing NH + 4 N and high concentrated organic chemicals. Highlights were focuse... This paper introduces an application of "Aeration biological fluid tank" technology (ABFT) for the treatment of waste water containing NH + 4 N and high concentrated organic chemicals. Highlights were focused on the effects of dissolved oxygen, pH, temperature and retention time on waste water biological treatment in order to find out a new approach in treatment of waste water containing high concentrated NH + 4 N. 展开更多
关键词 曝气生物流化池 ABFT 含氨氮污水治理 应用 研究
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我国煤矿区矿井水水质空间分布特征及矿井水处理技术思路
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作者 孙亚军 郭娟 +6 位作者 徐智敏 张莉 陈歌 熊小锋 华景帆 穆林杰 吴文轩 《煤炭学报》 北大核心 2025年第1期584-599,共16页
矿井水是一种重要的非常规水资源,我国煤矿矿井涌水量巨大,不同类型矿井水的处理是国家与煤矿企业重点关注的科学问题。基于314座煤矿矿井水水化学数据调研与统计分析,阐明了矿井水水质空间分布特征及成因机制:矿井水水质主要以高TDS、... 矿井水是一种重要的非常规水资源,我国煤矿矿井涌水量巨大,不同类型矿井水的处理是国家与煤矿企业重点关注的科学问题。基于314座煤矿矿井水水化学数据调研与统计分析,阐明了矿井水水质空间分布特征及成因机制:矿井水水质主要以高TDS、高悬浮物、高硫酸盐、高Na+为主要特征,酸性矿井水和重金属主要集中于云贵等部分矿区;水质成因与煤矿区所处地域特征密切相关,如干旱与半干旱气候条件、充水地下含水层水质、煤层硫分含量、围岩岩性、微生物作用、岩浆活动等因素等,采矿活动对矿井水质形成及演化影响的权重较大。全国煤矿矿井水水化学类型以SO_(4)-Na型、SO_(4)-Ca·Mg型、SO_(4)-Na·Ca型、HCO_(3)-Na型和HCO_(3)-Ca·Mg型为主。基于全国矿井水水质特征,阐述了现有矿井水地面处理技术与瓶颈,论述了现有井下矿井水处理工艺,并以“阻断、减量、保护”为主要污染防控思路,提出一种煤矿废弃采掘空间矿井水自然修复技术,通过过程减量,实现矿井水低成本井下处理与回用。然后,基于采空区位置选择、采空区储水空间计算、储水安全性评价、减量修复效果评价、减量过程水动力场-水化学场-微生物场演化特征和次生危害解决方案等问题构建了矿井水自然修复技术框架,并基于煤矿实例采空水水化学组分和微生物群落结构演化规律验证了矿井水修复技术的可行性,具有较高的推广应用价值。煤矿废弃采掘空间矿井水自然修复技术的构建能够降低矿井水处理成本,助力煤-水协调绿色开采,实现矿井水修复与资源化利用。 展开更多
关键词 矿井水水质 井下矿井水处理 废弃采掘空间 自然修复 微生物群落结构
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我国再生水利用分析及政策建议
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作者 蒋云钟 何凡 +1 位作者 姜珊 王丽珍 《水利发展研究》 2025年第1期86-93,共8页
再生水是缓解水资源供需矛盾、促进水环境保护,增强水资源保障能力的重要举措。文章研究了再生水作为重要水资源的优势,包括经济成本可控、水源稳定、水质按需定制及对水生态健康的积极影响。通过借鉴美国、欧盟、日本、新加坡及以色列... 再生水是缓解水资源供需矛盾、促进水环境保护,增强水资源保障能力的重要举措。文章研究了再生水作为重要水资源的优势,包括经济成本可控、水源稳定、水质按需定制及对水生态健康的积极影响。通过借鉴美国、欧盟、日本、新加坡及以色列的成功经验,以及分析我国再生水利用典型案例,指出高标准的污水处理、严格的立法和执法、合理的运行机制及纳入水资源管理系统是再生水推广利用的关键。基于分析我国再生水利用的现状及存在的问题,提出组织编制再生水利用专项规划、加大再生水建设投资力度、全面构建再生水配额制度、健全再生水利用技术规范与标准的政策建议,以期推动再生水高效利用,促进水资源可持续利用。 展开更多
关键词 供需矛盾 再生水利用 水资源管理 污水处理 节水减排
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水硬度对纺织品后处理工艺的影响
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作者 刘钰 《染整技术》 2025年第3期27-29,共3页
纺织品生产流程繁多,在后处理工艺环节,水质对纺织品的影响更显著,特别是在染色、后整理和清洗等关键工艺中,水硬度直接影响到染料的吸附效率、整理效果以及产品的清洁度。从水硬度在纺织品后处理工艺中的作用机制出发,系统分析水硬度... 纺织品生产流程繁多,在后处理工艺环节,水质对纺织品的影响更显著,特别是在染色、后整理和清洗等关键工艺中,水硬度直接影响到染料的吸附效率、整理效果以及产品的清洁度。从水硬度在纺织品后处理工艺中的作用机制出发,系统分析水硬度对染色、整理及水洗等工艺的具体影响,并探索优化水硬度的有效途径,为推动纺织行业相关技术的创新和应用提供启发。 展开更多
关键词 水硬度 纺织品 后处理工艺
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煤层气田井口积液治理工艺研究与应用
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作者 孟凡华 郭冰燕 +2 位作者 刘松群 屈丽彬 张鑫 《油气田地面工程》 2025年第2期30-35,共6页
煤层气采用排水降压的排水采气方式,输送介质为湿气。管道内析出的水引起管网积液、冻堵,冬季生产时造成气量影响,且近年来气量影响逐年上升。为解决积液问题,在实际生产中逐步探索出凝液缸、放水扫线、中压反吹扫等技术,但在应用过程... 煤层气采用排水降压的排水采气方式,输送介质为湿气。管道内析出的水引起管网积液、冻堵,冬季生产时造成气量影响,且近年来气量影响逐年上升。为解决积液问题,在实际生产中逐步探索出凝液缸、放水扫线、中压反吹扫等技术,但在应用过程中仍存在各种不适应性,无法根治积液问题。针对此类问题,转变积液治理思路,由积液产生后“被动排放”模式转变为井口“前端治理”,基于OLGA多相流瞬态模拟软件建立煤层气管道水力模型,研究积液产生机理,明确不同排采阶段管线不同内积液成分,排采初期,积液由游离水和饱和水析出构成;排采后期,积液为饱和水析出构成,根据游离水和饱和水2种积液,研究出新型井口脱水工艺。结果表明,新型井口脱水工艺能有效去除煤层气混合流中液相组分70%以上,实现大部分积液在井场得到治理。本工艺可改变目前积液处理方式,增加煤层气积液控制技术储备,降低管线内积液,提高管输效率。 展开更多
关键词 煤层气 排水降压 井口前端治理 积液机理 游离水 饱和水
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Ozonation and Biodegradability of Lignin in Water 被引量:2
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作者 李玉平 Gorenflo A Frimmel F H 《Journal of Beijing Institute of Technology》 EI CAS 2002年第3期290-294,共5页
To convert the non biodegradable sodium lignin sulfonate into biodegradable substances, the sodium lignin sulfonate in the water was ozonized and the pH value, dissolved organic carbon(DOC), ultraviolet absorbency at... To convert the non biodegradable sodium lignin sulfonate into biodegradable substances, the sodium lignin sulfonate in the water was ozonized and the pH value, dissolved organic carbon(DOC), ultraviolet absorbency at λ =254 nm(UVA) and the biodegradability of the ozonation effluent were measured. The non biodegradable sodium lignin sulfonate can be partly converted into biodegradable substances by ozonation (about 38 76%). In the ozonation process, there is little DOC decrease, but much UVA decrease and obvious pH drop. 展开更多
关键词 OZONATION BIODEGRADABILITY LIGNIN water treatment
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沸石咪唑酯骨架材料用于水处理的研究进展
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作者 陈煜 郭文慧 +2 位作者 郭亚欣 张本尚 杨明成 《化工新型材料》 北大核心 2025年第1期79-83,共5页
沸石咪唑酯骨架材料是由过渡态金属离子与咪唑或咪唑衍生物配位形成的具有沸石拓扑结构的新型金属-有机骨架材料,具有大比表面积、大孔隙度和化学稳定性好等特点,被广泛用于吸附废水中的重金属离子、抗生素、染料等污染物。综述了近年... 沸石咪唑酯骨架材料是由过渡态金属离子与咪唑或咪唑衍生物配位形成的具有沸石拓扑结构的新型金属-有机骨架材料,具有大比表面积、大孔隙度和化学稳定性好等特点,被广泛用于吸附废水中的重金属离子、抗生素、染料等污染物。综述了近年来不同形式的沸石咪唑酯骨架材料在吸附水中污染物方面的研究进展,包括其制备方法、吸附性能及吸附机理,并对沸石咪唑酯骨架材料的优点和局限性进行了讨论。 展开更多
关键词 沸石咪唑酯骨架 功能材料 复合材料 水处理
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电化学水处理技术在硝基苯废水中的应用
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作者 王尚芝 丁家正 +1 位作者 马海润 李阳 《石化技术与应用》 2025年第2期168-173,共6页
介绍了电化学水处理技术作用原理,并对近年来电化学氧化、还原以及氧化还原技术处理硝基苯废水的研究现状进行综述。指出未来电化学水处理技术需要重点关注电极材料改性与反应器构型优化,此外,将电化学技术与其他水处理技术联用也是一... 介绍了电化学水处理技术作用原理,并对近年来电化学氧化、还原以及氧化还原技术处理硝基苯废水的研究现状进行综述。指出未来电化学水处理技术需要重点关注电极材料改性与反应器构型优化,此外,将电化学技术与其他水处理技术联用也是一个重要的发展方向。 展开更多
关键词 电化学技术 水处理 硝基苯 氧化还原 协同作用
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Continuous-flow columns packed with zero-valent iron and iron sulfide as a feasible strategy to remediate the persistent contaminant nitroguanidine
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作者 Youngjae Yu Erika E.Rios-Valenciana +3 位作者 Robert A.Root Reyes Sierra-Alvarez Jon Chorover Jim A.Field 《Defence Technology(防务技术)》 2025年第1期26-34,共9页
The insensitive munitions compound nitroguanidine(NQ)is used by the U.S.Army to avoid unintended explosions.However,NQ also represents an emerging contaminant whose environmental emissions can cause toxicity toward aq... The insensitive munitions compound nitroguanidine(NQ)is used by the U.S.Army to avoid unintended explosions.However,NQ also represents an emerging contaminant whose environmental emissions can cause toxicity toward aquatic organisms,indicating the need for effective remediation strategies.Thus,we investigated the feasibility of treating water contaminated with NQ in continuous-flow columns packed with zero-valent iron(ZVI)or iron sulfide(FeS).Initially,the impact of pH on NQ transformation by ZVI or FeS was evaluated in batch experiments.The pseudo first-order rate constant for NQ transformation(k_(1,NQ))by ZVI was 8-10 times higher at pH 3.0 compared to pH 5.5 and 7.0,whereas similar k_(1,NQ)values were obtained for FeS at pH 5.5-10.0.Based on these findings,the influent p H fed to the ZVIand Fe S-packed columns was adjusted to 3.0 and 5.5,respectively.Both reactors transformed NQ into nitrosoguanidine(Nso Q).Further transformation of Nso Q by ZVI produced aminoguanidine,guanidine,and cyanamide,whereas Nso Q transformation by Fe S produced guanidine,ammonium,and traces of urea.ZVI outperformed Fe S as a reactive material to remove NQ.The ZVI-packed column effectively removed NQ below detection even after 45 d of operation(490 pore volumes,PV).In contrast,NQ breakthrough(removal efficiency<85%)was observed after 18 d(180 PV)in the Fe S-packed column.The high NQ removal efficiency and long service life of the ZVI-packed column(>490 PV)suggest that the technology is a promising approach for NQ treatment in packed-bed reactors and in situ remediation. 展开更多
关键词 Continuous water treatment Iron-based minerals Chemical reduction pH AMINOGUANIDINE GUANIDINE
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大盂产业新城供水系统研究及净水处理工艺设计
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作者 魏媛媛 《山西建筑》 2025年第2期115-119,174,共6页
大盂产业新城作为规划拓展的北部新区,处于城市公共供水盲区。为实现安全可靠的供水体系保障,着重对供水系统的整体布局、水源选取进行了分析,从水量预测、方案优选、厂站选址、处理工艺等方面进行了论述,提出了多水源、大高差、统一管... 大盂产业新城作为规划拓展的北部新区,处于城市公共供水盲区。为实现安全可靠的供水体系保障,着重对供水系统的整体布局、水源选取进行了分析,从水量预测、方案优选、厂站选址、处理工艺等方面进行了论述,提出了多水源、大高差、统一管网下分区、分压运行模式的设计思路,达到了多水源并网、压力平衡的效果,解决了新城城市公共供水体系建设的难题。 展开更多
关键词 供水系统 多水源 水量预测 净水处理工艺
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改性秸秆对水体污染物的吸附研究进展
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作者 宫萌超 杨叶 +1 位作者 马鹏程 单斌 《化工新型材料》 北大核心 2025年第3期218-222,228,共6页
秸秆是一类农业废弃物,同时也是一种多用途、可再生的生物质资源。改性秸秆处理水体污染物具有高效、环保及低成本的特点,受到研究者的广泛关注。总结了秸秆的几种常见改性方法,并对改性秸秆在染料及重金属离子吸附中的应用性能进行了... 秸秆是一类农业废弃物,同时也是一种多用途、可再生的生物质资源。改性秸秆处理水体污染物具有高效、环保及低成本的特点,受到研究者的广泛关注。总结了秸秆的几种常见改性方法,并对改性秸秆在染料及重金属离子吸附中的应用性能进行了综述。 展开更多
关键词 秸秆 吸附剂 水体污染物 废水处理 吸附性能
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酸洗废液制Fe改性聚合氯化铝的造纸废水处理效果
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作者 张晗 李斌 《造纸科学与技术》 2025年第1期42-45,共4页
为有效缓解酸洗废液排放造成的土壤与地下水二次污染,以及生态环境危害,遵循固体废弃物回收利用理念,以经过氧化、水解、陈化处理的钢铁酸洗废液为原料制备了Fe改性聚合氯化铝,并对其在制浆造纸废水处理中的应用效果进行了测试分析。结... 为有效缓解酸洗废液排放造成的土壤与地下水二次污染,以及生态环境危害,遵循固体废弃物回收利用理念,以经过氧化、水解、陈化处理的钢铁酸洗废液为原料制备了Fe改性聚合氯化铝,并对其在制浆造纸废水处理中的应用效果进行了测试分析。结果表明,钢铁酸洗废液制Fe改性聚合氯化铝最佳工艺条件为:铝离子与铁离子比例9∶1,碱化度2.0,pH值7,无机絮凝剂聚合氯化铝用量1.0mmol/L;相较于未改性聚合氯化铝,钢铁酸洗废液制Fe改性聚合氯化铝的制浆造纸废水浊度、化学需氧量、色度、悬浮物去除率更高,处理效果更优,当Fe改性聚合氯化铝用量为4.0mmol/L时去除率达到最高,处理效果最佳。 展开更多
关键词 钢铁酸洗废液 铁离子 聚合氯化铝 制浆造纸 废水处理
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