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671.

Purpose

Biochar derived from waste biomass is now gaining much attention for its function as a biosorbent for environmental remediation. The objective of this study was to determine the effectiveness of biochar as a sorbent in removing Cd, Cu, and Zn from aqueous solutions.

Methods

Biochar was produced from dairy manure (DM) at two temperatures: 200°C and 350°C, referred to as DM200 and DM350, respectively. The obtained biochars were then equilibrated with 0–5 mM Cu, Zn or Cd in 0.01 M NaNO3 solution for 10 h. The changes in solution metal concentrations after sorption were evaluated for sorption capacity using isotherm modeling and chemical speciation Visual MINTEQ modeling, while the solid was collected for species characterization using infrared spectroscopy and X-ray elemental dot mapping techniques.

Results

The isotherms of Cu, Zn, and Cd sorption by DM200 were better fitted to Langmuir model, whereas Freundlich model well described the sorption of the three metals by DM350. The DM350 were more effective in sorbing all three metals than DM200 with both biochars had the highest affinity for Cu, followed by Zn and Cd. The maximum sorption capacities of Cu, Zn, and Cd by DM200 were 48.4, 31.6, and 31.9 mg g?1, respectively, and those of Cu, Zn, and Cd by DM350 were 54.4, 32.8, and 51.4 mg g?1, respectively. Sorption of the metals by the biochar was mainly attributed to their precipitation with PO 4 3? or CO 3 2? originating in biochar, with less to the surface complexation through –OH groups or delocalized π electrons. At the initial metal concentration of 5 mM, 80–100 % of Cu, Zn, and Cd retention by DM200 resulted from the precipitation, with less than 20 % from surface adsorption through phenonic –OH complexation. Among the precipitation, 20–30 % of the precipitation occurred as metal phosphate and 70–80 % as metal carbonate. For DM350, 75–100 % of Cu, Zn, and Cd retention were due to the precipitation, with less than 25 % to surface adsorption through complexation of heavy metal by phenonic –OH site or delocalized π electrons. Among the precipitation, only less than 10 % of the precipitation was present as metal phosphate and more than 90 % as metal carbonate.

Conclusions

Results indicated that dairy manure waste can be converted into value-added biochar as a sorbent for sorption of heavy metals, and the mineral components originated in the biochar play an important role in the biochar's high sorption capacity.  相似文献   
672.
以苯胺和过硫酸铵为主要原料合成了盐酸聚苯胺(HClPANI)催化剂,并通过FTIR、XRD、SEM和EDS对催化剂进行了表征。研究了在紫外光照下、HClPANI催化H2O2氧化处理罗丹明B染料废水工艺参数,探讨了各种因素对废水脱色效果的影响,并对催化氧化机理进行了初步探讨。结果表明,催化剂HClPANI对催化H2O2氧化处理罗丹明B具有较好的催化活性、稳定性和重复使用性能。UV-H2O2-HClPANI体系产生了明显的协同效应,在pH=3、200 mg/L的罗丹明B废水中,30%H2O2用量为1.2 mL/L、HClPANI用量1 g/L、反应温度25℃、紫外灯功率500 W、光照70 min,罗丹明B脱色率达到了98.2%。  相似文献   
673.
This study evaluates the behavior of coconut charcoal (AC) to adsorb Cr(VI), As(III), and Ni(II) in mono- and multicomponent (binary and ternary) systems. Batch experiments were carried out for mono- and multicomponent systems with varying metal ion concentrations to investigate the competitive adsorption characteristics. The adsorption kinetics followed the mechanism of the pseudo-second-order equation in both single and binary systems, indicating chemical sorption as the rate-limiting step of adsorption mechanism. Equilibrium studies showed that the adsorption of Cr(VI), As(III), and Ni(II) followed the Langmuir model and maximum adsorption capacities were found to be 5.257, 0.042, and 1.748 mg/g, respectively. In multicomponent system, As(III) and Ni(II) adsorption competed intensely, while Cr(VI) adsorption was much less affected by competition than As(III) and Ni(II). With the presence of Cr(VI), the adsorption capacities of As(III) and Ni(II) on AC were higher than those in single system and the metal sorption followed the order of Ni(II)?>?As(III)?>?Cr(VI). The results from the sequential adsorption–desorption cycles showed that AC adsorbent held good desorption and reusability.  相似文献   
674.
Hydrotalcite and its calcination product were used to treat pure water spiked with various concentrations of boron and geothermal water containing boron as a major undesirable element. The kinetics process of boron sorption by uncalcined hydrotalcite is controlled by the diffusion of boron from bulk solution to sorbent-solution boundary film and its exchange with interlayer chloride of hydrotalcite, whereas the removal rate of boron by calcined hydrotalcite rests with the restoration process of its layered structure. The results of isotherm sorption experiments reveal that calcined hydrotalcite generally has much stronger ability to lower solution boron concentration than uncalcined hydrotalcite. The combination of adsorption of boron on the residue of MgO–Al2O3 solid solution and intercalation of boron into the reconstructed hydrotalcite structure due to “structural memory effect” is the basic mechanism based on which the greater boron removal by calcined hydrotalcite was achieved. As 15 geothermal water samples were used to test the deboronation ability of calcined hydrotalcite at 65 °C, much lower boron removal efficiencies were observed. The competitive sorption of the other anions in geothermal water, such as HCO3 ?, SO4 2?, and F?, is the reason why calcined hydrotalcite could not remove boron from geothermal water as effectively as from pure boron solution. However, boron removal percents ranging from 89.3 to 99.0 % could be obtained if 50 times of sorbent were added to the geothermal water samples. Calcined hydrotalcite is a good candidate for deboronation of geothermal water.  相似文献   
675.
Mg/Al/Fe型类水滑石焙烧产物吸附去除水中硫酸根离子   总被引:2,自引:0,他引:2  
通过共沉淀法制备了Mg/AUFe型类水滑石(MgAlFe-HTLCs)并在500℃下焙烧得焙烧产物(HTLCs-500),利用HTLCs-500吸附去除水中的硫酸根离子,并用X射线衍射对MgAlFe-HTLCs及HTLCs-500吸附硫酸根离子前后的结构进行了表征,研究了环境中其他因素对HTLCs-500吸附硫酸根离子的影响.结果表明,实验数据对准二级动力学模型的拟合结果最好;吸附过程符合Langmuir吸附等温模型,通过实验得到HTLCs-500对硫酸根离子的最大吸附量为157.73 mg/g,和Langmuir等温线得到的理论最大吸附量161.29 mg/g相差不大,对硫酸根离子具有良好的吸附性能;硫酸根溶液的初始pH值对HTLCs-500吸附硫酸根离子的性能影响不大,最佳pH值为3;X射线衍射结果表明,HTLCs-500吸附去除硫酸根离子的机理之一为HTLCs-500通过吸附硫酸根离子来恢复层状结构.  相似文献   
676.
采用共沉淀法,以Al2O3为载体制备Mn/γ-Al2O3和Mn-Ce/γ-Al2O3催化剂,并分别在N2气氛和O2气氛下焙烧。采用固定床连续流动反应器,研究所制备催化剂在室温条件下催化臭氧氧化甲苯的性能。通过XRD、XPS和FTIR等手段对催化剂的结构和组成进行表征。结果表明,Mn/γ-Al2O3催化剂具有良好的催化臭氧氧化甲苯和催化臭氧自身分解的性能,共沉淀法制备催化剂的最佳Mn负载量为20%。O2气氛焙烧和Ce的加入,可以有效提高催化剂的活性和寿命。原因是O2气氛焙烧和Ce的加入可以提高Mn的氧化价态。催化剂失活的主要原因是有机副产物在催化剂表面吸附堆积,失活催化剂在550℃、空气气氛下焙烧可恢复催化性能。  相似文献   
677.
采用响应面法对UV/H2O2光氧化法处理高浓度LAS废水的工艺参数进行了系统研究。根据Box-Behnken Design(BBD)设计原理,以初始pH与H2O2投加量、反应时间和温度为主要影响因素,设计4因素3水平共29个实验点的实验方案,并建立了二次响应面拟合模型。方差分析表明,初始pH与H2O2投加量、反应时间和温度以及初始pH和H2O2投加量、H2O2投加量和温度之间的交互作用,对实验结果具有显著性影响。实验得到的光氧化高浓度LAS废水最佳工艺条件,pH为4.0,H2O2投加量为40 mmol/L,反应时间为90 min,温度为25℃,在此条件下,LAS的平均去除率为98.1%。  相似文献   
678.
不同粒径炉渣对磷的静态吸附   总被引:2,自引:0,他引:2  
研究了不同粒级炉渣对含磷废水的静态等温吸附性能,为其在污水处理领域的有效利用和合理级配提供理论依据。经筛分得到<0.2 mm、0.2~0.45 mm、0.45~0.9 mm、0.9~2 mm、2~4 mm、4~6 mm、≥6 mm的7个粒级的供试炉渣,其中0.9~4 mm粒级占总量的64.54%。XRD、XRF分析显示,各粒级炉渣物相组成相似,<0.2 mm粒级炉渣中活性铝含量最高。静态吸附实验表明,炉渣对磷素的最大吸附量为4 021 mg/kg,最佳吸附时间为24 h;Langmuir和Freundlich吸附等温线可较好地拟合各粒级炉渣对溶液中磷素的吸附,而小于0.9 mm粒级炉渣具有更高的拟合度;炉渣粒径越小,吸附能力越强,<0.2 mm粒级炉渣的理论饱和吸附容量达14 084 mg/kg,≥6 mm粒级炉渣吸附磷素能力差;受粒径、溶液含磷浓度等因素影响,炉渣的平均理论吸附容量为1 142.4 mg/kg。  相似文献   
679.
羽毛角蛋白海绵材料对亚甲基蓝的吸附去除   总被引:2,自引:0,他引:2  
以羽毛角蛋白提取后产生的残渣为原料,采用简单物理法制得角蛋白海绵材料,通过扫描电镜和红外光谱对其表观形貌和表面结构进行表征,同时以亚甲基蓝染料作为实验对象,考察制得的海绵材料对其吸附特性和去除效果。结果表明,当吸附平衡时间为1 440 min、亚甲基蓝溶液初始浓度为100 mg/L、海绵材料投加量为0.06 g、反应温度为25℃、溶液pH为7.0时,海绵材料对亚甲基蓝的吸附去除率可达98%以上,同时由Langmuir等温吸附模型拟合结果可知,海绵材料对亚甲基蓝的最大吸附量可达151.5 mg/g。因此,将羽毛角蛋白提取后产生的残渣可制备良好的染料吸附剂,取得良好的环境效益。  相似文献   
680.
石油降解菌的筛选优化及其对油污土壤的修复特性   总被引:3,自引:0,他引:3  
分别以牛肉膏蛋白胨-布氏哈斯培养基、蓝色凝胶培养基作为初筛和复筛培养基,从石油污染土壤中筛选出2株可产生微生物表面活性剂的石油烃降解菌。并将菌株投加到油污土壤中进行修复研究,考查了不同影响因素对修复效果的影响。研究结果表明,(1)2株菌对中度石油污染土壤有较好的修复效果,向油污土壤中直接投加菌株修复70 d时对石油烃的去除率为52%;(2)向油污土壤中投加降解菌并同时补充氮营养液,修复70 d时对土壤中总石油烃的去除率可达到75%;对土壤中正构烷烃的去除率为66%;(3)与土壤的含水率及土著菌的降解效果相比,向油污土壤中投加降解菌以及补充氮磷营养液是影响石油污染土壤修复效果的关键因素。  相似文献   
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