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1.
磷酸低温活化蔗渣基中孔生物炭及其影响因素   总被引:1,自引:0,他引:1  
以甘蔗渣为原料,磷酸为活化剂,采用低温活化法制备蔗渣基中孔生物质炭.采用L9(34)4因素3水平正交实验,探讨制备蔗渣基中孔生物质炭的实验方案与工艺条件;分析了浸渍比、烘干时间、活化温度、活化时间在3个不同水平下,对蔗渣基生物质炭碘吸附值、亚甲基蓝吸附值的影响.结果表明,对蔗渣基生物质炭孔结构和得率影响最大的因素是活化温度,影响最小的因素是烘干时间;实验范围内,提高活化温度有利于材料中孔结构的形成;最佳条件下制备的蔗渣基生物质炭其低温氮气等温吸附线有明显的回滞环,BET比表面积和总孔容分别为939 m2/g和1.35 mL/g,中孔占总孔容比例为89%,亚甲基蓝吸附值高达240 mg/g,远高于木质净水用活性炭国家一级标准(135 mg/g),属于典型的中孔炭.  相似文献   

2.
炭化温度是影响生物炭结构的重要因素,以废弃的枇杷籽作为生物质原材料,在400~800℃炭化温度内制备生物炭,对其理化性质进行表征,并研究生物炭对微生物菌群的吸附率。结果表明:随着炭化温度的上升,枇杷籽生物炭的产率下降,含氧官能团减少,芳香性结构更完全;在400~600℃炭化温度下,孔道变化明显,表面更粗糙,比表面积和总孔体积增大,中、微孔数量增多;当炭化温度升高到600℃以上,生物炭表面孔状结构发生坍塌,表面变平整,比表面积和总孔体积减小;炭化温度为600℃下制得的枇杷籽生物炭对大肠杆菌发酵液的吸附率为70%左右,对大肠杆菌悬浮液的吸附率为80%以上,枇杷籽生物炭对微生物菌群的吸附效果良好,经过后续优化有作为微生物载体的潜力。枇杷籽具有开发为生物炭并进行进一步应用的潜在价值。  相似文献   

3.
脱水污泥制备含炭吸附剂及其应用研究   总被引:1,自引:0,他引:1  
采用热解炭化法、物理活化法、化学活化法制备污泥含炭吸附剂,通过静态吸附实验研究各种影响污泥含炭吸附剂吸附性能的因素.实验结果表明,采用化学活化法制得的污泥含炭吸附剂吸附性能最好,在以ZnCl2为活化剂、锯末添加剂投加量为脱水污泥质量的1%、ZnCl2为3 mol/L、活化温度为450 ℃、活化时间为1.5 h、固液质量比(干污泥与活化剂溶液的质量比)为1:4的最佳制备条件下,制得的污泥含炭吸附剂碘吸附值在520 mg/g以上,产物收率>60%,比表面积>230 m2/g,总孔容积为0.35 mL/g,其中微孔容积为0.08 mL/g,中孔容积为0.23 mL/g.利用其处理城市污水,其对COD、色度、TP的去除率好于选定的商品颗粒活性炭.  相似文献   

4.
以栗苞炭化料(C-BC)为原料,以NaOH为活化剂制备栗苞活化生物质炭(Na-BC),研究其对水中亚甲基蓝的吸附行为。选取炭碱比、活化温度和活化时间为影响因素,通过正交试验确定了最佳活化工艺,即炭碱比为1∶4,活化温度为800℃,活化时间为30 min,此时Na-BC的最大吸附量为609.38 mg·g~(-1)。对最优条件下制备的生物质炭进行SEM、BET等表征,比表面积达1 563.78 m~2·g~(-1),总孔容达1.452 cm~3·g~(-1)。吸附实验结果显示,吸附反应能较好用Langmuir模型和准二级动力学方程模型进行模拟,Na-BC对亚甲基蓝的吸附为自发吸热反应。通过热法与碱法再生处理饱和吸附生物质炭,再生后的Na-BC对亚甲基蓝具有较好的吸附能力。  相似文献   

5.
以稻壳为原料,KOH为活化剂,分炭化和活化两步制备高表面积介孔活性炭。采用比表面积测定仪测定其N2吸附脱附等温线,采用扫描电子显微镜(SEM)、透射电子显微镜(HRTEM)、X射线衍射分析仪(XRD)对活性炭形成过程中的物相变化与显微结构进行了表征。结果表明,氮气保护下,稻壳在420℃温度下炭化4 h,再将KOH与炭化稻壳按质量比3∶1混合均匀后,在750℃活化1 h条件下制备的活性炭平均孔径可达4.54 nm,比表面积高达2 174.09 m2/g,介孔率达到78.57%。  相似文献   

6.
采用CO2物理活化法将废弃的夏威夷坚果壳制备成高品质活性炭。实验研究测定了活化温度、活化时间、CO2流量等因素对活性炭的吸附性能和产率的影响。通过响应曲面法得到实验优化工艺条件:活化温度766℃、活化时间36 min、CO2流量186 m L/min,所制备的活性炭亚甲基蓝值和产率分别为186 mg/g,71.35%。衡量活性炭品质的关键性参数BET比表面积、孔容和平均孔径分别为1 267 m2/g,0.97 m L/g和4.13 nm。此外通过扫描电镜对比炭化料和活性炭分析发现,活性炭表面具有大量无规则孔隙。  相似文献   

7.
核桃壳炭化吸附废水中Cr(Ⅵ)的性能研究   总被引:4,自引:0,他引:4  
采用氯化锌活化法制备生物质废物硬壳活性炭,工艺条件为:核桃壳与氯化锌溶液质量比为1∶1.5、氯化锌溶液质量分数50%、炭化温度300℃、炭化时间90 min、活化温度600℃、活化时间60 min。对产品比表面积、孔径和表征进行了分析,并探讨了该核桃壳活性炭吸附废水中六价铬的pH值、废水初始浓度、吸附时间、振动转速等影响因素。结果表明:制得的活性炭碘吸附值为1 038.33 mg/g,比表面积为645.36 m2/g,平均孔半径为1.37 nm。当活性炭用量为0.1 g,废水pH=3,吸附接触时间为1 h,取100 mL浓度为50 mg/L的含Cr6+废水时,处理吸附量可达48.57 mg/g。活性炭最大饱和吸附值为80.24 mg/g。吸附符合Langmuir等温模式,吸附等温方程式为Ce/Qe=0.0083+0.0121Ce。  相似文献   

8.
KOH活化花生壳生物质炭对亚甲基蓝吸附性能研究   总被引:2,自引:0,他引:2  
以花生壳生物质炭(P-BC)为原料,KOH为活化剂,采用化学活化法制得活化生物质炭(K-BC),通过考察对亚甲基蓝的吸附性能,研究了花生壳生物质炭的最佳活化条件,并利用N2吸附-脱附实验、SEM等对最佳活化条件下的生物质炭进行表征。结果表明,K-BC活化的最佳条件为碱炭比为1.5∶1,活化温度为800℃,活化时间为90 min,此时K-BC的比表面积达到597.93 m2/g,总孔容达到0.76 cm3/g。并考察了亚甲基蓝初始浓度、pH等对K-BC吸附亚甲基蓝的影响,随着初始浓度的增加,吸附平衡时间显著延长,亚甲基蓝去除率显著降低;当pH=6时,K-BC对亚甲基蓝的吸附量最大;K-BC对亚甲基蓝的吸附动力学曲线符合伪二阶动力学模型,吸附平衡时K-BC对亚甲基蓝的吸附能力为80~149.95 mg/g。  相似文献   

9.
利用Fenton活化法活化脱水污泥制备活性炭,研究了Fenton试剂投加量、活化时间、炭化温度、炭化时间和升温速率5种因素对制备污泥炭的影响。污泥炭的最佳制备工艺:Fenton试剂投加量为150 m L,活化时间为2.5 h,炭化温度为350℃,炭化时间为1 h,升温速率为20℃·min-1。污泥炭碘吸附值达到331.90 mg·g-1,BET比表面积为24.265 m~2·g-1。总孔容为0.146 cm~3·g-1,微孔率为17%。分析了吸附时间、pH值和吸附温度3种因素对污泥炭吸附水中Cr(Ⅵ)的影响。在吸附时间为90 min,pH=3,吸附温度为50℃时,污泥炭对Cr(Ⅵ)的吸附量为9.93 mg·g-1。吸附动力学符合准二级动力学模型描述,吸附过程符合Langmuir和Tempkin等温吸附模型描述。  相似文献   

10.
以秸秆为原料,磷酸为活化剂制备改性生物炭,利用基于Box-Behnken中心组合的响应面法对生物炭制备条件进行优化。根据响应面分析,热解温度、保留时间和磷酸质量分数对生物炭的吸附性能有显著影响,浸渍比影响不显著;保留时间与浸渍比、磷酸质量分数与浸渍比的交互作用对生物炭吸附能力也有显著影响。根据响应面法获得生物炭制备的最优条件为:热解温度884.32℃、保留时间82.61min、磷酸质量浓度40.74%、浸渍比1.74,此时生物炭最大碘吸附预测值为1 099mg/g,与验证实验实测结果(1 063mg/g)仅相差3.28%,表明响应面回归模型预测结果可靠。响应面法优化后制得的生物炭具有更高比表面积与总孔容,因此具有更高的吸附性能。  相似文献   

11.
介绍了电解法生产次氯酸钠的原理 ,并在原有生产工艺的基础上进行了重新设计和对设备的重新选择、改造 ,得出了各个工艺参数的最佳值 ,生产出高品质的次氯酸钠  相似文献   

12.
The most common technique used for numerical simulations of tracer mixing is that of the numerical solution of the advection–diffusion equation with the unresolved fluxes parameterized using the similarity theory. Despite correct predictions of the overall directions of transport, models based on a numerical solution of the advection–diffusion equation lack sufficient accuracy to correctly reproduce the coupling of mixing with small scale processes which are sensitive to the microstructure of the tracer distribution. The objective of this paper is to revisit the basic formalism employed in numerical models used to investigate atmospheric tracers. The main mathematical method proposed here is the theory of kinematics of mixing which could be applied effectively for simulations of atmospheric transport processes. At the beginning of the paper, we introduce simple mathematical transformations in order to demonstrate how complex topological structures are created by mixing processes. These idealistic flow systems are essential to explain transport properties of much more complex three-dimensional geophysical flows. An example of the application of the kinematics of mixing to the analysis of tracer transport on a planetary scale is presented in the following sections. The complex filamentary structures simulated in the numerical experiment are evaluated using some commonly applied statistical measures in order to compare the results with the data published in the literature. The results of the experiment are also analysed with the help of simple conceptual models of fluid filaments. The microstructure of the tracer distribution introduced in the paper is essential to increase our understanding of atmospheric transport and to develop more realistic parameterizations of small-scale mixing. The presented results could also be used to improve calculations of the coupling between microphysical processes and tracer mixing.  相似文献   

13.
Abstract

A computer model was used to take random samples from primary sample populations obtained from field trials to simulate the uncertainty of sampling for residue analysis of plant commodities and soil. The results indicate about 40%, 30% and 20% relative uncertainty when random samples of size 5, 10 and 25 are taken respectively, from a single lot. Therefore the sample size should be the same for establishing and enforcing legal limits.  相似文献   

14.
Evaluation of the presence of drugs of abuse in tap waters   总被引:1,自引:0,他引:1  
A total of seventy samples of drinking water were tested for non-controlled and illicit drugs. Of these, 43 were from Spanish cities, 15 from seven other European countries, three from Japan and nine from seven different Latin American countries. The most frequently detected compounds were caffeine, nicotine, cotinine, cocaine and its metabolite benzoylecgonine, methadone and its metabolite EDDP. The mean concentrations of non-controlled drugs were: for caffeine 50 and 19 ng L−1, in Spanish and worldwide drinking water respectively and for nicotine 13 and 19 ng L−1. Illicit drugs were sparsely present and usually at ultratrace level (<1 ng L−1). For example, cocaine has mean values of 0.4 (Spain) and 0.3 ng L−1 (worldwide), whereas for benzoylecgonine, these mean values were 0.4 and 1.8 ng L−1, respectively. Higher concentrations of benzoylecgonine were found in Latin American samples (up to 15 ng L−1). No opiates were identified in any sample but the presence of methadone and EDDP was frequently detected. Total mean values for EDDP were 0.4 ng L−1 (Spain) and 0.3 ng L−1 (worldwide). Very few samples tested positive for amphetamines, in line with the reactivity of chlorine with these compounds. No cannabinoids, LSD, ketamine, fentanyl and PCP were detected.  相似文献   

15.
Biodegradation mechanisms were elucidated for three dibenzoate plasticizers: diethylene glycol dibenzoate (D(EG)DB), dipropylene glycol dibenzoate (D(PG)DB), both of which are commercially available, and 1,6-hexanediol dibenzoate, a potential green plasticizer. Degradation studies were done using Rhodococcus rhodochrous in the presence of pure alkanes as a co-substrate. As expected, the first degradation step for all of these systems was the hydrolysis of one ester bond with the release of benzoic acid and a monoester. Subsequent biodegradation of the monobenzoates of diethylene glycol (D(EG)MB) and dipropylene glycol (D(PG)MB) was very slow, leading to significant accumulation of these monoesters. In contrast, 1,6-hexanediol monobenzoate was quickly degraded and characterization of the metabolites indicated that the biodegradation proceeded by way of the oxidation of the alcohol group to generate 6-(benzoyloxy) hexanoic acid followed by β-oxidation steps. This pathway was blocked for D(EG)MB and D(PG)MB by the presence of an ether function.The use of a pure hydrocarbon as a co-substrate resulted in the formation of another class of metabolites; namely the esters of the alcohols formed by the oxidation of the alkanes and the benzoic acid released by hydrolysis of the original diesters. These metabolites were biodegraded without the accumulation of any intermediates.  相似文献   

16.
影响混凝效果的因素众多,混凝沉淀烧杯试验是进行水的混合、絮凝、沉淀工艺研究、设计和生产指导的最有效方法之一,阐述了智能型混凝试验搅拌器的设计原理和技术性能.  相似文献   

17.
不同泥源对厌氧氨氧化反应器启动的影响   总被引:2,自引:1,他引:1  
李祥  黄勇  袁怡  张丽  朱莉 《环境工程学报》2012,6(7):2143-2148
采用2套上流式生物膜反应器,分别接种少量厌氧氨氧化污泥和大量硝化污泥,考察其对厌氧氨氧化反应器启动的影响。污泥接种入反应器后,测得接种厌氧氨氧化污泥的反应器(R1)内MLSS为0.22 g/L,另一个反应器(R2)MLSS为2.7 g/L。与直接接种厌氧氨氧化污泥相比,R1经过72 d的运行才显现出厌氧氨氧化特性。经过114 d的培养,前者氮去除速率由0.23 kg/(m3.d)提升到5.29 kg/(m3.d),总氮去除率大于89%;R2的氮去除速率由0.01 kg/(m3.d)提升到1.1 kg/(m3.d),总氮去除率大于84.6%。说明普通污泥启动需要一个较长的筛选过程,直接接种少量的厌氧氨氧化污泥比接种普通的污泥能够更快启动厌氧氨氧化反应器。  相似文献   

18.
生物质快速热裂解主要参数对生物油产率的影响   总被引:5,自引:0,他引:5  
以松木木屑为原料,在自制的小型流化床上,开展了生物质热裂解温度、生物质粒径和进料速率对生物油产率的影响实验研究.结果表明,在热裂解温度分别为450、475、500、525和550℃条件下,当热裂解温度为500℃时,生物油产率最高,平均产率达到53.33%(质量百分比).反应温度越高,炭产量越低,不可冷凝气体产量越高,气体发热值越高;粒径<1 mm的生物质其粒径对生物油产率影响不大;生物质进料速率增加时,生物油产率增加.本研究为生物能的利用提供了新的途径.  相似文献   

19.
造纸废水混凝处理中SFT助凝替代性研究   总被引:1,自引:0,他引:1  
中小造纸厂废水处理常用PAC作混凝剂 ,PAM作助凝剂。由于PAM成本很高 ,影响了处理设备的投运率。用超细滑石粉 (SFT)替代PAM助凝 ,与混凝剂PAC配合 ,其混凝处理效果基本相当 ,但是处理成本降低 0 .10元 /m3 。由于SFT属环境无害材料 ,不会给排泥带来二次污染  相似文献   

20.
以松木木屑为原料,在自制的小型流化床上,开展了生物质热裂解温度、生物质粒径和进料速率对生物油产率的影响实验研究.结果表明,在热裂解温度分别为450、475、500、525和550℃条件下,当热裂解温度为500℃时,生物油产率最高,平均产率达到53.33%(质量百分比).反应温度越高,炭产量越低,不可冷凝气体产量越高,气体发热值越高;粒径<1 mm的生物质其粒径对生物油产率影响不大;生物质进料速率增加时,生物油产率增加.本研究为生物能的利用提供了新的途径.  相似文献   

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