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Biohydrogen production with anaerobic sludge immobilized by granular activated carbon in a continuous stirred-tank 被引量:2
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作者 韩伟 陈红 +2 位作者 姚欣 李永峰 杨传平 《Journal of Forestry Research》 SCIE CAS CSCD 2010年第4期509-513,526,共6页
A continuous stirred-tank reactor (CSTR) process with granular activated carbon (GAC) was developed for fermentation hydrogen production from molasses-containing wastewater by mixed microbial cultures. Operation a... A continuous stirred-tank reactor (CSTR) process with granular activated carbon (GAC) was developed for fermentation hydrogen production from molasses-containing wastewater by mixed microbial cultures. Operation at 35℃, an initial biomass of 17.74 g·L^-1 and hydraulic retention time (HRT) of 6 h, the CSTR reactor presented a continuous hydrogen production ability of 5.9 L·d^-1 and the biogas was free of methane throughout the experiment. Dissolved fermehtation products were predominated by ethanol and acetate acid, with smaller quantities of propionic acid, butyric acid and valeric acid. It was found that GAC could make the immobilized system durable and stable in response to organic load impacting and low pH value. When the organic loading rate (OLR) ranged from 8 kgCOD/(m^3d) to 4 kgCOD/(m^3d), stable ethanol-type fermentation was formed, and the ethanol and acetate concentrations account for 89% of the total liquid products. 展开更多
关键词 hydrogen production ethanol-type fermentation CSTR granular activated carbon low pH
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Mechanisms of granular activated carbon anaerobic fluidized-bed process for treating phenols wastewater 被引量:5
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作者 LAO Shan gen (Department of Environmental Engineering, Zhejiang University, Hangzhou 310029, China) 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2002年第1期132-135,共4页
Granular activated carbon (GAC) anaerobic fluidized bed reactor was applied to treating phenols wastewater. When influent phenol concentration was 1000 mg/L, volume loadings of phenol and COD Cr were 0 39 kg/(m... Granular activated carbon (GAC) anaerobic fluidized bed reactor was applied to treating phenols wastewater. When influent phenol concentration was 1000 mg/L, volume loadings of phenol and COD Cr were 0 39 kg/(m 3·d) and 0 98 kg/(m 3·d), their removal rates were 99 9% and 96 4% respectively. From analyzing above results, the main mechanisms of the process are that through fluidizing GAC, its adsorption is combined with biodegradation, both activities are brought into full play, and phenol in wastewater is effectively decomposed. Meanwhile problems concerning gas liquid separation and medium plugging are well solved. 展开更多
关键词 granular activated carbon (gac) anaerobic fluidized bed PHENOL removal rate
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Combination of adsorption and biodegradation processes for textile effluent treatment using a granular activated carbon-biofilm configured packed column system 被引量:6
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作者 ONG SoonAn TOORISAKA Eiichi +1 位作者 HIRATA Makoto HANO Tadashi 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2008年第8期952-956,共5页
The objective of this study was to investigate the feasibility of using a granular activated carbon-biofilm configured packed column system in the deeolodzation of azo dye Acid Orange 7-containing wastewater.The Acid ... The objective of this study was to investigate the feasibility of using a granular activated carbon-biofilm configured packed column system in the deeolodzation of azo dye Acid Orange 7-containing wastewater.The Acid Orange 7-degrading microbial from anaerobic sequencing batch reactor which treating the azo dye-containing wastewater for more than 200 d was immobilized on spent granular activated carbon(GAC)through attachment.The GAC-biofilm configured packed column system showed the ability to decolorize 10... 展开更多
关键词 granular activated carbongac color removal Acid Orange 7 azo dye IMMOBILIZATION
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Thermodynamics and kinetics of cadmium adsorption onto oxidized granular activated carbon 被引量:7
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作者 HUANG Xin GAO Nai-yun ZHANG Qiao-li 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2007年第11期1287-1292,共6页
Cadmium sorption behavior of granular activated carbon oxidized with nitric acid was systematically studied by sets of the equilibrium and time-based experiments under various conditions. The cadmium adsorption capaci... Cadmium sorption behavior of granular activated carbon oxidized with nitric acid was systematically studied by sets of the equilibrium and time-based experiments under various conditions. The cadmium adsorption capacity of oxidized granular activated carbon enlarged with an increase in pH, and reduced with an increase in ionic strength. Experimental data were evaluated to find out kinetic characteristics. Adsorption processes were found to follow pseudo-second order rate equation. Adsorption isotherms correlate well with the Langmuir isotherm model and the maximum sorption capacity of cadmium evaluated is 51.02 μmol/g. Thermodynamic parameters were calculated based on Van't Hoff equation. Equilibrium constant Kd was evaluated from Freundlich isotherm model constants, Langmuir isotherm model constants, and isotherms, respectively. The average change of standard adsorption heat ΔH^0 was -25.29 kJ/mol. Negative ΔH^0 and ΔG^0 values indicate the adsorption process for cadmium onto the studied activated carbon is exothermic and spontaneous. The standard entropy ΔS^0 was also negative, which suggests a decrease in the freedom of the system. 展开更多
关键词 CADMIUM granular activated carbon THERMODYNAMICS KINETICS ADSORPTION
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Anaerobic hydrogen production of molasses from mixed microbial communities immobilized by activated granular carbon 被引量:2
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作者 李永峰 赵倩 《化工进展》 EI CAS CSCD 北大核心 2012年第S1期384-392,共9页
Molasses wastewater was evaluated as substrate for biohydrogen production by anaerobic fermentation in a novel continuous mixed attached growth reactor ( CMAGR ) with aeration pretreated sludge attached onto granular ... Molasses wastewater was evaluated as substrate for biohydrogen production by anaerobic fermentation in a novel continuous mixed attached growth reactor ( CMAGR ) with aeration pretreated sludge attached onto granular activated carbon under continuous flow condition.It was indicated that the CMAGR system was operated at the conditions of influent COD of 2000~6000mg / L , hydraulic retention time ( HRT ) of 6hand temperature of 35 ℃ , when the pH value and oxidation-reduction potential ( ORP ) ranged from 4.16and-434 mV respectively , stable ethanol-type fermentation was formed with the sum of ethanol and acetate concentration ratio of 89.3%to the total liquid products after 40days operation.The H 2 content in biogas and chemical oxygen demand ( COD ) removal were estimated to be 46.6% and 13% , respectively.It was also investigated that the effects of organic loading rates ( OLRs ) on CMAGR hydrogen production system.It was found that hydrogen production yield increased from 3.72 mmol / hL to 12.51 mmol / hL as OLRs increased from 8 kg / m 3 d to 32 kg / m 3 d.The maximum hydrogen production rate of 12.51mmol / hL at a OLR of 32kg / m 3 d and the maximum hydrogen yield by substrate consumed was 130.57 mmol / mol happened at OLR of 16 kg / m 3 d.Greater pHs appeared to be favour to butyrate production and the maximum of 0.51mol / mol was obtained at pH of 4.14.However , ethanol / acetate ratio was greater than 1.1at pH fluctuated between 3.4 - 3.6and 4.1 - 4.4which indicated that these pHs were favour to ethanol type fermentation.Therefore , the continuous mixed attached growth reactor ( CMAGR ) could be a promising attached growth system for biohydrogen fermentation. 展开更多
关键词 BIOHYDROGEN production continuous MIXED attached growth reactor molasess WASTEWATER activated granular carbon WASTEWATER treatment
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Strengthening decomposition of oxytetracycline in DBD plasma coupling with Fe-Mn oxide-loaded granular activated carbon 被引量:1
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作者 Shoufeng TANG Xue LI +3 位作者 Chen ZHANG Yang LIU Weitao ZHANG Deling YUAN 《Plasma Science and Technology》 SCIE EI CAS CSCD 2019年第2期90-96,共7页
A catalytic approach using a synthesized iron and manganese oxide-supported granular activated carbon(Fe-Mn GAC) under a dielectric barrier discharge(DBD) plasma was investigated to enhance the degradation of oxytetra... A catalytic approach using a synthesized iron and manganese oxide-supported granular activated carbon(Fe-Mn GAC) under a dielectric barrier discharge(DBD) plasma was investigated to enhance the degradation of oxytetracycline(OTC) in water. The prepared Fe-Mn GAC was characterized by x-ray diffraction and scanning electron microscopy, and the results showed that the bimetallic oxides had been successfully spread on the GAC surface. The experimental results showed that the DBD?+?Fe-Mn GAC exhibited better OTC removal efficiency than the sole DBD and DBD?+?virgin GAC systems. Increasing the fabricated catalyst and discharge voltage was favorable to the antibiotic elimination and energy yield in the hybrid process. The coupling process could be elucidated by the ozone decomposition after Fe-Mn GAC addition, and highly hydroxyl and superoxide radicals both play significant roles in the decontamination. The main intermediate products were identified by HPLC-MS to study the mechanism in the collaborative system. 展开更多
关键词 dielectric barrier discharge plasma Iron and MANGANESE OXIDES OXYTETRACYCLINE DECOMPOSITION supported granular activated carbon
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Effects of Dielectric Barrier Discharge Plasma Treatment on Pentachlorophenol Removal of Granular Activated Carbon 被引量:1
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作者 JI Puhui QU Guangzhou LI Jie 《Plasma Science and Technology》 SCIE EI CAS CSCD 2013年第10期1059-1065,共7页
The pentachlorophenol (PCP) adsorbed granular activated carbon (GAC) was treated by dielectric barrier discharge (DBD) plasma. The effects of DBD plasma on the structure of GAC and PCP decomposition were analyze... The pentachlorophenol (PCP) adsorbed granular activated carbon (GAC) was treated by dielectric barrier discharge (DBD) plasma. The effects of DBD plasma on the structure of GAC and PCP decomposition were analyzed by N2 adsorption, thermogravimetric, scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS) and gas chromatographymass spectrometry (GC-MS). The experimental data of adsorption kinetics and thermodynamics of PCP on GAC were fitted with different kinetics and isotherm models, respectively. The results indicate that the types of N2 adsorption isotherm of GAC are not changed by DBD plasma, while the specific surface area and pore volume increase after DBD plasma treatment. It is found that the weight loss of the saturated GAC is the highest, on the contrary, the weight loss of DBD treated GAC is the least because of reduced PCP residue on the GAC. The XPS spectra and SEM image suggest that some PCP on the GAC is removed by DBD plasma, and the surface of GAC treated by DBD plasma presents irregular and heterogeneous morphology. The GC-MS identification of by-products shows that two main dechlorination intermediate products, tetrachlorophenol and trichlorophenol, are distinguished. The fitting results of experimental data of adsorption kinetics and thermodynamics indicate that the pseudo-first-order and pseudo-second order models can be used for the prediction of the kinetics of virgin GAC and DBD treated GAC for PCP adsorption, and the Langmuir isotherm model fits better with the data of adsorption isotherm than the Freundlich isotherm in the adsorption of PCP on virgin GAC and DBD treated GAC. 展开更多
关键词 granular activated carbon dielectric barrier discharge PLASMA ADSORPTION PENTACHLOROPHENOL DECOMPOSITION
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Regeneration of Acid Orange 7 Exhausted Granular Activated Carbon Using Pulsed Discharge Plasmas 被引量:1
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作者 王慧娟 郭贺 +1 位作者 刘永杰 依成武 《Plasma Science and Technology》 SCIE EI CAS CSCD 2015年第10期881-886,共6页
In this paper, a pulsed discharge plasma (PDP) system with a multi-needle-to-plate electrodes geometry was set up to investigate the regeneration of acid orange 7 (AO7) exhausted granular activated carbon (GAC).... In this paper, a pulsed discharge plasma (PDP) system with a multi-needle-to-plate electrodes geometry was set up to investigate the regeneration of acid orange 7 (AO7) exhausted granular activated carbon (GAC). Regeneration of GAC was studied under different conditions of peak pulse discharge voltage and water pH, as well as the modification effect of GAC by the pulse discharge process, to figure out the regeneration efficiency and the change of the GAC structure by the PDP treatment. The obtained results showed that there was an appropriate peak pulse voltage and an optimal initial pH value of the solution for GAC regeneration. Analyses of scanning electron microscope (SEM), Boehm titration, Brunauer-Emmett-Teller (BET), Horvath-Kawazoe (HK), and X-ray Diffraction (XRD) showed that there were more mesopore and macropore in the regenerated GAC and the structure turned smoother with the increase of discharge voltage; the amount of acidic functional groups on the GAC surface increased while the amount of basic functional groups decreased after the regeneration process. From the result of the XRD analysis, there were no new substances produced on the GAC after PDP treatment. 展开更多
关键词 pulsed discharge plasma acid orange 7 granular activated carbon REGENERATION pore structure functional groups
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Additivity of pore structural parameters of granular activated carbons derived from different coals and their blends 被引量:7
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作者 Yao Xin Xie Qiang +3 位作者 Yang Chuan Zhang Bo Wan Chaoran Cui Shanshan 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第4期661-667,共7页
A series of granular activated carbons (GACs) were prepared by briquetting method from Chinese coals of different ranks and their blends, with coal pitch as the binder. Pore structural parameters including BET speci... A series of granular activated carbons (GACs) were prepared by briquetting method from Chinese coals of different ranks and their blends, with coal pitch as the binder. Pore structural parameters including BET specific surface area (SBEr), total pore volume (Vr) and average pore diameter (da) were measured and cal- culated as well as process parameters such as yield of char (CY) and burn-off (B). The relationship between the pore structural parameters of the GAC from coal blend (BC-GAC) and the ones of the GACs from corresponding single coals (SC-GACs) was analyzed, in which an index, the relative error (δ), was presented to define the bias between fitted values and experimental values of these parameters of the BC-GACs. The results show that the BC-GAC keeps qualitatively the pore structural features of the SC-GACs; as concerned as the quantitative relationship, the pore structural parameters of the BC-GAC from coal blend consisting of non-caking coals can be obtained by adding proportionally the pore structural parameters of the SC-GACs with a less than 10%. Meanwhile, for the BC-GAC from coal blend containing weak caking bituminous coal, the δ increases up to 25% and the experimental pore size distribution differs greatly from the fitted one. 展开更多
关键词 granular activated carbon Coal blend Pore structural parameters Additivity
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High-valued Utilization of China Fir Sawdust Extracted Essential Oil:Preparation of Granular Activated Carbons for n-Butane Adsorption 被引量:2
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作者 ZHU Guang-zhen,DENG Xian-lun,LIU Xiao-min Institute of Chemical Industry of Forestry Products,CAF National Engineering Lab.for Biomass Chemical Utilization +1 位作者 Key and Lab.on Forest Chemical Engineering,SFA,Key Lab.of Biomass Energy and Material,Jiangsu Province Nanjing 210042 《Agricultural Science & Technology》 CAS 2011年第2期179-182,共4页
[Objective] The aim was to study on the high-valued utilization of China Fir sawdust extracted essential oil.[Method] In the field of fir essential oil extraction,the processed China fir sawdust was used to prepare lo... [Objective] The aim was to study on the high-valued utilization of China Fir sawdust extracted essential oil.[Method] In the field of fir essential oil extraction,the processed China fir sawdust was used to prepare low-valued products.The high-valued utilization of China fir sawdust extracted essential oil(CFSEEO),namely as a precursor to prepare granular activated carbons(GACs),was attempted.The materials were characterized by ultimate analysis,SEM and XRD.[Rusult] A butane working capacity(BWC)of 14.3 g/100 ml was obtained by using the GACs with apparent density of 0.25 g/ml.It was available to introduce the technology of extracting essential oil from the China fir sawdust(CFS)in the industrial production process of activated carbons with high BWC(12.0-16.5 g/100 ml)and high surface area(2 000-2 630 m2/g)using phosphoric acid based on previous studies of the authors.[Conclusion] The resulting carbon prepared with the raw materials containing lower moisture exhibited a better property on n-butane adsorption. 展开更多
关键词 Essential oil China fir granular activated carbon BWC Phosphoric acid
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Removal of Pesticides from Water Using Granular Activated Carbon and Ultrafiltration Membrane—A Pilot Plant Study 被引量:1
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作者 Muhammad Zahoor 《Journal of Encapsulation and Adsorption Sciences》 2013年第3期71-76,共6页
The use of powdered activated carbon for fouling control in the membrane processes is limited by some secondary problems associated with its use, like cake formation, long backwash times and blackening of pipes. Granu... The use of powdered activated carbon for fouling control in the membrane processes is limited by some secondary problems associated with its use, like cake formation, long backwash times and blackening of pipes. Granular activated carbon (GAC) was used as an alternative of powdered activated carbon due to its large particle size which was kept from being entering into the membrane system. The secondary problems associated with the use of powdered activated carbon as foul control were not observed for granular activated carbon. Langmuir and Freundlich adsorption were used to describe the adsorption of 2,4-D and paraquat on GAC. Adsorption capacity of adsorbent was high for 2,4-D as compared to paraquat. Also, the R2 value was high for Langmuir model as compared to Freundlich model. Retention percentage of 2,4-D by membrane was high and thus the decline in permeate flux was high as compared to paraquat in ultrafiltration (UF) membrane process. 100% retention of 2,4-D was achieved in GAC/UF hybrid system. Improved permeate fluxes were observed for both contaminants in the hybrid system. 展开更多
关键词 Adsorption granular activated carbon ULTRAFILTRATION Membrane Permeate Flux PERCENT RETENTION
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Degradation of phenol using a combination of granular activated carbon adsorption and bipolar pulse dielectric barrier discharge plasma regeneration
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作者 唐首锋 李娜 +2 位作者 綦金榜 袁德玲 李杰 《Plasma Science and Technology》 SCIE EI CAS CSCD 2018年第5期92-100,共9页
A combined method of granular activated carbon(GAC) adsorption and bipolar pulse dielectric barrier discharge(DBD) plasma regeneration was employed to degrade phenol in water.After being saturated with phenol,the ... A combined method of granular activated carbon(GAC) adsorption and bipolar pulse dielectric barrier discharge(DBD) plasma regeneration was employed to degrade phenol in water.After being saturated with phenol,the GAC was filled into the DBD reactor driven by bipolar pulse power for regeneration under various operating parameters.The results showed that different peak voltages,air flow rates,and GAC content can affect phenol decomposition and its major degradation intermediates,such as catechol,hydroquinone,and benzoquinone.The higher voltage and air support were conducive to the removal of phenol,and the proper water moisture of the GAC was 20%.The amount of H2 O2 on the GAC was quantitatively determined,and its laws of production were similar to phenol elimination.Under the optimized conditions,the elimination of phenol on the GAC was confirmed by Fourier transform infrared spectroscopy,and the total removal of organic carbons achieved 50.4%.Also,a possible degradation mechanism was proposed based on the HPLC analysis.Meanwhile,the regeneration efficiency of the GAC was improved with the discharge treatment time,which attained 88.5% after 100 min of DBD processing. 展开更多
关键词 granular activated carbon regeneration dielectric barrier discharge plasma phenoldegradation bipolar pulse power
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Inactivation Removal for Excess Propagation of Copepod of Zooplankton in Ozone-Granular Activated Carbon Filter in Southern China
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作者 林涛 陈卫 王磊磊 《Journal of Donghua University(English Edition)》 EI CAS 2009年第6期639-644,共6页
Comparative experiments on the inactivation of Copepod were investigated in southern China. The 100% of inactivation effect may be attained by 3.0 mg/L of ozone for contacting time of 25 min, whereas 0.5 mg/L of dosag... Comparative experiments on the inactivation of Copepod were investigated in southern China. The 100% of inactivation effect may be attained by 3.0 mg/L of ozone for contacting time of 25 min, whereas 0.5 mg/L of dosage resulted in only 30% of inactivation rate. Copepod may not be completely inactivated by ozone oxidation for feasible dosage limited by higher bromide in raw water. The favorable environment of granular activated carbon (GAC) filter provided Copepod with conditions for excess propagation, The disinfection experimental results show that the inactivation rate is 90% by 2.0 mg/L of chloramines for contacting time of 30 min, whereas only 70% is attained with chlorine. The GC-MS examination indicates that the total organic substance is increased to 92 specie: inciuding 13 sorts of halogenated hydrocarbon by chlorine disnfection, which is more than that of chloramines. More products of bromiinated trihalomethanes occur in treated water by chlorine, disinfection and total amount of THMs is 3 times as high as that of chloramines. 展开更多
关键词 drinking water Copepod of zooplankton granular activated carbon gac filter INACTIVATION iisinfiection
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Phenol Removal from Water with Potassium Permanganate Modified Granular Activated Carbon
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作者 Jin Zhang 《Journal of Environmental Protection》 2013年第5期411-417,共7页
In order to improve adsorption capacity of granular activated carbon (GAC), potassium permanganate was used to react with GAC to change the surface properties and improve the adsorption capacity of GAC. By batch exper... In order to improve adsorption capacity of granular activated carbon (GAC), potassium permanganate was used to react with GAC to change the surface properties and improve the adsorption capacity of GAC. By batch experiments, improvement of adsorption capacity of potassium permanganate modified GAC (GACM) was studied. The influence of adsorption time, temperature, ratio of phenol with GAC/GACM, initial concentration of phenol and pH on adsorption efficiency of GACM was studied. The results showed that modified by potassium permanganate, the adsorption capacity of GAC improved to a higher level. The removal efficiency of phenol increased to about 20%. 展开更多
关键词 MODIFIED granular activated carbon POTASSIUM PERMANGANATE PHENOL Adsorption
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Removal of Heavy Metals (Copper, Manganese and Zinc) from Industrial Wastewater of Baiji Refinery by Granular Activated Carbon
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作者 dr Muzher M. Ibrahem AlDoury Abbas Ali Kanoosh 《Journal of Chemistry and Chemical Engineering》 2012年第9期789-798,共10页
The aim of the present work is to remove heavy metals (copper, manganese, and zinc) from industrial wastewater of Baiji refinery using GAC (granular activated carbon). The most important factors affecting adsorpti... The aim of the present work is to remove heavy metals (copper, manganese, and zinc) from industrial wastewater of Baiji refinery using GAC (granular activated carbon). The most important factors affecting adsorption process have been studied, which are granular activated carbon thickness, H, inlet pollutant concentration, Cv, and liquid hourly space velocity, LHSV. All experiments were performed under constant temperature at 25℃ and pH = 7. The experimental apparatus was designed and constructed to enable controlling of the operating conditions. Employing five levels for each of H and LHSV and three levels for Co required 75 runs for each metal. Box-Wilson method was used to reduce the number of experiments to 15 for each metal. The results indicated that copper, manganese, and zinc can be completely removed from wastewater using activated carbon. However, breakthrough time for zinc is low. It is also shown that breakthrough time (TB) and exhaustion time (TE) are inversely proportional with pollutant concentration and LHSV (liquid hour space velocity) while it is directly proportional with the thickness of activated carbon column. 展开更多
关键词 gac granular activated carbon heavy metals oil refinery wastewater.
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Evaluation of Removal Efficiency of Cobalt from Aqueous Solution Using Granular Activated Carbon
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作者 Yogeeta Vinayakrao Hete Suresh B.Gholse Ram U. Khope 《材料科学与工程(中英文B版)》 2011年第1期117-120,共4页
关键词 颗粒活性炭 水溶液 效率评估 LANGMUIR 吸附等温线 硝基苯甲酸
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颗粒活性炭-纳滤处理二级出水中有机物膜污染机制研究 被引量:1
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作者 孙丽华 邓斯 +1 位作者 梅筱禹 王春芳 《中国环境科学》 EI CAS CSCD 北大核心 2024年第7期3749-3758,共10页
采用颗粒活性炭(Granular Activated Carbon,GAC)、生物活性炭(Biological Activated Carbon,BAC)两种过滤单元分别与纳滤(Nanofiltration,NF)组合对污水厂二级出水进行深度处理,分析二级出水直接NF、GAC-NF以及BAC-NF三种不同处理工艺... 采用颗粒活性炭(Granular Activated Carbon,GAC)、生物活性炭(Biological Activated Carbon,BAC)两种过滤单元分别与纳滤(Nanofiltration,NF)组合对污水厂二级出水进行深度处理,分析二级出水直接NF、GAC-NF以及BAC-NF三种不同处理工艺对有机物的去除效果以及膜污染机制.研究发现,BAC-NF组合工艺对溶解性有机碳(DOC)、微生物代谢副产物类和腐殖酸类有机物的去除效果更好,去除率分别为85.2%、76.2%和82.0%;BAC-NF组合工艺的膜比通量(J/J0)最高,每个周期末的J/J0分别为0.69、0.65和0.63,膜污染总阻力最低,仅为5.97×10^(10)m^(-1);膜污染特征曲线表明二级出水直接NF为滤饼层污染,GAC-NF和BAC-NF先发生中间堵塞之后形成滤饼层污染;其中,BAC-NF以膜孔中间堵塞污染为主,膜污染程度最轻;通过扩展的德亚盖因-兰多-弗韦-奥弗比克(Extended Derjaguin-Laudau-Verwey-Overbeek,xDLVO)理论分析发现BAC-NF组合工艺污染后膜表面的疏水性最弱,膜表面Zeta电位值最大;BAC-NF组合工艺在过滤初期,水中有机物不容易到达膜表面,膜污染程度最轻.在过滤中后期,水中有机物与膜表面有机物之间很难产生粘附,形成的滤饼层最疏松.综上,BAC-NF组合工艺能有效缓解膜污染,可为再生水深度回用提供一种可靠的技术. 展开更多
关键词 二级出水 纳滤 颗粒活性炭 膜污染 xDLVO理论
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颗粒活性炭对亚甲基蓝的吸附与再生研究
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作者 许伟 刘军利 +2 位作者 孙康 陈超 张燕萍 《林产化学与工业》 CAS CSCD 北大核心 2024年第3期69-77,共9页
为推进颗粒活性炭在染料废水治理中的应用,采用自制的木质素基颗粒活性炭吸附亚甲基蓝(MB),考察了MB初始质量浓度、吸附温度和溶液pH值对吸附过程的影响,并利用吸附等温线和动力学对吸附过程进行了探讨,最后探索了活性炭的再生性能。研... 为推进颗粒活性炭在染料废水治理中的应用,采用自制的木质素基颗粒活性炭吸附亚甲基蓝(MB),考察了MB初始质量浓度、吸附温度和溶液pH值对吸附过程的影响,并利用吸附等温线和动力学对吸附过程进行了探讨,最后探索了活性炭的再生性能。研究结果表明:颗粒活性炭更适合高浓度MB吸附,吸附速率随溶液初始质量浓度的降低而降低;平衡吸附量受吸附初始质量浓度、吸附温度的影响较大,最佳吸附温度25℃,受溶液pH值影响较小。颗粒活性炭对MB的吸附等温线遵循Langmiur模型,吸附过程符合准二级动力学模型,颗粒内扩散模型分析表明内扩散及外扩散都是吸附的限速因素。吸附后活性炭在300℃热再生30 min,颗粒活性炭的MB吸附值可达240 mg/g,恢复达初始样品的94.12%,反复吸附再生4次后,颗粒活性炭的MB吸附值仍保持在85%以上。 展开更多
关键词 颗粒活性炭 亚甲基蓝 吸附 再生
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颗粒活性炭-纳滤对二级出水中条件致病菌和有机物的去除效能
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作者 孙丽华 张凯权 +2 位作者 梅筱禹 李瑞瑛 张妍 《中国农村水利水电》 北大核心 2024年第9期1-7,14,共8页
再生水回用是解决水资源短缺的重要途经,被广泛应用于工业生产、城市绿化方面,但其中含有大量的条件致病菌,对环境及人体健康具有潜在威胁。研究拟对污水厂二级出水采用颗粒活性炭(Granular Activated Carbon,GAC)、生物活性炭(Biologic... 再生水回用是解决水资源短缺的重要途经,被广泛应用于工业生产、城市绿化方面,但其中含有大量的条件致病菌,对环境及人体健康具有潜在威胁。研究拟对污水厂二级出水采用颗粒活性炭(Granular Activated Carbon,GAC)、生物活性炭(Biological Activated Carbon,BAC)两种过滤单元与纳滤(nanofiltration,NF)组合工艺,来达到水中三种条件致病菌(军团菌、铜绿假单胞菌和鸟分枝杆菌)、大肠杆菌和有机物的去除的目的,采用直接NF、GAC-NF和BAC-NF三种处理工艺对去除效果进行分析。结果表明:在GAC过滤的滤速为5 cm/h,NF的过滤压力为0.4 MPa条件下,直接NF及其组合工艺均可实现二级出水中条件致病菌的完全去除,相较于直接NF和GAC-NF,BAC-NF工艺对水中DOC、UV254、微生物代谢副产物类和腐殖酸类有机物的去除率最高,分别为85.2%、74.5%、76.2%和82.0%;水中条件致病菌与大肠杆菌、DOC之间均有显著相关性,可以通过强化水中大肠杆菌和有机物的去除,达到提高不同组合工艺对条件致病菌削减的目的;BAC表面生物膜细菌中的假单胞菌、气单胞菌、硝化螺旋菌和不动杆菌占比最高,上述细菌对条件致病菌的生长繁殖起抑制作用;生物膜真核微生物中的线虫和轮虫占比最高,这两种微生物能通过捕捉的方式实现对水中条件致病菌的削减。 展开更多
关键词 条件致病菌 纳滤 颗粒活性炭 二级出水 有机物.
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DBU-GAC型CO2吸附剂性能研究 被引量:10
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作者 周宏仓 肖旭 +4 位作者 何都良 Nana Agyemang Prempeh 章文斌 谢文杰 徐露 《中国电机工程学报》 EI CSCD 北大核心 2011年第35期78-83,共6页
为了实现烟气CO2的低成本、高效捕集,研究负载1,8-二氮杂二环[5,4,0]十一碳-7-烯(1,8-diazabicyclo[5,4,0]undec-7-ene,DBU)的颗粒活性炭(granular activated carbon,GAC)吸附剂对CO2捕集性能。DBU负载率越高,吸附剂比表面积、总孔容积... 为了实现烟气CO2的低成本、高效捕集,研究负载1,8-二氮杂二环[5,4,0]十一碳-7-烯(1,8-diazabicyclo[5,4,0]undec-7-ene,DBU)的颗粒活性炭(granular activated carbon,GAC)吸附剂对CO2捕集性能。DBU负载率越高,吸附剂比表面积、总孔容积和微孔容积越小,平均孔径与负载率呈明显的负相关性;Langmuir模型是拟合DBU在GAC上吸附行为拟合优度最佳的模型,DBU在GAC上单分子层吸附要多于多分子层吸附;DBU-GAC吸附剂在低于140℃时具有良好的热稳定性,DBU能抑制吸附剂水分蒸发,有利于DBU与CO2耗水反应;DBU溶液对CO2具有很高的捕集效率,是常用一乙醇胺-甲基二乙醇胺(monoethanolamine-methyl-diethanolamine,MEA-MDEA)复合胺溶液的2.6~3.3倍;GAC负载适量DBU对模拟烟气CO2具有良好的捕集效率,消除膜封效应能提高DBU-GAC吸附剂对CO2的吸附容量。 展开更多
关键词 1 8-二氮杂二环[5 4 0]十一碳-7-烯 颗粒活性炭 吸附剂 性能 CO2
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