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Feasibility Evaluation of Using Biochar-based Permeable Reactive Barrier for the Remediation of Mercury and Arsenic Composite Polluted Water Bodies
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作者 Dilixiati·Abulizi 《Asian Agricultural Research》 2024年第5期15-19,共5页
This study employed a modified biochar material to construct a permeable reactive barrier(PRB)for the treatment of water bodies polluted with mercury and arsenic.The experimental results demonstrated that the addition... This study employed a modified biochar material to construct a permeable reactive barrier(PRB)for the treatment of water bodies polluted with mercury and arsenic.The experimental results demonstrated that the addition of goethite-modified biochar significantly enhanced the remediation efficiency of As(III),achieving a maximum removal rate of 100%.Conversely,pure biochar exhibited high efficiency in the removal of Hg(II),with a maximum removal rate approaching 100%.Furthermore,the pH level of the water significantly influenced the adsorption efficiency of heavy metal ions,with the optimal removal performance observed at a pH of 6.0.The PRB system demonstrated excellent removal rates under low concentrations of heavy metals.However,as the concentration increased,the remediation efficiency exhibited a slight decrease.In summary,the findings of this study provide compelling evidence for the use of modified biochar in the construction of PRBs for the remediation of mercury and arsenic-polluted water bodies.Furthermore,the study reveals the mechanism by which pH and heavy metal concentration influence remediation efficiency. 展开更多
关键词 BIOCHAR Goethite-modified biochar permeable reactive barrier(PRB) Mercury and arsenic pollution Remediation efficiency
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Performance of Metal and Acid Ions Remediation in Contaminated Soils by Electrokinetics with Chitosan Permeable Reactive Barrier
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作者 杜勇立 马德青 +2 位作者 张燕青 单文盼 黄满红 《Journal of Donghua University(English Edition)》 EI CAS 2017年第4期607-612,共6页
Metal and acid ions contamination of soil in China is serious. To find an efficient solution for remediating the combined pollution,electrokinetics( EK) coupled with chitosan( CTS)permeable reactive barrier( EK/CPRB) ... Metal and acid ions contamination of soil in China is serious. To find an efficient solution for remediating the combined pollution,electrokinetics( EK) coupled with chitosan( CTS)permeable reactive barrier( EK/CPRB) was used to investigate the performances of metal and acid ions remediation. Adsorption characteristics of Zn^(2+),Fe^(3+),Ca^(2+),SO_4^(2-) and NO_3^- onto CTS were also conducted. The results showed the sorption of Zn^(2+),Fe^(3+),Ca^(2+),SO_4^(2-) and NO_3^- on CTS could be well described by Freundlich model. When the CTS dosage is 8 g,the total removal efficiency for Zn^(2+),Fe^(3+),Ca^(2+),SO_4^(2-) and NO_3^- is 86. 8%,90. 2%,92. 4%,90. 0% and 82. 5%,respectively. CTS enhanced ions remediation efficiencies significantly compared with the single EK system,especially for SO_4^(2-) and NO_3^-. The results indicate EK/CPRB system is suitable for the remediation of soil contaminated by both metal ions and acid ions. 展开更多
关键词 electrokinetics acid ions metal ions Chitosan permeable reactive barrier REMEDIATION
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Pilot Test of the Permeable Reactive Barrier for Removing Uranium from the Flooded Gunnar Pit
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作者 Dexu Kong Lesley McGilp +2 位作者 Alexey Klyashtorin Ian Wilson Lee D. Wilson 《Journal of Geoscience and Environment Protection》 2020年第7期155-176,共22页
This work reports on applying iron oxide coated sand (IOCS) media in an experimental permeable reactive barrier to remove uranium (U) species from uranium containing water. A field study was conducted at the legacy Gu... This work reports on applying iron oxide coated sand (IOCS) media in an experimental permeable reactive barrier to remove uranium (U) species from uranium containing water. A field study was conducted at the legacy Gunnar uranium mine & mill site that was abandoned in the 1960s with limited to no decommissioning. The flooded Gunnar mine pit presently contains about 3.2 million m<sup>3</sup> of water contaminated by dissolved U (1.2 mg/L), Ra-226 (0.4 Bq/L), and minor concentrations of other contaminants (As, Se, etc.). The water is seeping over the pit rim into Lake Athabasca, posing potential environmental and health concerns. IOCS media can be used to immobilize uranium species through an adsorption process. Herein, the preparation of hydrous ferric oxide sorbents and their supported forms onto silica sands is described. Fourier transform infrared spectroscopy (FTIR) and powder X-ray diffraction (pXRD) were used for structural characterization. The adsorption properties of the IOCS sorbent media were modeled by the Langmuir adsorption isotherm, where a maximum uranium uptake capacity was estimated. Bench-scale adsorption kinetic experiments were also performed before moving to a field trial. Based on these lab results and input on field-scale parameters, a pilot permeable reactive barrier was fabricated and a field test conducted near the Gunnar pit in June 2019. This pilot test provided technical data and information needed for designing a full-scale permeable barrier that employs the IOCS media. This approach can be applied for in-situ water treatment at Gunnar and other legacy uranium sites. 展开更多
关键词 ADSORPTION BREAKTHROUGH Iron Oxide Coated Sand permeable reactive barrier Uranium Species
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Long-term performance evaluation of zero-valent iron amended permeable reactive barriers for groundwater remediation-A mechanistic approach 被引量:1
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作者 Michael Lawrinenko Sudarshan Kurwadkar Richard T.Wilkin 《Geoscience Frontiers》 SCIE CAS CSCD 2023年第2期1-13,共13页
Permeable reactive barriers(PRBs)are used for groundwater remediation at contaminated sites worldwide.This technology has been efficient at appropriate sites for treating organic and inorganic contaminants using zero-... Permeable reactive barriers(PRBs)are used for groundwater remediation at contaminated sites worldwide.This technology has been efficient at appropriate sites for treating organic and inorganic contaminants using zero-valent iron(ZVI)as a reductant and as a reactive material.Continued development of the technology over the years suggests that a robust understanding of PRB performance and the mechanisms involved is still lacking.Conflicting information in the scientific literature downplays the critical role of ZVI corrosion in the remediation of various organic and inorganic pollutants.Additionally,there is a lack of information on how different mechanisms act in tandem to affect ZVI-groundwater systems through time.In this review paper,we describe the underlying mechanisms of PRB performance and remove isolated misconceptions.We discuss the primary mechanisms of ZVI transformation and aging in PRBs and the role of iron corrosion products.We review numerous sites to reinforce our understanding of the interactions between groundwater contaminants and ZVI and the authigenic minerals that form within PRBs.Our findings show that ZVI corrosion products and mineral precipitates play critical roles in the long-term performance of PRBs by influencing the reactivity of ZVI.Pore occlusion by mineral precipitates occurs at the influent side of PRBs and is enhanced by dissolved oxygen and groundwater rich in dissolved solids and high alkalinity,which negatively impacts hydraulic conductivity,allowing contaminants to potentially bypass the treatment zone.Further development of site characterization tools and models is needed to support effective PRB designs for groundwater remediation. 展开更多
关键词 permeable reactive barrier Reduction potential Plating reactions Surface passivation GEOCHEMISTRY IRON
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Performance of alkaline reactive materials in the remediation of acidic groundwater
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作者 Alexandra N. Golab Buddhima Indraratna Mark A. Peterson 《Chinese Journal Of Geochemistry》 EI CAS 2006年第B08期88-89,共2页
关键词 地下水 碱性 酸度 浸透性
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Woodchip-sulfur packed biological permeable reactive barrier for mixotrophic vanadium(V)detoxification in groundwater 被引量:2
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作者 LI JiaLin ZHANG BaoGang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2020年第11期2283-2291,共9页
Groundwater vanadium(V)(V(V))contamination is ubiquitous in vanadium mining/smelting region and development of novel strategy for its remediation is of particular significance.Herein woodchip-sulfur packed biological ... Groundwater vanadium(V)(V(V))contamination is ubiquitous in vanadium mining/smelting region and development of novel strategy for its remediation is of particular significance.Herein woodchip-sulfur packed biological permeable reactive barrier(bio-PRB)is established towards successful V(V)bio-detoxification.V(V)removal was accelerated under such mixotrophic condition,compared with heterotrophic and autotrophic V(V)reductions.The performance of bio-PRB was relatively steady with V(V)removal efficiency of 68.5%–98.2%under fluctuant geochemical and hydrodynamic conditions.Microbial community analysis indicated that heterotrophic Geobacter was the main reducer to convert V(V)to insoluble V(IV),by consumption of organic source attributed to woodchip hydrolysis and sulfur anabolism of autotrophs(e.g.,Sulfuricurvum and Thiobacillus).V(V)reduction and elemental sulfur oxidation were regulated by genes as omcA,omcB and mtrC and soxB,respectively.The elevated contents of cytochrome c and nicotinamide adenine dinucleotide implied that improved electron transfer facilitated V(V)reduction.This study provides a cost-effective,robust and sustainable route for V(V)-polluted aquifer remediation. 展开更多
关键词 SULFUR VANADIUM mixotrophic bio-reduction GROUNDWATER biological permeable reactive barrier
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Passive convergence-permeable reactive barrier (PC-PRB): An effective configuration to enhance hydraulic performance 被引量:1
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作者 Kaixuan Zheng Xingshen Luo +5 位作者 Yiqi Tan Zhonglei Li Hongtao Wang Tan Chen Li Zhao Liangtong Zhan 《Frontiers of Environmental Science & Engineering》 SCIE EI CSCD 2022年第12期79-88,共10页
A novel permeable reactive barrier(PRB)configuration,the so-called passive convergence-permeable reactive barrier(PC-PRB),is proposed to overcome several shortcomings of traditional PRB configurations,such as high dep... A novel permeable reactive barrier(PRB)configuration,the so-called passive convergence-permeable reactive barrier(PC-PRB),is proposed to overcome several shortcomings of traditional PRB configurations,such as high dependency to site hydrogeological characteristics and plume size.The PC-PRB is designed to make the plume converge towards the PRB due to the passive hydraulic decompression-convergent flow effect.The corresponding passive groundwater convergence(PC)system is deployed upstream of the PRB system,which consists of passive wells,water pipes,and a buffer layer.A two-dimensional(2D)finite-difference hydrodynamic code,entitled PRB-Flow,is developed to examine the hydraulic performance parameters(i.e.,capture width(W)and residence time(t))of PC-PRB.It is proved that the horizontal 2D capture width(Wh)and vertical 2D capture depth(Wv)of the PC-PRB remarkably increase compared to that of the continuous reactive barrier(C-PRB).The aforementioned relative growth values in order are greater than 50%and 25%in this case study.Therefore,the PRB geometric dimensions as well as the materials cost required for the same plume treatment lessens.The sensitivity analysis reveals that the dominant factors influencing the hydraulic performance of the PC-PRB are the water pipe length(Lp),PRB length(LPRB),passive well height(Hw),and PRB height(HPRB).The discrepancy between the Wh of PC-PRB and that of the C-PRB(i.e.,∆Wh)has a low correlation with PRB parameters and mainly depends on Lp,which could dramatically simplify the PC-PRB design procedure.Generally,the proposed PC-PRB exhibits an effective PRB configuration to enhance hydraulic performance. 展开更多
关键词 Passive convergence-permeable reactive barrier(PC-PRB) permeable reactive barrier configuration Numerical simulation Hydraulic performance evaluation Sensitivity analysis
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Nitrate Removal by a Permeable Reactive Barrier of Fe0:A Model-Based Evaluation 被引量:2
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作者 Qinghua Wu Chunmiao Zheng +1 位作者 Jiafa Zhang Fawang Zhang 《Journal of Earth Science》 SCIE CAS CSCD 2017年第3期447-456,共10页
Permeable reactive barrier(PRB) filled with zero valent iron(ZVI, Fe0) can be an effective option to remove nitrate from contaminated groundwater. The long-term performance of such PRBs, however, might be compromi... Permeable reactive barrier(PRB) filled with zero valent iron(ZVI, Fe0) can be an effective option to remove nitrate from contaminated groundwater. The long-term performance of such PRBs, however, might be compromised by the problem of declining reactivity and permeability, which could cause a decrease in the nitrate removal efficiency. In this study we explored suitable model formulations that allow for a process-based quantification of the passivation effect on denitrification rates and tested the model for a 40 years long operation scenario. The conceptual model underlying our selected formulation assumes the declining reactivity of the ZVI material through the progressing passivation caused by the precipitation of secondary minerals and the successive depletion of the ZVI material. Two model scenarios, i.e., the base model scenario which neglects the explicit consideration of the passivation effect and one performed with the model in which the impact of the passivation effect on denitrification was considered, were compared. The modeling results illustrate that nitrate removal in the model of considered passivation started to be incomplete after 10 years, and the effluent nitrate concentration of PRB rose up to 86% of the injected water concentration after 40 years, in contrast to the base scenario, corresponding well with the field observations of successively declining nitrate removal efficiencies. The model results also showed that the porosity of the PRB increased in both models. In order to improve and recover the reactivity of ZVI, pyrite was added to the PRB, resulting in completely nitrate removal and lower consumption of ZVI. 展开更多
关键词 groundwater permeable reactive barrier zero valent iron PHT3D denitrification
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固废基PRB复合颗粒填料对Cd^(2+)的吸附特性及净化机制 被引量:1
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作者 江杰 王树飞 +3 位作者 苏建 廖长君 罗豪豪 陈俊霖 《中国有色金属学报》 EI CAS CSCD 北大核心 2024年第6期2112-2126,共15页
鉴于传统可渗透反应墙(PRB)填料价格昂贵,且易消蚀、钝化,本文以钢渣、脱硫石膏等固废材料制备了复合颗粒填料(CGF),探究CGF对Cd^(2+)的等温吸附与动力学特征,并结合浸水试验明确CGF的强度损失规律与散失特性。借助动态吸附试验探究不... 鉴于传统可渗透反应墙(PRB)填料价格昂贵,且易消蚀、钝化,本文以钢渣、脱硫石膏等固废材料制备了复合颗粒填料(CGF),探究CGF对Cd^(2+)的等温吸附与动力学特征,并结合浸水试验明确CGF的强度损失规律与散失特性。借助动态吸附试验探究不同条件下CGF的动态吸附规律,明确CGF对Cd^(2+)的净化机制。结果表明:CGF对Cd^(2+)的吸附过程受化学吸附与颗粒内扩散控制,符合PS-order模型与Langmuir模型。T3组CGF综合性能最好,吸附量达到8.12 mg/g,且28 d散失率最小,为4.98%,强度损失率为6.16%。Thomas模型可以很好地描述CGF的动态吸附行为,泵速对CGF的穿透曲线影响最大,且动态平衡吸附量qe随初始浓度、床层高度增加而提高。CGF通过水化反应、火山灰反应生成C-S-H凝胶、AFt等水化产物,在提供颗粒强度的同时又可通过共沉淀、离子置换等方式实现对Cd^(2+)的吸附。本文可为有色金属矿山污染场地的修复治理提供一种新思路。 展开更多
关键词 钢渣 可渗透反应墙 吸附 污染地下水
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PRB颗粒填料对Cd^(2+)的吸附特征及其孔隙结构动态演变规律
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作者 江杰 王树飞 +4 位作者 罗豪豪 苏建 曹斐姝 廖长君 陈俊霖 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第7期2504-2515,共12页
以PRB复合颗粒填料(CGF)开展动态吸附试验,探究其对Cd^(2+)的动态吸附规律与主要影响因素;借助可视化手段与孔隙网络模型(PNM),探究吸附前后CGF的几何特征与孔隙结构演变规律,明确填料消蚀与孔隙堵塞的动态平衡关系。研究结果表明:当泵... 以PRB复合颗粒填料(CGF)开展动态吸附试验,探究其对Cd^(2+)的动态吸附规律与主要影响因素;借助可视化手段与孔隙网络模型(PNM),探究吸附前后CGF的几何特征与孔隙结构演变规律,明确填料消蚀与孔隙堵塞的动态平衡关系。研究结果表明:当泵速为10 r/min、质量浓度为50 mg/L时CGF的平衡吸附量最大,达到了1.81 mg/g;泵速对穿透曲线的影响最大,且低流量更有利于CGF对Cd^(2+)的吸附。吸附后孔隙率提高了7.79%,分形维数最多下降了7.95%,孔隙堵塞对分形维数影响较大;CGF溶蚀降低了表面积与平均等效直径,但球度在1.4~1.6范围的颗粒占比提高到75.9%。吸附后平均配位数由10.43降低至8.65,降低了17.07%;同时参与配位的“棍体”与“球体”数量分别降低了43.28%与31.63%。CGF消蚀导致动态柱中部发生堵塞,降低了孔隙与喉道的连接,但并未出现“实质性”堵塞,PNM仍保持良好的连通性能。 展开更多
关键词 可渗透反应墙(PRB) 动态吸附 填料消蚀 孔隙堵塞 最大球算法
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炭铁材料修复三氯乙烯污染地下水的性能 被引量:3
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作者 严芳敏 郭明帅 王菲 《中国环境科学》 EI CAS CSCD 北大核心 2024年第2期825-831,共7页
采用生物炭(BC)为载体的纳米零价铁复合材料作为可渗透反应墙系统(PRB)中的反应介质,通过柱实验和渗透实验,研究了生物炭负载纳米零价铁(BC-nZVI)对三氯乙烯(TCE)的去除效果和炭铁复合材料在长期水流作用下的渗透性能.结果表明:炭铁复... 采用生物炭(BC)为载体的纳米零价铁复合材料作为可渗透反应墙系统(PRB)中的反应介质,通过柱实验和渗透实验,研究了生物炭负载纳米零价铁(BC-nZVI)对三氯乙烯(TCE)的去除效果和炭铁复合材料在长期水流作用下的渗透性能.结果表明:炭铁复合材料对TCE的去除率在2h内可达到90%以上,10h时接近100%,随着炭铁复合材料的消耗,去除率逐渐降低,但在24h内仍能保持显著的修复效果,去除率保持在90%以上,72h后降为73.96%.PRB系统中反应介质材料在长期水流作用下出现明显的迁移,炭铁复合材料的稳定性随着炭铁比的减小而降低.5BC-1nZVI材料在持续3d的渗流作用下,其迁移流失率最低,相比纯BC材料的迁移流失情况具有明显的改善效果.微观结果表明球磨法可成功合成炭铁复合材料,合成后的nZVI颗粒存在一定程度的氧化,与TCE接触反应后的炭铁复合材料由于降解产物的附着,炭铁复合材料的表面会形成一层白色薄膜,孔径变小,进而炭铁复合材料对TCE的去除性能降低. 展开更多
关键词 生物炭/纳米零价铁 三氯乙烯 可渗透反应墙 地下水
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改性载体厌氧氨氧化生物膜在浅层地下水修复中脱氮效能的模拟研究 被引量:1
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作者 王俊杰 杨津津 +7 位作者 李绍康 侯军华 常根旺 钟根茂 邓明涛 薛毅恒 李翔 白顺果 《环境科学研究》 CAS CSCD 北大核心 2024年第9期1965-1974,共10页
为探究厌氧氨氧化菌(AnAOB)在模拟地下水环境条件下脱氮性能的研究,以人工配水为进水,采用可渗透反应墙(PRB)作为模拟装置,使用纳米零价铁(nZVI)改性生物炭(BC)(nZVI@BC)厌氧氨氧化菌(AnAOB)生物膜作为填料,设置装置模拟温度从高温(33℃... 为探究厌氧氨氧化菌(AnAOB)在模拟地下水环境条件下脱氮性能的研究,以人工配水为进水,采用可渗透反应墙(PRB)作为模拟装置,使用纳米零价铁(nZVI)改性生物炭(BC)(nZVI@BC)厌氧氨氧化菌(AnAOB)生物膜作为填料,设置装置模拟温度从高温(33℃)降至实验室室温(21℃)的过程,探究降温过程中AnAOB生物膜填料对PRB装置脱氮性能的影响。结果表明:①PRB装置经过71 d的模拟运行,nZVI@BC载体AnAOB生物膜的PRB装置总氮(TIN)去除率达到82%,明显优于空白组(59.27%),且AnAOB生物膜脱氮贡献率占22.73%。②随着温度的变化,AnAOB生物膜的红色逐渐变淡,且生物膜污泥逐渐流失。③微生物群落结构表明,微生物多样性下降,优势物种在富集。从门水平上看,绿弯菌门(Chloroflexi)的相对丰度提升,逐步成为优势菌门,而浮霉菌门(Planctomycetota)和变形菌门(Proteobacteria)的相对丰度则降低。从属水平上来看,AnAOB优势属Candidatus Brocadia的相对丰度逐步提升,Candidatus Kuenenia的相对丰度则降低。研究显示,nZVI@BC载体AnAOB生物膜填料组成的生物膜微生物系统在PRB装置降温过程中维持稳定,同时AnAOB生物膜群落结构随降温过程的变化而变化,以应对降温过程中带来的不利影响。 展开更多
关键词 氨氮(NH_(4)^(+)-N) 厌氧氨氧化菌(AnAOB) 填料 温度 微生物多样性 可渗透反应墙(PRB)
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复合功能材料原位修复氯代烃污染地下水的长效性研究
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作者 刘翠翠 唐卫杰 +2 位作者 张满成 王水 郭红岩 《南京大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第4期683-691,共9页
针对我国地下水氯代烃污染问题,以椰壳生物炭和零价铁为主要原材料,研制了一种具有生物活性的复合功能材料,并在江苏某氯代烃污染地下水场地开展了中试研究.现场监测数据显示,复合功能材料可持续缓释碳源和铁源,能够实现脱氯降解菌驯化... 针对我国地下水氯代烃污染问题,以椰壳生物炭和零价铁为主要原材料,研制了一种具有生物活性的复合功能材料,并在江苏某氯代烃污染地下水场地开展了中试研究.现场监测数据显示,复合功能材料可持续缓释碳源和铁源,能够实现脱氯降解菌驯化生长.通过16S rRNA基因测序发现,可渗透反应墙(Permeable Reactive Barrier,PRB)运行1140天时,复合功能材料中脱氯降解菌的相对丰度(1.9%~8.3%)高于初始PRB材料(0.5%).PRB运行1140天后,复合功能材料的表面形态仍保持稳定.在2000天的运行周期内,PRB对不同氯代烃污染物的去除率为13.7%~100%.复合功能材料可通过吸附、铁还原和微生物降解复合机制高效去除地下水中的氯代烃.研究可为氯代烃污染地下水原位修复提供重要技术支撑. 展开更多
关键词 复合功能材料 可渗透反应墙 地下水 氯代烃
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复合矿物介质动态去除重金属多污染物实验研究
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作者 程国洋 夏银 +3 位作者 廖立兵 王丽娟 刘昊 吕国诚 《矿物学报》 CAS CSCD 北大核心 2024年第4期526-538,共13页
本文针对广西某多金属矿山尾矿库渗滤液造成的地下水污染问题,以蛭石、十六烷基三甲基溴化铵(CTAB)改性蛭石及赤铁矿作为PRB复合介质材料,进行了动态去除水中多污染物Cu^(2+)、Zn^(2+)、Mn^(2+)、CrO_(4)^(2–)的实验,研究了三种介质材... 本文针对广西某多金属矿山尾矿库渗滤液造成的地下水污染问题,以蛭石、十六烷基三甲基溴化铵(CTAB)改性蛭石及赤铁矿作为PRB复合介质材料,进行了动态去除水中多污染物Cu^(2+)、Zn^(2+)、Mn^(2+)、CrO_(4)^(2–)的实验,研究了三种介质材料的组装方式对多种污染物的去除行为。动态吸附实验表明,介质的不同组装方式会影响体系的p H值,及吸附柱对多污染物的去除效果。通过对反应前后矿物介质的物相、形貌等测试表征,讨论了矿物介质材料对污染物的去除机理。赤铁矿以表面吸附为主,蛭石、CTAB改性蛭石以离子交换为主,也存在表面吸附等过程。以上成果为复合矿物介质实际用于重金属污染地下水的原位修复奠定了重要基础。 展开更多
关键词 PRB 复合矿物介质 动态吸附 多污染物 组装方式
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可渗透反应墙除砷的研究进展与展望
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作者 夏文彬 熊思敏 +1 位作者 刘广义 陈伟 《环境化学》 CAS CSCD 北大核心 2024年第3期895-910,共16页
砷类化合物造成的环境污染严重影响生态和人类健康,有效地去除和防治砷污染是当前工业发展中亟待解决的问题之一.基于原位修复的可渗透反应墙(PRB)技术具有低成本、高效能、可持续性和工艺简单等优点,利用PRB技术防治砷污染是一种绿色... 砷类化合物造成的环境污染严重影响生态和人类健康,有效地去除和防治砷污染是当前工业发展中亟待解决的问题之一.基于原位修复的可渗透反应墙(PRB)技术具有低成本、高效能、可持续性和工艺简单等优点,利用PRB技术防治砷污染是一种绿色、经济又高效的选择.PRB中的填充材料是除砷的反应主体,因此总结了PRB除砷填充材料及其除砷性能与机理,包括黏土矿物、碳基材料、钙基材料、铁基材料和固体废弃物等.其中,铁基材料对砷物种的固定能力较其它材料更为突出,零价铁、铁矿物、废铁材料等铁基材料广泛应用于砷污染修复,廉价易得又高效的铁基材料是未来PRB除砷材料的重要研究方向.在此基础上,简要介绍了除砷PRB填充材料的实验研究与模拟,并通过PRB除砷工程或中试实验阐述了PRB的运行监测与砷污染治理效果,展望了PRB除砷材料和工程应用的发展前景与挑战,以促进我国地表径流砷污染治理PRB材料和技术的开发与进步. 展开更多
关键词 可渗透反应墙 固化 铁基材料 除砷机理
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竹炭-沸石混合料可渗透反应墙修复镉污染地下水的试验
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作者 李子邦 张亮 +1 位作者 刘豪 龚星 《中国环境科学》 EI CAS CSCD 北大核心 2024年第10期5607-5619,共13页
本文结合物理力学测试、静态批和动态柱试验、微观表征分析、地下水数值模拟等手段分析了竹炭-沸石混合料填充可渗透性反应墙(PRB)对镉的吸附机理和时效性.竹炭(粒径大于0.18mm)和沸石(粒径大于0.5mm)按照质量分数1:10∼3:10混合时,不... 本文结合物理力学测试、静态批和动态柱试验、微观表征分析、地下水数值模拟等手段分析了竹炭-沸石混合料填充可渗透性反应墙(PRB)对镉的吸附机理和时效性.竹炭(粒径大于0.18mm)和沸石(粒径大于0.5mm)按照质量分数1:10∼3:10混合时,不仅能有效去除地下水中镉,而且具备良好的渗透性和抗剪强度.竹炭-沸石混合料对镉的吸附能力随竹炭配比增加而增大,随粒径减小而增加;PRB柱穿透和耗竭时间随地下水流量和镉浓度增加而缩短.竹炭-沸石混合料去除镉的过程主要是发生络合反应、螯合作用、离子交换反应.地下水镉污染场地的PRB墙体厚度越大,地下水流速越慢,PRB的有效运行时间越长. 展开更多
关键词 地下水 镉污染 可渗透反应墙 长效性
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减压汇流式PRB渗流调控机制研究
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作者 郑凯旋 陶诗阳 +8 位作者 丁洁 陈涤 谭旖琦 雷蕾 陈岩贽 王炜 温勇 彭香琴 王洪涛 《中国环境科学》 EI CAS CSCD 北大核心 2024年第11期6210-6220,共11页
减压汇流式PRB(Passive convergence-permeable reactive barrier,PC-PRB)是一种新型可持续的地下水原位修复技术.为评估PC-PRB水力捕集性能并揭示其渗流调控机制,本文开发了质点示踪算法精度高和数值解稳定性强的渗流模拟软件PRB-Flow... 减压汇流式PRB(Passive convergence-permeable reactive barrier,PC-PRB)是一种新型可持续的地下水原位修复技术.为评估PC-PRB水力捕集性能并揭示其渗流调控机制,本文开发了质点示踪算法精度高和数值解稳定性强的渗流模拟软件PRB-Flow.结果表明,在给定模拟条件下,与连续式PRB(Continuous permeable reactive barrier,C-PRB)相比,PC-PRB平面和剖面捕集流量分别提升约为47%和90%.敏感性分析表明,导水管长度L_(p)、减压井横向范围TD_(w)和减压井深度H_(w)是影响PC-PRB水力性能的关键参数.L_(p)与PC-PRB水力捕集性能之间存在显著的正相关关系(P<0.01).增加TD_(w)和H_(w)均可提升PC-PRB水力捕集能力,但影响程度不及L_(p).导流管的引流减压作用使得减压井内产生降深,促使井周围地下水在水头差的驱动下向井内汇聚,从而显著提升了PC-PRB的水力捕集性能.此外,PC-PRB可有效解决C-PRB因流速不均而产生的局部击穿问题. 展开更多
关键词 渗透性反应墙 减压汇流 水力捕集 渗流调控 敏感性分析
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高级氧化-PRB修复填埋场复合污染地下水的可行性
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作者 游雨晴 郝娜 +1 位作者 詹良通 宋学 《中国环境科学》 EI CAS CSCD 北大核心 2024年第10期5620-5629,共10页
以杭州市某生活垃圾填埋场一期地下水中复合污染的COD,NH_(4)^(+),Mn^(2+)为对象,联用了非均相Fenton氧化和渗透性反应墙(PRB),设计了活性炭(AC),生物炭(BC),BC+Fe_(3)O_(4)3种不同的氧化反应催化剂组合并将其兼做PRB氧化层活性填料,下... 以杭州市某生活垃圾填埋场一期地下水中复合污染的COD,NH_(4)^(+),Mn^(2+)为对象,联用了非均相Fenton氧化和渗透性反应墙(PRB),设计了活性炭(AC),生物炭(BC),BC+Fe_(3)O_(4)3种不同的氧化反应催化剂组合并将其兼做PRB氧化层活性填料,下游串联沸石吸附层.批试验和柱试验结果显示,H_(2)O_(2)可直接预氧化47%的COD.氧化层中COD在催化氧化和吸附共同作用下被削减;Mn^(2+)受多孔碳材料灰分释放影响先沉淀后溶解,然后被吸附;AC和BC表面的官能团-OH和-COOH参与了反应.吸附层中NH_(4)^(+)和Mn^(2+)与沸石离子交换引起了沸石骨架结构变化,且沸石表面的官能团-NH和-OH也参与了兜底吸附.BC+Fe_(3)O_(4)氧化层与沸石吸附层长度比为1:3的串联组合对三种污染物的去除率均较高,且PRB失效时间(即污染物出流浓度达到入流的10%且超过限值的时间)最迟,填料失效时的有效利用率最高,是最优工艺. 展开更多
关键词 渗透性反应墙(PRB) 高级氧化 复合污染 填埋场地下水
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电化学强化反应墙去除硝酸盐的影响研究
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作者 时慧慧 钟溢健 +3 位作者 李金城 覃佳佳 邓钦 韦春满 《中国农村水利水电》 北大核心 2024年第4期97-103,110,共8页
面对农业灌溉区硝酸盐渗透污染地下水,损害人体健康和生态环境的现象,在传统可渗透反应墙(PRB)技术上增加电化学技术改善对硝酸盐的处理。结果表明,在立体电场作用下硝酸盐的去除率由传统技术的63.25%提高至95.77%,反应时间由原来的7 d... 面对农业灌溉区硝酸盐渗透污染地下水,损害人体健康和生态环境的现象,在传统可渗透反应墙(PRB)技术上增加电化学技术改善对硝酸盐的处理。结果表明,在立体电场作用下硝酸盐的去除率由传统技术的63.25%提高至95.77%,反应时间由原来的7 d缩短至3 d,提高处理效率降低成本。研究考察HRT、pH、电压、板间距单因素对电化学强化反应墙(EK-PRB)去除硝酸盐的影响,在此基础上通过响应曲面模型预测在HRT=15 h、电压=31 V、板间距=8.5 cm条件下EK-PRB的最佳去除率为96.75%,实际去除率为95.74%。相比传统PRB技术,EK-PRB填充生物炭粒子电极,提高污染物的传质速率,增强吸附能力同时提供更多的反应位点。通过三维电解和PRB的联合作用不仅大大提高污染物的去除效率,而且使得吸附后的填料介质在电化学作用下得到再生,实现反应过程的可持续进行,以期为处理硝酸盐的实际应用提供技术支撑。 展开更多
关键词 可渗透反应墙 生物炭 三维电解 响应曲面模型
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固废填埋场渗滤液处理中可渗透反应墙技术的应用研究 被引量:1
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作者 吕哲 《山西化工》 CAS 2024年第5期240-243,共4页
为切实提升固废填埋场渗滤液处理质量,降低设备排放,改善生态环境质量,保证地下水资源安全。对可渗透反应墙技术在固废填埋场渗滤液处理中的应用进行分析与研究,然后以案例分析的形式,对本文论点进一步验证,以供参考与借鉴。
关键词 固废填埋场 可渗透反应墙技术 环境质量
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