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1.
不同作物原料热裂解生物质炭对溶液中Cd2+和Pb2+的吸附特性   总被引:17,自引:0,他引:17  
选择由小麦秸秆、玉米秸秆和花生壳经350~500℃热裂解制成的生物质炭,研究生物黑炭对水溶液中Cd2+和Pb2+的吸附特性,分析了pH值、吸附时间、溶液初始质量浓度、生物质炭粒径和投加量对吸附效果的影响。结果表明:生物质炭对Cd2+和Pb2+的吸附约10 min即达平衡;3种生物质炭对Cd2+和Pb2+的等温吸附均可用Langmuir方程和Freundlich方程拟合,玉米秸秆炭对Cd2+和Pb2+的最大吸附量远大于小麦秸秆炭和花生壳炭;在生物黑炭投加量为150 mg(6 g.L-1)时,3种生物黑炭对溶液Cd2+的去除率均在90%以上,玉米秸秆炭对溶液Pb2+的去除率达90.30%,而小麦秸秆炭和花生壳炭的去除率仅为52%和47%,玉米秸秆炭有望成为处理重金属污染废水的新型吸附材料。  相似文献   

2.
富磷污泥生物炭去除水中Pb(Ⅱ)的特性研究   总被引:9,自引:0,他引:9  
丁文川  杜勇  曾晓岚  刘任露 《环境化学》2012,31(9):1375-1380
以城市污水厂富磷剩余污泥为研究对象,考察高温热解制备生物炭吸附剂对水中Pb(Ⅱ)的去除效果.研究表明,随着热解温度升高,制备的生物炭对Pb(Ⅱ)的吸附能力增强;在相同热解温度下,生污泥生物炭对Pb(Ⅱ)的吸附能力比消化污泥生物炭大.采用700℃热解1 h制备生污泥生物炭以研究对Pb(Ⅱ)吸附的影响因素,结果显示:吸附180 min达到吸附平衡;富磷污泥生物炭对Pb(Ⅱ)的去除率随pH增加而升高;生物炭投加量增加,对Pb(Ⅱ)去除率上升,而单位吸附容量迅速减小.污泥生物炭对Pb(Ⅱ)的吸附符合准二级反应动力学,Langmuir模型比Freundlich模型能更好地拟合等温吸附线.在pH 5.0、吸附时间3 h、生物炭投加量20 g.L-1条件下,对Pb(Ⅱ)的最大吸附量为34.5 mg.g-1,表明富磷污泥生物炭可以作为一种廉价的吸附剂.  相似文献   

3.
选择由小麦秸秆、玉米秸秆和花生壳经350-500℃热裂解制成的生物质炭,研究生物黑炭对水溶液中Cd2+和Pb2+的吸附特性,分析了pH值、吸附时间、溶液初始质量浓度、生物质炭粒径和投加量对吸附效果的影响。结果表明:生物质炭对Cd2+和Pb2+的吸附约10 min即达平衡;3种生物质炭对Cd2+和Pb2+的等温吸附均可用Langmuir方程和Freundlich方程拟合,玉米秸秆炭对Cd2+和Pb2+的最大吸附量远大于小麦秸秆炭和花生壳炭;在生物黑炭投加量为150 mg(6 g.L-1)时,3种生物黑炭对溶液Cd2+的去除率均在90%以上,玉米秸秆炭对溶液Pb2+的去除率达90.30%,而小麦秸秆炭和花生壳炭的去除率仅为52%和47%,玉米秸秆炭有望成为处理重金属污染废水的新型吸附材料。  相似文献   

4.
生物炭对土壤中阿特拉津吸附特征的影响   总被引:3,自引:0,他引:3  
为探究生物炭对土壤中阿特拉津的吸附特征及影响因素,采用批处理实验研究了灭菌(T1)、5%秸秆生物炭+灭菌(T2)、未灭菌(T3)和5%秸秆生物炭+未灭菌(T4)条件下对土壤中阿特拉津吸附特征及土壤理化性质的影响.结果表明,在最初0—12 h内,不同处理下阿特拉津吸附量均随时间的延长而快速增加,而在12—96 h内增加较为缓慢并逐渐趋于平衡.在96 h时,T2和T4处理下阿特拉津最大吸附量分别达到46.22 mg·kg-1和46.43 mg·kg-1,而未添加生物炭的T1和T3处理则有所降低,分别为44.20 mg·kg-1和43.09 mg·kg-1.准二级动力学模型更好地拟合不同处理下土壤对阿特拉津吸附特征,T2和T4处理下吸附速率常数K分别为0.257 kg·mg-1·h-1和0.339 kg·mg-1·h-1,显著高于未添加生物炭处理的T1和T3处理(K分别为-0.083 kg·mg-1·h-1和-0.261 kg·mg-1·h-1).内扩散模型显示添加生物炭后,土壤对阿特拉津的吸附是一个由边界扩散、内部孔隙扩散等多因素控制的复杂化学过程.添加生物炭可显著提高土壤pH、有机碳、碱解氮、速效磷和速效钾含量,其中土壤有机碳含量与阿特拉津最大吸附量之间存在显著的正相关关系(P<0.05).由此可见,添加生物炭可以提高土壤对阿特拉津的固持能力,减少其淋溶迁移风险,从而达到修复阿特拉津污染土壤的目的.  相似文献   

5.
模拟酸雨下H+-Ca2+在红壤表面的动力学特征   总被引:3,自引:2,他引:1  
研究模拟酸雨下H Ca2 在红壤表面的反应动力学吸附特征 ,结果表明 :Ca2 的吸附动力学能很好地用一级动力学方程、抛物线扩散方程和Elovich方程 (R2 >0 97)拟合 .随溶液酸度的增加 ,Ca2 的最大吸附量显著降低 ,Ca2 吸附反应速率控制步骤是离子在颗粒内的扩散 ,扩散速率常数随酸度的增加而下降 .酸溶液pH值为 4 5和 5 6时 ,有H 的释放 ,H 的表观释放量能用一级动力学方程和扩散方程拟合 ,Elovich方程不宜拟合pH 5 6酸处理的动力学数据 ;酸溶液pH值为 3 5和 2 5时 ,有H 的消耗 ,H 消耗总量看作表观消耗量 ,用一级动力学方程、Elovich方程和扩散方程进行拟合 .比较相关系数和标准误差的大小 ,除pH值为 2 5的酸处理用扩散方程拟合结果较差外 ,这 3种动力学模型进行拟合均得到较满意的结果  相似文献   

6.
《Chemistry and Ecology》2007,23(5):409-425
The use of a new sorbent developed from the husk of pomegranate, a famous fruit in Egypt, for the removal of toxic chromium from aqueous solution has been investigated. The batch experiment was conducted to determine the adsorption capacity of the pomegranate husk. The effects of initial metal concentration (25 and 50 mg l-1), pH, contact time, and sorbent concentration (2-6 g l-1) have been studied at room temperature. A strong dependence of the adsorption capacity on pH was observed, the capacity increased as the pH decreased, and the optimum pH value was pH 1.0. Adsorption equilibrium and kinetics were studied with different sorbent and metal concentrations. The adsorption process was fast, and equilibrium was reached within 3 h. The maximum removal was 100% for 25 mg l-1 of Cr6+ concentration on 5 g l-1 pomegranate husk concentration, and the maximum adsorption capacity was 10.59 mg g-1. The kinetic data were analysed using various kinetic models—pseudo-first-order, pseudo-second-order, Elovich, and intraparticle diffusion equations—and the equilibrium data were tested using several isotherm models, Langmuir, Freundlich, Tempkin, Dubinin-Radushkevich, and Generalized isotherm equations. The Elovich and pseudo-second-order equations provided the greatest accuracy for the kinetic data, while Langmuir and Generalized isotherm models were the closest fit for the equilibrium data. The activation energy of sorption has also been evaluated as 0.236 and 0.707 kJ mol-1 for 25 and 50 mg l-1 chromium concentration, respectively.  相似文献   

7.
低品位硅藻土吸附重金属的研究   总被引:1,自引:0,他引:1  
硅藻土是一种生物硅质沉积岩,具有较大的比表面积,在工业上常用作吸附材料。但低品位硅藻土不利于直接加工利用,在矿产开发中常被忽视或丢弃。为更好地开发和利用低品位硅藻土,采用静态吸附实验研究了低品位硅藻土吸附四种重金属离子(Pb2+、Zn2+、Cu2+、Cd2+)的动力学规律,用伪一阶、伪二阶模型及粒内扩散模型(Weber和Morris模型)对其吸附过程进行拟合,结果表明,硅藻土对四种重金属离子的吸附均符合伪二阶动力学模型。同时,实验也研究了硅藻土吸附Pb2+、Zn2+、Cu2+、Cd2+的热力学,并分别用Langmuir、Freundlich和Dubinin-Radushkevich(D-R)方程进行拟合。结果表明,Freundlich和D-R方程都能很好地描述硅藻土对Pb2+、Zn2+、Cu2+、Cd2+的吸附热力学。并且硅藻土对这四种重金属离子的吸附均为吸热反应。  相似文献   

8.
The use of a new sorbent developed from the husk of pomegranate, a famous fruit in Egypt, for the removal of toxic chromium from aqueous solution has been investigated. The batch experiment was conducted to determine the adsorption capacity of the pomegranate husk. The effects of initial metal concentration (25 and 50 mg l?1), pH, contact time, and sorbent concentration (2–6 g l?1) have been studied at room temperature. A strong dependence of the adsorption capacity on pH was observed, the capacity increased as the pH decreased, and the optimum pH value was pH 1.0. Adsorption equilibrium and kinetics were studied with different sorbent and metal concentrations. The adsorption process was fast, and equilibrium was reached within 3 h. The maximum removal was 100% for 25 mg l?1 of Cr6+ concentration on 5 g l?1 pomegranate husk concentration, and the maximum adsorption capacity was 10.59 mg g?1. The kinetic data were analysed using various kinetic models—pseudo-first-order, pseudo-second-order, Elovich, and intraparticle diffusion equations—and the equilibrium data were tested using several isotherm models, Langmuir, Freundlich, Tempkin, Dubinin–Radushkevich, and Generalized isotherm equations. The Elovich and pseudo-second-order equations provided the greatest accuracy for the kinetic data, while Langmuir and Generalized isotherm models were the closest fit for the equilibrium data. The activation energy of sorption has also been evaluated as 0.236 and 0.707 kJ mol?1 for 25 and 50 mg l?1 chromium concentration, respectively.  相似文献   

9.

Traditional fertilizers are highly inefficient, with a major loss of nutrients and associated pollution. Alternatively, biochar loaded with phosphorous is a sustainable fertilizer that improves soil structure, stores carbon in soils, and provides plant nutrients in the long run, yet most biochars are not optimal because mechanisms ruling biochar properties are poorly known. This issue can be solved by recent developments in machine learning and computational chemistry. Here we review phosphorus-loaded biochar with emphasis on computational chemistry, machine learning, organic acids, drawbacks of classical fertilizers, biochar production, phosphorus loading, and mechanisms of phosphorous release. Modeling techniques allow for deciphering the influence of individual variables on biochar, employing various supervised learning models tailored to different biochar types. Computational chemistry provides knowledge on factors that control phosphorus binding, e.g., the type of phosphorus compound, soil constituents, mineral surfaces, binding motifs, water, solution pH, and redox potential. Phosphorus release from biochar is controlled by coexisting anions, pH, adsorbent dosage, initial phosphorus concentration, and temperature. Pyrolysis temperatures below 600 °C enhance functional group retention, while temperatures below 450 °C increase plant-available phosphorus. Lower pH values promote phosphorus release, while higher pH values hinder it. Physical modifications, such as increasing surface area and pore volume, can maximize the adsorption capacity of phosphorus-loaded biochar. Furthermore, the type of organic acid affects phosphorus release, with low molecular weight organic acids being advantageous for soil utilization. Lastly, biochar-based fertilizers release nutrients 2–4 times slower than conventional fertilizers.

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10.
Li  Lingling  Jia  Zhilei  Ma  Hang  Bao  Wanying  Li  Xuedan  Tan  Hang  Xu  Fei  Xu  Heng  Li  Yunzhen 《Environmental geochemistry and health》2019,41(5):2067-2080

Biochar can be widely used to reduce the bioavailability of heavy metals in contaminated soil because of its adsorption capacity. But there are few studies about the effects of biochar on cadmium uptake by plants in soil contaminated with cadmium (Cd). Therefore, an incubation experiment was used to investigate the effects of rice straw biochar (RSBC) and coconut shell biochar (CSBC) on Cd immobilization in contaminated soil and, subsequently, Cd uptake by Lolium perenne. The results showed that the microbial counts and soil enzyme activities were significantly increased by biochar in Cd-contaminated soil, which were consistent with the decrease of the bioavailability of Cd by biochar. HOAc-extractable Cd in soil decreased by 11.3–22.6% in treatments with 5% RSBC and by 7.2–17.1% in treatments with 5% CSBC, respectively, compared to controls. The content of available Cd in biochar treatments was significantly lower than in controls, and these differences were more obvious in treatment groups with 5% biochar. The Cd concentration in L. perenne reduced by 4.47–26.13% with biochar. However, the biomass of L. perenne increased by 1.35–2.38 times after adding biochar amendments. So, Cd uptake by whole L. perenne was augmented by RSBC and CSBC. Accordingly, this work suggests that RSBC and CSBC have the potential to be used as a useful aided phytoremediation technology in Cd-contaminated soil.

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11.
Heavy metal soil contamination is being given more and more attention due to increasing threats of heavy metals to soil quality, ecological function and human health. Biochar application is an effective way to remove toxic metals due to its high efficiency and low price. Electrostatic adsorption is the primary adsorption mechanism. The absorption ability and stability of biochar is the key to its adsorption performance. The extent of the restoration efficiency is dependent on many factors. The biomass, pyrolysis temperature and application rate affect the number of binding sites. The ageing process and soil properties significantly affect the biochar stability. For long-term purposes, biochar derived from woody residues and pyrolysed at high temperatures is the best available material. In addition, the application of alkaline and electronegative biochar to clay-rich, acidic and As- or Cr-contaminated soil should to be treated with caution.  相似文献   

12.

Climate change issues are calling for advanced methods to produce materials and fuels in a carbon–neutral and circular way. For instance, biomass pyrolysis has been intensely investigated during the last years. Here we review the pyrolysis of algal and lignocellulosic biomass with focus on pyrolysis products and mechanisms, oil upgrading, combining pyrolysis and anaerobic digestion, economy, and life cycle assessment. Products include oil, gas, and biochar. Upgrading techniques comprise hot vapor filtration, solvent addition, emulsification, esterification and transesterification, hydrotreatment, steam reforming, and the use of supercritical fluids. We examined the economic viability in terms of profitability, internal rate of return, return on investment, carbon removal service, product pricing, and net present value. We also reviewed 20 recent studies of life cycle assessment. We found that the pyrolysis method highly influenced product yield, ranging from 9.07 to 40.59% for oil, from 10.1 to 41.25% for biochar, and from 11.93 to 28.16% for syngas. Feedstock type, pyrolytic temperature, heating rate, and reaction retention time were the main factors controlling the distribution of pyrolysis products. Pyrolysis mechanisms include bond breaking, cracking, polymerization and re-polymerization, and fragmentation. Biochar from residual forestry could sequester 2.74 tons of carbon dioxide equivalent per ton biochar when applied to the soil and has thus the potential to remove 0.2–2.75 gigatons of atmospheric carbon dioxide annually. The generation of biochar and bio-oil from the pyrolysis process is estimated to be economically feasible.

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13.
● Adsorption of environmental deoxyribonucleic acid on biochar was studied. ● π−π interaction and electrostatic repulsion worked in the adsorption. ● Thermodynamics indicated the adsorption was spontaneous and endothermic. Environmental deoxyribonucleic acid (eDNA), which includes antibiotic resistance genes, is ubiquitous in the environment. The interactions between eDNA and biochar, a promising material widely used in soil amendment and water treatment, greatly affect the environmental behavior of eDNA. Hitherto few experimental evidences are available yet, especially on the information of thermodynamics and energy distribution to explains the interactions between biochar and eDNA. This study investigated the adsorption of herring sperm DNA (hsDNA) on pine sawdust biochar, with a specific emphasis on the adsorption thermodynamics and site energy distribution. The adsorption of hsDNA on biochar was enhanced by an increase in the pyrolysis and adsorption temperatures. The higher surface area, stronger π−π interaction, and weaker electrostatic repulsion between hsDNA and biochars prepared at high pyrolysis temperatures facilitated the adsorption of hsDNA. The thermodynamics indicated that the adsorption of hsDNA on biochar was spontaneous and endothermic. Therefore, higher temperature was beneficial for the adsorption of hsDNA on biochar; this was well explained by the increase in E* and F(E*) with the adsorption temperature. These results are useful for evaluating the migration and transformation of eDNA in the presence of biochar.  相似文献   

14.
通过室内实验,分析了悬浮物对0号柴油乳化油吸附、解吸的基本规律,并对泥沙浓度和温度因素影响进行了研究。实验结果表明,悬浮物对0号柴油的吸附和解吸过程符合一级动力学过程;悬浮物的平衡吸附量随着液相平衡浓度的升高而趋于平缓,Langmuir方程和Freundlich方程都能较好的反映珠江广州段泥沙的吸附规律;固相平衡吸附浓度随着悬浮物浓度的升高而降低,而液相解吸平衡浓度则随着悬浮物浓度的升高而增加;此外,温度的升高不利于柴油吸附过程而更有利于解吸过程。  相似文献   

15.
研究了带有磺酸基的超高交联吸附树脂NG-5和NG-10对水中对甲苯胺的静态吸附性能,并与不带磺酸基的CHA-111吸附树脂进行了比较.结果表明,NG-5树脂对水溶液中对甲苯胺的吸附能力高于NG-10及CHA-111,这主要得益于树脂表面的磺酸基与对甲苯胺分子的氨基间形成的氢键作用,以及树脂的微孔作用机制.吸附等温线采用三参数多层吸附方程来拟合,相关性很好.对吸附热力学和动力学的研究结果表明,NG-5和NG-10对于对甲苯胺的吸附为吸热过程,而且是自发进行的,吸附速率主要由颗粒内扩散控制.  相似文献   

16.
聚苯乙烯树脂吸附水中磺基水杨酸的研究   总被引:13,自引:0,他引:13  
研究了两种聚苯乙烯树脂对水中磺基水杨酸的吸附行为,同时探讨了氨基修饰聚苯乙烯树脂的吸附动力学特性.结果表明,在所研究的磺基水杨酸浓度范围内,Langmuir和Freundich吸附等温方程都能很好地描述吸附平衡数据.采用氨基修饰制备的NDA-900树脂具有较大的吸附容量和较快的吸附速率,吸附动力学符合Lagergren二级速率方程,颗粒内扩散是NDA-900树脂吸附磺基水杨酸速率的主要控制步骤,可采用HSDM模型加以描述.  相似文献   

17.
表面活性剂对柴油在土壤中吸附的影响   总被引:2,自引:0,他引:2  
张景环  曾溅辉 《环境化学》2007,26(5):610-613
通过静态吸附实验,研究土壤对十二烷基苯磺酸钠(LAS)和十六烷基三甲基溴化铵(CTAB)的吸附行为,探讨表面活性剂对柴油吸附的影响.结果表明,土壤对LAS和CTAB的吸附等温线均为非线性,其吸附能力的大小顺序为:轻壤土>轻粘土>中壤土>砂壤土>重壤土>紧砂土.同一土壤中,CTAB的吸附量大于LAS的吸附量.LAS和CTAB均利于柴油在土壤表面的解吸,且LAS的解吸效果更好.柴油的吸附量随LAS浓度的升高而降低.当CTAB的浓度小于临界胶束浓度CMC时,吸附量随CTAB浓度的升高而升高,当CTAB的浓度等于或大于临界胶束浓度(CMC)时,吸附量随CTAB浓度的升高而降低.  相似文献   

18.
柴油污染土壤生物修复对土壤酶活性的影响   总被引:2,自引:0,他引:2  
在柴油污染土壤的生物修复过程中,分析了土壤中柴油降解菌数量和3种土壤酶活性(过氧化氢酶、脱氢酶和脂酶)等生物活性指标与土壤中柴油去除率的相关性.结果表明,土壤受到柴油污染后的一段时间后过氧化氢酶、脱氢酶和脂酶的活性上升,而后随着土壤中石油烃的降解,脂酶又不断降低.进一步分析表明脂酶活性与柴油降解率及柴油降解菌数量都具有很好的正相关性,可以采用土壤脂酶活性来指示柴油生物降解成效.  相似文献   

19.
苄嘧磺隆在两种可变电荷土壤中的吸附   总被引:1,自引:0,他引:1  
研究了两种典型可变电荷土壤对磺酰脲类除草剂——苄嘧磺隆(bensulfuron-methyl,BSM)的等温吸附和吸附动力学,及pH对土壤吸附苄嘧磺隆的影响。结果表明,土壤吸附苄嘧磺隆的量随着苄嘧磺隆的质量浓度的升高而增加,而随溶液pH的升高逐渐减小;土壤的物理和化学性质也影响其吸附苄嘧磺隆的量。用Langmuir、Freundlich、Dubinin-Redushkerich等方程对供试土样吸附BSM的数据进行了拟合,分析比较发现土壤吸附苄嘧磺隆的等温曲线较好地符合Freundlich方程。动力学研究显示一级动力学方程能很好地拟合供试土壤的动力学特性,苄嘧磺隆在红壤中较早达到吸附平衡。  相似文献   

20.
Magnetic particles prepared via co-precipitation and impregnated onto wheat husk (MN-WH) were used for the removal of methyl blue (MB) from aqueous solution. Experiments were conducted in a batch mode for optimization regarding pH, contact time, adsorbent dose, initial dye concentrations, and temperature. Maximum adsorption (98%) was achieved at pH 5. The adsorption data were fitted into pseudo-first, pseudo-second, intraparticle diffusion, and Elovich equation revealing that adsorption followed pseudo-second-order kinetics. The four most common isotherm models, i.e. the Langmuir, Freundlich, Tempkin, and Dubinin–Radushkevich (D–R), were used to evaluate the data, with the best fit to a Langmuir isotherm (R2 = 0.996), followed by a Freundlich isotherm (R2 = 0.995), indicating monolayer adsorption of MB on the surface of MN-WH. Thermodynamic parameters calculated from the Van't Hoff equation revealed that the adsorption is exothermic (ΔHº = ?19.7 kJ mol?1).  相似文献   

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