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Biogeochemical mechanisms of zero-valent iron and biochar for synergistically mitigating antimony uptake in rice
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作者 Xiaofeng Zhang Jialin Chi +7 位作者 Huanyun Yu Liping Fang Tongxu Liu Yanhong Du Chuanping Liu Xiangqin Wang Qian Xu Fangbai Li 《Journal of Environmental Sciences》 2025年第7期76-86,共11页
Antimony(Sb)contamination in paddy fields can lead to its accumulation in rice grains,posing a threat to food safety.To address this issue,the combined use of zero-valent iron(ZVI)and biochar(BC)were applied to decrea... Antimony(Sb)contamination in paddy fields can lead to its accumulation in rice grains,posing a threat to food safety.To address this issue,the combined use of zero-valent iron(ZVI)and biochar(BC)were applied to decrease the uptake of Sb in Sb-polluted soils,and their effects on Sb uptake from soil to rice grains were investigated.Our results showed that the combination treatment of 0.05%ZVI and 0.095%BC resulted in a significant decrease(42.8%)in Sb accumulation in rice grains that was comparably more efficient than that by 0.05%ZVI(decrease of 15.8%Sb accumulation)or 0.095%BC(decrease of 12.7%Sb accumulation)alone,demonstrating the synergistic effect of ZVI and BC on mitigating Sb uptake by rice plants.ZVI presence resulted in the formation of iron oxides in the soil and on root surfaces,and the S^(2-)/S_(2)^(2-)ascent also increased by 58.7%on day 75 compared with that of the control,facilitating the reduction of Sb(Ⅴ)to less mobile Sb(Ⅲ),thereby decreasing Sb accumulation in rice plants.BC initially increased themobility of Sb owing to its alkaline nature,whereas the electron shuttle properties of BC contributed to a decrease in Sbmobility.The abundance of the arsenite-reducing gene arrA ultimately increased by 203.2% on day 120 compared with the initial phase on day 5,and BC caused a remarkable increase in arrA gene abundance.This study revealed the synergistic mechanisms by combining ZVI and BC to mitigate Sb uptake by rice,which may be useful for the sustainable remediation of contaminated rice paddies. 展开更多
关键词 ANTIMONY Zero-valent iron biochar Synergistic remediation Soil-rice system
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Efficient remediation of different concentrations of Cr-contaminated soils by nano zero-valent iron modified with carboxymethyl cellulose and biochar
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作者 Lihong Xie Qiyan Ma +7 位作者 Qingjun Chen Yiyang Liu Pengfei Guo Jinlan Zhang Guilan Duan Aijun Lin Tingting Zhang Shangyi Li 《Journal of Environmental Sciences》 2025年第1期474-486,共13页
Nano zero-valent iron(nZVI)is widely used in soil remediation due to its high reactivity.However,the easy agglomeration,poor antioxidant ability and passivation layer of Fe-Cr coprecipitates of nZVI have limited its a... Nano zero-valent iron(nZVI)is widely used in soil remediation due to its high reactivity.However,the easy agglomeration,poor antioxidant ability and passivation layer of Fe-Cr coprecipitates of nZVI have limited its application scale in Cr-contaminated soil remediation,especially in high concentration of Cr-contaminated soil.Herein,we found that the carboxymethyl cellulose on nZVI particles could increase the zeta potential value of soil and change the phase of nZVI.Along with the presence of biochar,97.0%and 96.6%Cr immobilization efficiency through CMC-nZVI/BC were respectively achieved in high and low concentrations of Cr-contaminated soils after 90-days remediation.In addition,the immobilization efficiency of Cr(VI)only decreased by 5.1%through CMC-nZVI/BC treatment after 10 weeks aging in air,attributing to the strong antioxidation ability.As for the surrounding Crcontaminated groundwater,the Cr(VI)removal capacity of CMC-nZVI/BC was evaluated under different reaction conditions through column experiments and COMSOL Multiphysics.CMC-nZVI/BC could efficiently remove 85%of Cr(VI)in about 400 hr when the initial Cr(VI)concentration was 40 mg/L and the flow rate was 0.5 mL/min.This study demonstrates that uniformly dispersed CMC-nZVI/BC has an excellent remediation effect on different concentrations of Cr-contaminated soils. 展开更多
关键词 Carboxymethyl cellulose Nanoscale zero-valent iron biochar Cr-contaminated soils
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Arsenic availability and transportation in soil-rice system affected by iron-modified biochar 被引量:11
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作者 QIAN Zi-yan XUE Sheng-guo +2 位作者 CUI Meng-qian WU Chuan LI Wai-chin 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第6期1901-1918,共18页
Iron-modified biochar(FeOS)is known to be effective at immobilization of arsenic(As)in soils.A pot experiment was conducted to investigate the effects of FeOS on As availability and ttransportation in the soil-rice sy... Iron-modified biochar(FeOS)is known to be effective at immobilization of arsenic(As)in soils.A pot experiment was conducted to investigate the effects of FeOS on As availability and ttransportation in the soil-rice system at different growth stages of rice with different pollution levels.The results showed that Fe concentration decreased and As concentration increased in paddy soils with the FeOS addition,especially in 120 mg/kg As treatment,the As concentration decreased by 16.46%and 30.56%at the maturity stage with 0.5%and 1%FeOS additions,respectively.Compared with the control,the application of FeOS reduced the arsenic content in rice tissues and increased the biomass,with the root biomass increased by 12.68%and the shoot biomass was increased by 8.94%with the addition of 1%FeOS.This may be related to the promotion of iron plaque formation and the transformation of microbial community structure in FeOS treatments,in accordance with the result of gene abundance and Fe/As contents of iron plaque in the study.This study is expected to provide further support and theoretical basis for the application of FeOS in the remediation of As contaminated paddy soil. 展开更多
关键词 ARSENIC rice iron-modified biochar(FeOS) iron plaque SPECIATION uptake
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A porous biochar supported nanoscale zero-valent iron material highly efficient for the simultaneous remediation of cadmium and lead contaminated soil 被引量:16
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作者 Wei Qian Jing-Yi Liang +2 位作者 Wen-Xuan Zhang Shi-Ting Huang Zeng-Hui Diao 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2022年第3期231-241,共11页
Risk associated with heavy metals in soil has been received widespread attention.In this study,a porous biochar supported nanoscale zero-valent iron(BC-nZVI)was applied to immobilize cadmium(Cd)and lead(Pb)in clayey s... Risk associated with heavy metals in soil has been received widespread attention.In this study,a porous biochar supported nanoscale zero-valent iron(BC-nZVI)was applied to immobilize cadmium(Cd)and lead(Pb)in clayey soil.Experiment results indicated that the immobilization of Cd or Pb by BC-nZVI process was better than that of BC or nZVI process,and about 80%of heavy metals immobilization was obtained in BC-nZVI process.Addition of BC-nZVI could increase soil pH and organic matter(SOM).Cd or Pb immobilization was inhibited with coexisting organic compound 2,4-dichlorophenol(2,4-DCP),but 2,4-DCP could be removed in a simultaneous manner with Cd or Pb immobilization at low concentration levels.Simultaneous immobilization of Cd and Pb was achieved in BC-nZVI process,and both Cd and Pb availability significantly decreased.Stable Cd species inculding Cd(OH)_(2),CdCO_(3)and CdO were formed,whereas stable Pb species such as PbCO_(3),PbO and Pb(OH)_(2)were produced with BC-nZVI treatment.Simultaneous immobilization mechanism of Cd and Pb in soil by BC-nZVI was thereby proposed.This study well demonstrates that BC-nZVI has been emerged as a potential technology for the remediation of multiple heavy metals in soil. 展开更多
关键词 Cadmium(Cd) Lead(Pb) biochar Nano zero valent iron(nZVI) Contaminated soil
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Watering techniques and zero-valent iron biochar pH effects on As and Cd concentrations in rice rhizosphere soils,tissues and yield 被引量:11
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作者 Md Shafiqul Islam Yali Chen +6 位作者 Liping Weng Jie Ma Zulqarnain Haider Khan Zhongbin Liao Abdoul Salam Issiaka Abdoul Magid Yongtao Li 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2021年第2期144-157,共14页
Zero-valent iron amended biochar(ZVIB)has been proposed as a promising material in immobilizing heavy metals in paddy fields.In this study,the impacts of p H of ZVIB(p H 6.3 and p H 9.7)and watering management techniq... Zero-valent iron amended biochar(ZVIB)has been proposed as a promising material in immobilizing heavy metals in paddy fields.In this study,the impacts of p H of ZVIB(p H 6.3 and p H 9.7)and watering management techniques(watering amount in the order of CON(control,5/72)>3/72>1-3/72>3/100>1/72,with 5/72,for example,representing irrigation given to 5 cm above soil surface in 72 hr regular interval)on As and Cd bioavailability for rice and its grain yield(Yield BR)were investigated in a pot experiment.Brown rice As(As BR)content was irrelative to the watering treatments,while significantly decreased(>50%)with the addition of both ZVIB materials.The diminutions of brown rice Cd(Cd BR)content as well as the Yield BR were highly dependent on both the soil amendment materials’p H and watering amount.Among all the watering treatments,3/72 treatment(15%less irrigation water than the CON)with ZVIB 6.3 amendment was the optimum fit for simultaneous reduction of As BR(50%)and Cd BR contents(19%)as well as for significant increment(12%)of the Yield BR.Although high pH(9.7)ZVIB application could also efficiently decrease As and Cd contents in brown rice,it might risk grain yield lost if appropriate(e.g.3/72 in our study)watering management technique was not chosen.Therefore,ZVIB would be an environmentally friendly option as an amendment material with proper selection of watering management technique to utilize As and Cd co-contaminated arable soils safely for paddy cultivation. 展开更多
关键词 Brown rice As Brown rice Cd Grain yield Paddy soils Water management Zero-valent iron biochar
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Sodium citrate and biochar synergistic improvement of nanoscale zero-valent iron composite for the removal of chromium(Ⅵ)in aqueous solutions 被引量:4
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作者 Hongyi Zhou Mengyao Ye +3 位作者 Yongkang Zhao Shams Ali Baig Ning Huang Mengyan Ma 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2022年第5期227-239,共13页
Sodium citrate(SC)is a widely-used food and industrial additive with the properties of com-plexation and microbial degradation.In the present study,nano-zero-valent iron reaction system(SC-nZVI@BC)was successfully est... Sodium citrate(SC)is a widely-used food and industrial additive with the properties of com-plexation and microbial degradation.In the present study,nano-zero-valent iron reaction system(SC-nZVI@BC)was successfully established by modifying nanoscale zero-valent iron(nZVI)with SC and biochar(BC),and was employed to remove Cr(Ⅵ)from aqueous solu-tions.The nZVI,SC-nZVI and SC-nZVI@BC were characterized and compared using X-ray diffraction(XRD),Fourier transform infrared spectroscopy(FTIR),thermogravimetric analy-ses(TGA),vibrating sample magnetometer(VSM),scanning electron microscope(SEM),X-ray diffraction(XRD)and X-ray photoelectron spectroscopy(XPS).The results showed that nZVI was successfully loaded on the biochar,and both the agglomeration and surface pas-sivation problems of nanoparticles were well resolved.The dosage of SC,C∶Fe,initial pH and Cr(Ⅵ)concentration demonstrated direct effects on the removal efficiency.The maximum Cr(Ⅵ)removal rate and the removal capacity within 60 min were 99.7%and 199.46 mg/g,respectively(C∶Fe was 1∶1,SC dosage was 1.12 mol.%,temperature was 25℃,pH=7,and the original concentration of Cr(Ⅵ)was 20 mg/L).The reaction confirmed to follow the pseudo-second-order reaction kinetics,and the order of the reaction rate constant k was as follows:SC-nZVI@BC>nZVI@BC>SC-nZVI>nZVI.In addition,the mechanism of Cr(Ⅵ)removal by SC-nZVI@BC mainly involved adsorption,reduction and co-precipitation,and the reduction of Cr(Ⅵ)to Cr(Ⅲ)by nano Fe0 played a vital role.Findings from the present study demon-strated that the SC-nZVI@BC exhibited excellent removal efficiency toward Cr(Ⅵ)with an improved synergistic characteristic by SC and BC. 展开更多
关键词 Nanoscale zero-valent iron Cr(Ⅵ)removal Sodium citrate biochar Synergistic promotion
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Production of low-silicon molten iron from high-silica hematite using biochar
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作者 Hui-qing Tang Xiu-feng Fu +2 位作者 Yan-qi Qin Shi-yu Zhao Qing-guo Xue 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2017年第1期27-33,共7页
A new method of utilizing high-silica hematite to produce low-silicon molten iron was proposed.In this method,FASTMELT,which comprised direct reduction and melt separation processes,was applied,with highly reactive bi... A new method of utilizing high-silica hematite to produce low-silicon molten iron was proposed.In this method,FASTMELT,which comprised direct reduction and melt separation processes,was applied,with highly reactive biochar as the reductant in the direct reduction stage.The proposed method was experimentally investigated and the results show that the method is feasible.In the direct reduction stage,ore-char briquette could achieve a metallization rate of 84%-88% and residual carbon of 0.27-0.89mass% at temperature of 1373 K,biochar mixing ratio of 0.8-0.9,and reduction time of 15 min.Some silica particles remained embedded in the iron phase after the reduction.In the melting separation stage,molten iron with a carbon content of 0.02-0.03mass% and silicon content of 0.02-0.18mass%could be obtained from the metallic briquettes under the above-mentioned conditions;the iron recovery rate was83%-91% and impurities in the obtained metal were negligible. 展开更多
关键词 High-silica hematite Low-silicon molten iron biochar Direct reduction Melt separation
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Biochar regulates biogeochemical cycling of iron and chromium in a soil-rice system by stimulating Geobacter and Clostridium
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作者 Min XU Yang LIN +7 位作者 Jing MA Lulu LONG Chao CHEN Gang YANG Chun SONG Jun WU Xiaohong ZHANG Peng GAO 《Pedosphere》 SCIE CAS CSCD 2024年第5期929-940,共12页
In soil-rice systems,microbial reduction of iron(Fe)has been recognized as a crucial biogeochemical process that regulates Fe and chromium(Cr)translocation;however,the underlying processes are unknown.To investigate t... In soil-rice systems,microbial reduction of iron(Fe)has been recognized as a crucial biogeochemical process that regulates Fe and chromium(Cr)translocation;however,the underlying processes are unknown.To investigate the impacts of biochar on the biochemical cycling of Fe and Cr and their toxicity to rice,maize straw biochar was applied at 1%(weight/weight)to a paddy soil spiked with 300 mg kg^(-1)Cr under two phosphorus(P)levels(0 or 90 mg kg^(-1))in a pot experiment.The key microbial groups affecting Fe dissimilatory reduction and their environmental drivers were explored.Biochar inhibited root Cr uptake by 36%,owing to the promoted iron plaque(IP)formation on the rice root surface.Correlation analysis showed that Fe concentration in pore water was strongly linked to the abundances of Geobacter(r=0.81-0.94,P<0.05)and Clostridium(r=0.83-0.95,P<0.05),indicating that Geobacter and Clostridium played essential roles in Fe reduction.Redundancy analysis showed that labile carbon and pore water P concentrations were the key determinants influencing Fe-reducing bacterial abundances,accounting for 42%and 32%of the variation in community composition,respectively.Besides,biochar increased Fe and P concentrations in root cell walls,which retained more Cr.Overall,Cr stress in rice under biochar treatment was relieved through increasing IP formation and altering subcellular distribution.These mechanistic insights had important implications for reducing Cr uptake by rice. 展开更多
关键词 chromium translocation iron plaque iron reduction maize straw biochar microbial reduction paddy soil phosphorus fertilization subcellular distribution
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An overview of biochar production techniques and application in iron and steel industries
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作者 Segun E.Ibitoye Chanchal Loha +5 位作者 Rasheedat M.Mahamood Tien-Chien Jen Meraj Alam Ishita Sarkar Partha Das Esther T.Akinlabi 《Bioresources and Bioprocessing》 2024年第1期864-898,共35页
Integrating innovation and environmental responsibility has become important in pursuing sustainable industrial practices in the contemporary world.These twin imperatives have stimulated research into developing metho... Integrating innovation and environmental responsibility has become important in pursuing sustainable industrial practices in the contemporary world.These twin imperatives have stimulated research into developing methods that optimize industrial processes,enhancing efficiency and effectiveness while mitigating undesirable ecological impacts.This objective is exemplified by the emergence of biochar derived from the thermo-chemical transformation of biomass.This review examines biochar production methods and their potential applications across various aspects of the iron and steel industries(ISI).The technical,economic,and sustainable implications of integrating biochar into the ISI were explored.Slow pyrolysis and hydrothermal carbonization are the most efficient methods for higher biochar yield(25-90%).Biochar has several advantages-higher heating value(30-32 MJ/kg),more porosity(58.22%),and significantly larger surface area(113 m2/g)compared to coal and coke.However,the presence of biochar often reduces fluidity in a coal-biochar mixture.The findings highlighted that biochar production and implementation in ISI often come with higher costs,primarily due to the higher expense of substitute fuels compared to traditional fossil fuels.The economic viability and societal desirability of biochar are highly uncertain and vary significantly based on factors such as location,feedstock type,production scale,and biochar pricing,among others.Furthermore,biomass and biochar supply chain is another important factor which determines its large scale implementation.Despite these challenges,there are opportunities to reduce emissions from BF-BOF operations by utilizing biochar technologies.Overall,the present study explored integrating diverse biochar production methods into the ISI aiming to contribute to the ongoing research on sustainable manufacturing practices,underscoring their significance in shaping a more environmentally conscious future. 展开更多
关键词 biochar Biomass conversion Carbon sequestration Environmental responsibility iron and steel industries
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Pristine/magnesium-loaded biochar and ZVI affect rice grain arsenic speciation and cadmium accumulation through different pathways in an alkaline paddy soil
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作者 Chen Zhang Dong Shi +6 位作者 Chao Wang Guoxin Sun Huafen Li Yanxia Hu Xiaona Li Yanhui Hou Ruilun Zheng 《Journal of Environmental Sciences》 2025年第1期630-641,共12页
Cadmium(Cd)and arsenic(As)co-contamination has threatened rice production and food safety.It is challenging to mitigate Cd and As contamination in rice simultaneously due to their opposite geochemical behaviors.Mg-loa... Cadmium(Cd)and arsenic(As)co-contamination has threatened rice production and food safety.It is challenging to mitigate Cd and As contamination in rice simultaneously due to their opposite geochemical behaviors.Mg-loaded biochar with outstanding adsorption capacity for As and Cd was used for the first time to remediate Cd/As contaminated paddy soils.In addition,the effect of zero-valent iron(ZVI)on grain As speciation accumulation in alkaline paddy soils was first investigated.The effect of rice straw biochar(SC),magnesiumloaded rice straw biochar(Mg/SC),and ZVI on concentrations of Cd and As speciation in soil porewater and their accumulation in rice tissueswas investigated in a pot experiment.Addition of SC,Mg/SC and ZVI to soil reduced Cd concentrations in rice grain by 46.1%,90.3%and 100%,and inorganic As(iAs)by 35.4%,33.1%and 29.1%,respectively,and reduced Cd concentrations in porewater by 74.3%,96.5%and 96.2%,respectively.Reductions of 51.6%and 87.7%in porewater iAs concentrationswere observed with Mg/SC and ZVI amendments,but notwith SC.Dimethylarsinic acid(DMA)concentrations in porewater and grain increased by a factor of 4.9 and 3.3,respectively,with ZVI amendment.The three amendments affected grain concentrations of iAs,DMA and Cd mainly by modulating their translocation within plant and the levels of As(Ⅲ),silicon,dissolved organic carbon,iron or Cd in porewater.All three amendments(SC,Mg/SC and ZVI)have the potential to simultaneously mitigate Cd and iAs accumulation in rice grain,although the pathways are different. 展开更多
关键词 Cadmium(Cd) Arsenic(As)speciation CO-CONTAMINATION Magnesium-loaded biochar Zero-valent iron(ZVI) Rice
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富铁载硫生物炭固定稻田土壤镉砷的效果和机制
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作者 许垂堃 曾鸿鹄 +9 位作者 梁延鹏 张学洪 林华 涂志红 周自坚 李华伟 谭智宇 梁子豪 张雨喆 陈功宁 《环境科学学报》 北大核心 2026年第1期385-400,共16页
稻田镉、砷环境行为差异大,生物炭在降低镉有效性的同时提高了砷在土壤中的移动性.本研究通过硫铁化改性合成了富铁载硫生物炭(FSBC),并探明其固定稻田土壤镉、砷的效果和机制.通过吸附等温实验发现,25°C条件下,FSBC对Cd(II)和As(I... 稻田镉、砷环境行为差异大,生物炭在降低镉有效性的同时提高了砷在土壤中的移动性.本研究通过硫铁化改性合成了富铁载硫生物炭(FSBC),并探明其固定稻田土壤镉、砷的效果和机制.通过吸附等温实验发现,25°C条件下,FSBC对Cd(II)和As(III)的最大吸附容量分别为152.7 mg·g^(-1)(pH=6)和134.8 mg·g^(-1)(pH=4),FSBC主要通过共沉淀和表面络合固定水溶液中的Cd(II)和As(III).通过水稻盆栽试验发现,与对照组(CK)相比,添加1%(m/m)FSBC使土壤中高生物有效性的Cd和As分别减少了13.9%和11.6%,使籽粒中Cd和As含量分别降低了28.9%和61.1%,其中,As(III)含量减少了16.0%.其主要机制包括:(1)提升土壤pH;(2)促进无定型铁氧化矿物的形成与分散,增加其对土壤镉、砷的截留贮存作用;(3)硫铁纳米材料通过共沉淀固定土壤Cd和As;(4)促进了水稻根表铁膜形成及其对镉、砷的固定;(5)增强了土壤耐镉耐砷的微生物群落.该研究成果可以拓展生物炭的环境应用,为稻田镉、砷复合污染的治理提供新的理论依据和技术支持. 展开更多
关键词 同步阻控 水稻 富铁载硫生物炭
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Sorption of lanthanide ions on biochar composites 被引量:6
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作者 Dorota Kotodyniska Justyna Bak +1 位作者 Malwina Majdariska Dominika Fila 《Journal of Rare Earths》 SCIE EI CAS CSCD 2018年第11期1212-1220,共9页
Sorption of lanthanum(Ⅲ), cerium(Ⅲ and neodymium(Ⅲ) ions from the aqueous solutions of mixtures through adsorption on the biochar composites was investigated as a function of sorbent mass, pH, phase contact ti... Sorption of lanthanum(Ⅲ), cerium(Ⅲ and neodymium(Ⅲ) ions from the aqueous solutions of mixtures through adsorption on the biochar composites was investigated as a function of sorbent mass, pH, phase contact time and initial concentration of solutions at 295 K. The maximum removal of lanthanide ions takes place under the following conditions: 0.1 g of sorbent mass, pH 4 and 360 rain contact time for all studied initial concentrations of solutions. Kinetics of La(Ⅲ), Ce(Ⅲ) and Nd(Ⅲ) ions sorption proceeded by a fast initial uptake reached equilibrium. This process was modelled by means of the pseudo first order, pseudo second order, intraparticle diffusion and Elovich models. The desorption of three lanthahide ions by nitric, hydrochloric and sulfuric acids at a concentration of 1 mol/L from biochar composites was also studied. In order to investigate the sorption mechanism FFIR, XRD and XPS analyses were performed after sorption of ions from the mixture. 展开更多
关键词 Lanthanide ions biochar composites Sorption mechanism Zerovalent iron Rare earths
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Preparation and characterization of boron-doped corn straw biochar: Fe(Ⅱ) removal equilibrium and kinetics 被引量:9
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作者 Long Sui Chunyu Tang +3 位作者 Qing Du Ying Zhao Kui Cheng Fan Yang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2021年第8期116-123,共8页
Nowadays,iron ions as a ubiquitous heavy metal pollutant are gradually concerned and the convenient and quick removal of excessive iron ions in groundwater has become a major challenge for the safety of drinking water... Nowadays,iron ions as a ubiquitous heavy metal pollutant are gradually concerned and the convenient and quick removal of excessive iron ions in groundwater has become a major challenge for the safety of drinking water.In this study,boron-doped biochar(B-BC)was successfully prepared at various preparation conditions with the addition of boric acid.The as-prepared material has a more developed pore structure and a larger specific surface area(up to 897.97 m2/g).A series of characterization results shows that boric acid effectively activates biochar,and boron atoms are successfully doped on biochar.Compared with the ratio of raw materials,the pyrolysis temperature has a greater influence on the amount of boron doping.Based on Langmuir model,the maximum adsorption capacity of 800 B-BC1:2 at25℃,40℃,55℃ are 50.02 mg/g,95.09 mg/g,132.78 mg/g,respectively.Pseudo-second-order kinetic model can better describe the adsorption process,the adsorption process is mainly chemical adsorption.Chemical complexation,ions exchange,and co-precipitation may be the main mechanisms for Fe2+removal. 展开更多
关键词 Boron-doped biochar Pyrolysis temperature iron ions Removal mechanisms
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活化铁尾砂-镁改性生物炭基缓释肥养分缓释特性及其对水稻生长的影响
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作者 亢涵 王博石 +7 位作者 宫璇 袁梦 张晓蓉 杨慧敏 陈月 罗桥冰 罗春峰 巩宗强 《中国土壤与肥料》 北大核心 2025年第11期185-197,共13页
活化铁尾砂-镁改性生物炭缓释肥(AMF)对氮、磷、钾缓释特性及促进水稻生长机制暂不明晰。基于动力学吸附、静水溶出与土壤淋出试验,明确AMF对氮、磷和钾的缓释性能;通过盆栽试验分析不同施肥制度对水稻全生育周期生理生化指标的影响。... 活化铁尾砂-镁改性生物炭缓释肥(AMF)对氮、磷、钾缓释特性及促进水稻生长机制暂不明晰。基于动力学吸附、静水溶出与土壤淋出试验,明确AMF对氮、磷和钾的缓释性能;通过盆栽试验分析不同施肥制度对水稻全生育周期生理生化指标的影响。结果表明,AMF缓释性能良好,对氮、磷、钾的平衡吸附量分别为599.36、243.53和223.68 mg·g^(-1);淋出试验结果证实,AMF在42 d时对氮、磷、钾释放率较复合肥对照分别减少34.20%、23.93%和30.93%,其累计释放量分别为氮、磷、钾施用量的52.93%、56.03%和62.35%。与复合肥对照相比,施用1%土壤质量的AMF可使成熟期单株水稻干重提高20.60%;分蘖期水稻叶片的可溶性蛋白和灌浆期水稻叶片叶绿素含量分别增加166.71%和52.46%。施用AMF可通过降低水稻叶片丙二醛含量并提升其超氧化物歧化酶活性,增强水稻抗逆性,进而促进水稻生长。AMF研发可为新型高效肥料的开发及农业可持续发展提供理论和技术支撑。 展开更多
关键词 活化铁尾砂-镁改性生物炭 缓释特性 水稻 酶活性
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复合改性陶粒生物滤池强化污水厂尾水脱氮除磷
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作者 宋瑞 余健 《环境工程学报》 北大核心 2025年第1期115-125,共11页
随着城市污水处理厂排放标准的提高,二级污水处理厂低碳尾水的深度处理成为共同关注的问题。该研究以铁粉、黄铁矿、生物炭等修饰普通陶粒,通过对比实验考察了改性陶粒对污水厂低碳尾水的脱氮除磷效果。在温度为20℃,HRT为5.9h,C/N比约... 随着城市污水处理厂排放标准的提高,二级污水处理厂低碳尾水的深度处理成为共同关注的问题。该研究以铁粉、黄铁矿、生物炭等修饰普通陶粒,通过对比实验考察了改性陶粒对污水厂低碳尾水的脱氮除磷效果。在温度为20℃,HRT为5.9h,C/N比约为1:2的条件下,改性陶粒滤池对TN、TP的去除率分别为98.45%、69.03%,显著高于普通陶粒滤池的7.4%、54.04%。传统的反硝化脱氮、铁自养反硝化、硫自养反硝化以及生物炭对微生物的富集等协同作用可大幅提高对低碳尾水的脱氮效果,增强系统的反硝化性能;磷的去除是生物与化学沉淀共同作用的结果。本研究为城市二级污水处理厂尾水的深度处理提供了一个很好的技术方案,对水环境保护具有重要意义。 展开更多
关键词 改性陶粒 铁粉 黄铁矿 生物炭 自养反硝化 微生物多样性
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生物炭负载铁锰双金属氧化物活化过氧化氢降解环丙沙星
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作者 方丽 罗琨 《水处理技术》 北大核心 2025年第11期110-115,共6页
为促进CIP的降解消除,本文采用热解法制备生物炭负载铁锰双金属氧化物(BC-FeMn),并将其用于活化H_(2)O_(2)去除水体中的环丙沙星(CIP)。考察材料投加量、溶液pH和H_(2)O_(2)添加量对CIP降解过程产生的影响,并探讨了BC-FeMn活化H_(2)O_(2... 为促进CIP的降解消除,本文采用热解法制备生物炭负载铁锰双金属氧化物(BC-FeMn),并将其用于活化H_(2)O_(2)去除水体中的环丙沙星(CIP)。考察材料投加量、溶液pH和H_(2)O_(2)添加量对CIP降解过程产生的影响,并探讨了BC-FeMn活化H_(2)O_(2)的内在机理。采用X射线、扫描电镜、红外光谱对材料进行表征。结果表明,生物炭负载铁锰双金属氧化物后比表面积、平均孔径和平均孔容都显著增大。在中性、弱酸和弱碱条件下,BC-FeMn/H_(2)O_(2)比BC H_(2)O_(2)系统具有更高的催化氧化能力。在BC-FeMn投加量为1.0 g/L、pH=5、H_(2)O_(2)添加量为0.01 mL的优化条件下CIP去除率可达到90.10%。X射线光电子能谱(XPS)分析表明,BC-FeMn表面存在有利于Fe^(2+)和Mn^(2+)再生的金属氧化循环反应,能促进·OH的生成,而活性因子捕获实验表明·OH是CIP降解过程的主要活性因子。 展开更多
关键词 生物炭负载铁锰 过氧化氢 环丙沙星 降解 金属氧化循环反应
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生物炭或铁矿石添加对人工湿地脱氮效率的影响及微生物机制分析 被引量:3
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作者 毕玉翠 刘福兴 +2 位作者 付子轼 乔红霞 王俊力 《环境工程技术学报》 北大核心 2025年第2期545-558,共14页
农业径流普遍存在碳氮比(C/N)较低的问题,人工湿地对这类污水的脱氮效率不高。利用生物炭、三氯化铁(FeCl_(3))改性生物炭和铁矿石作为基质在提高人工湿地总氮(TN)去除率方面具有巨大潜力,但其内在微生物学机制仍不清楚。构建了5组不同... 农业径流普遍存在碳氮比(C/N)较低的问题,人工湿地对这类污水的脱氮效率不高。利用生物炭、三氯化铁(FeCl_(3))改性生物炭和铁矿石作为基质在提高人工湿地总氮(TN)去除率方面具有巨大潜力,但其内在微生物学机制仍不清楚。构建了5组不同基质人工湿地,包括石英砂人工湿地、生物炭人工湿地、FeCl_(3)改性生物炭人工湿地、铁矿石人工湿地和铁矿石+生物炭人工湿地,研究其对农业径流的脱氮效率,并分析根系微生物群落结构,揭示其内在机制。结果表明:所有处理均能提高人工湿地的脱氮效率,但铁矿石组的脱氮效率最高,其中,生物炭具有丰富的孔隙结构和较大的比表面积,可通过吸附氨氮(NH_(4)^(+)-N)来提高人工湿地的脱氮效率。FeCl_(3)改性生物炭组主要通过提高人工湿地中放线菌门、假单胞菌属和黄杆菌属等反硝化菌的相对丰度,提高人工湿地的TN去除率;铁矿石组主要通过提升人工湿地中的地杆菌属(铁氨氧化细菌)和变形菌门、拟杆菌门、脱氯单胞菌属等硝酸盐依赖型铁氧化细菌的相对丰度,提高人工湿地的TN去除率;铁矿石+生物炭组主要通过增加厚壁菌门和鞘氨醇菌属等反硝化菌的相对丰度,提高人工湿地的TN去除率。铁氨氧化细菌和硝酸盐依赖型铁氧化细菌协同作用使铁矿石人工湿地对低C/N农业径流的TN去除率最高。研究表明,铁矿石人工湿地在拦截净化低C/N农业径流方面具有推广应用的潜力。 展开更多
关键词 人工湿地 生物炭 三氯化铁改性生物炭 铁矿石 脱氮效率 微生物群落
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铁改性农业废弃物生物炭对氮磷吸附及其资源化利用研究
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作者 刘转年 陈雪 王梦晓 《江西农业学报》 2025年第7期98-105,共8页
将废弃稻壳经高温热解制成生物炭,再通过铁改性和凹凸棒复配,形成一种新型复合吸附剂SBC-3,用于吸附水中的氮、磷污染物。通过一系列吸附试验,研究了不同pH值、反应时间、初始浓度等因素对氮磷吸附能力的影响。结果表明:SBC-3具有较高... 将废弃稻壳经高温热解制成生物炭,再通过铁改性和凹凸棒复配,形成一种新型复合吸附剂SBC-3,用于吸附水中的氮、磷污染物。通过一系列吸附试验,研究了不同pH值、反应时间、初始浓度等因素对氮磷吸附能力的影响。结果表明:SBC-3具有较高的氮磷吸附能力,在最优条件下,对磷、氮的吸附量分别高达11.384、29.452 mg/g。与稻壳炭(SBC-1)或单一铁改性稻壳炭(SBC-2)相比,SBC-3表现出不规则性更高的孔状结构和吸附容量,尤其对氮、磷的吸附更具有选择性。此外,竞争阳离子(Ca^(2+)、Mg^(2+))对氨氮的吸附有一定负面的影响,而对磷酸根的吸附则几乎不受干扰。盆栽试验表明,施加吸附氮、磷后的生物炭可显著提高空心菜的株高、伸长率和发芽率。实际污水处理试验结果表明,SBC-3在西安市第五污水处理厂废水中对氨氮和磷酸盐的去除率分别可达92.3%、42.3%,这表明其在实际应用中具有良好的发展前景。 展开更多
关键词 农业废弃物 生物炭 氮磷吸附 铁改性 凹凸棒复配
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铁改性的富磁生物炭活化PMS降解罗丹明B的性能与机制 被引量:1
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作者 王晨 张新怡 +3 位作者 郭壮 魏健 刘利 宋永会 《环境工程技术学报》 北大核心 2025年第3期924-934,共11页
为解决染料废水产量大、毒性高,危害人体健康与生态系统的问题,以农业废物玉米芯为原材料,基于“变废为宝”的技术思路,合成了掺铁富磁生物炭(Fe-CCBC),研究其活化过氧单硫酸盐(PMS)降解罗丹明B(Rh B)的效能和机制,并利用多种表征手段分... 为解决染料废水产量大、毒性高,危害人体健康与生态系统的问题,以农业废物玉米芯为原材料,基于“变废为宝”的技术思路,合成了掺铁富磁生物炭(Fe-CCBC),研究其活化过氧单硫酸盐(PMS)降解罗丹明B(Rh B)的效能和机制,并利用多种表征手段分析Fe-CCBC的理化特性。结果表明:800℃制备的掺铁富磁生物炭(Fe-CCBC-800)具有丰富的孔隙结构和活性位点,可最大程度地保证Fe颗粒在催化剂表面的均匀分布,物化性能优异且催化活性较高。Fe-CCBC-800/PMS体系在40 min内对Rh B的降解率可达91%,且富磁的生物炭更易于回收和重复利用,在5次循环使用中均保持着良好的催化效果。通过活性氧淬灭实验和电子顺磁共振测试探明了Fe-CCBC-800/PMS体系中主要活性氧物种为SO_(4)^(-)·和·OH,Fe^(2+)作为氧化还原反应的电子供体,参与PMS的活化过程,促进活性氧的产生和Rh B的高效降解。Fe-CCBC-800/PMS体系可实现对Rh B的高效处理,为农业废物的利用以及染料污染物的快速降解提供了可行路径。 展开更多
关键词 磁性生物炭 铁改性 热解温度 过氧单硫酸盐(PMS) 罗丹明B(Rh B)
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生物炭负载纳米零价铁添加对人工湿地甲烷排放的影响 被引量:1
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作者 毕玉翠 刘福兴 +4 位作者 付子轼 王俊力 何世颖 乔红霞 黄小敏 《环境科学研究》 北大核心 2025年第6期1205-1216,共12页
人工湿地中甲烷(CH_(4))排放是一个不可忽视的问题。生物炭负载纳米零价铁(nZVI-BC)由于其独特的性质能影响人工湿地CH_(4)排放。在温室内构建三组人工湿地,分别为对照组(砾石)、1%nZVI-BC组(1%nZVI-BC+砾石)和2%nZVI-BC组(2%nZVI-BC+砾... 人工湿地中甲烷(CH_(4))排放是一个不可忽视的问题。生物炭负载纳米零价铁(nZVI-BC)由于其独特的性质能影响人工湿地CH_(4)排放。在温室内构建三组人工湿地,分别为对照组(砾石)、1%nZVI-BC组(1%nZVI-BC+砾石)和2%nZVI-BC组(2%nZVI-BC+砾石),基于静态箱-气相色谱法研究不同nZVI-BC添加量对人工湿地CH_(4)排放的影响;同时,利用荧光定量PCR和高通量测序技术,研究产CH_(4)菌、CH_(4)氧化菌功能基因丰度及群落结构,揭示nZVI-BC影响人工湿地CH_(4)排放的内在机制。结果表明:①对照组、1%nZVI-BC组和2%nZVI-BC组人工湿地的CH_(4)平均排放通量分别为0.55、0.22和0.35 mg(以C计)/(m^(2)·h)。②1%nZVI-BC组中,出水溶解性有机碳(DOC)浓度最高,CH_(4)氧化菌的Shannon-Wiener指数和广甲基营养菌属(CH_(4)氧化菌)的相对丰度也达最大值。③人工湿地的CH_(4)平均排放通量与CH_(4)氧化菌的Shannon-Wiener指数和广甲基营养菌属的相对丰度均呈负相关。④人工湿地的出水DOC浓度与CH_(4)氧化菌的Shannon-Wiener指数和广甲基营养菌属的相对丰度均呈正相关。因此,添加nZVI-BC主要通过增加人工湿地的DOC浓度,从而提高CH_(4)氧化菌的多样性及广甲基营养菌属的相对丰度。CH_(4)氧化菌多样性及广甲基营养菌属相对丰度的提高进一步增强了CH_(4)氧化过程,最终实现CH_(4)减排。研究显示,nZVI-BC的添加量需控制在适当范围内,其中添加1%的nZVI-BC对人工湿地CH_(4)的减排效果最为显著。 展开更多
关键词 生物炭负载纳米零价铁(nZVI-BC) 人工湿地 甲烷排放 产甲烷菌 甲烷氧化菌
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