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791.
为研究水体紊动对泥沙释放污染物的影响,引入近似均匀紊流模拟装置,开展不同强度紊动作用下泥沙运动释放磷动态过程及基本规律的试验,研究表明:紊动扩散作用对泥沙解吸释放磷有着十分重要的影响,紊动较弱时,泥沙尚未起动,床面泥沙颗粒吸附的磷元素解吸至孔隙水中,在垂向紊动扩散作用下输送至上覆水中,将使得上覆水中溶解态磷浓度增大;紊动作用较强时,泥沙逐渐悬扬至水体中,悬浮泥沙颗粒吸附的磷元素直接解吸至上覆水中,泥沙浓度越高,溶解态磷含量增长速率越大,达到平衡的时间越短.通过耦合紊流模型、水流泥沙数学模型、污染物对流扩散模型和Langmuir吸附动力学方程建立了紊动作用下泥沙释放磷的垂向一维数学模型,针对试验条件进行数值模拟,模拟结果与试验数据吻合较好,平均相对误差低于10%,可为模拟天然水体中泥沙悬浮释放磷的时空演化提供参考. 相似文献
792.
Ordered mesoporous carbon supported iron catalysts(Fe/OMC) were prepared by the incipient wetness impregnation method and investigated in Fenton-like degradation of 4-chlorophenol(4CP) in this work. XRD and TEM characterization showed that the iron oxides were well dispersed on the OMC support and grew bigger with the increasing calcination temperature. The catalyst prepared with a lower calcination temperature showed higher decomposition efficiency towards 4CP and H2O2, but more metals were leached. The effect of different operational parameters such as initial pH, H2O2 dosage, and reaction temperature on the catalytic activity was evaluated. The results showed that 96.1% of 4CP and 47.4% of TOC was removed after 270 min at 30°C, initial pH of 3 and 6.6 mmol/L H2O2. 88% of 4CP removal efficiency was retained after three successive runs, indicating Fe/OMC a stable catalyst for Fenton reaction. 4CP was degraded predominately by the attack of hydroxyl radical formed on the catalyst surface and in the bulk solution due to iron leaching. Based on the degradation intermediates detected by high performance liquid chromatography, possible oxidation pathways were proposed during the 4CP degradation. 相似文献
793.
Schwertmannite, a ubiquitous mineral present in iron oxyhydroxides formed in iron- and sulfate-rich acid media, favors incorporation of some toxic anions in its structure. We reported an iron-oxidizing bacterial strain HX3 from a municipal sludge that facilitates the formation of pure schwertmannite in cultures. Ferrous iron oxidation by the isolated strain HX3 was optimum at an initial pH of 2.0-3.3 and temperature of 28-35°C. Pure schwertmannite was found through bacterial oxidation of ferrous iron at an initial pH 2.8and temperature 28°C. Following 16 S rDNA gene sequence analysis the bacterial strain HX3 was identified as Acidithiobacillus ferrooxidans. The arsenic-resistance A. ferrooxidans HX3 showed the potential of environmental application in arsenic removal from the As(Ⅲ)- and iron-rich acid sulfate waters directly by As(Ⅲ) adsorption or the formation of schwertmannite in the environment. 相似文献
794.
Graphene-supported nanoscale zero-valent iron:Removal of phosphorus from aqueous solution and mechanistic study 总被引:1,自引:0,他引:1
Fenglin Liu JingHe Yang Jiane Zuo Ding M Lili Gan Bangmi Xie Pei Wang Bo Yang 《环境科学学报(英文版)》2014,26(8):1751-1762
Excess phosphorus from non-point pollution sources is one of the key factors causing eutrophication in many lakes in China,so finding a cost-effective method to remove phosphorus from non-point pollution sources is very important for the health of the aqueous environment. Graphene was selected to support nanoscale zero-valent iron(nZVI)for phosphorus removal from synthetic rainwater runoff in this article. Compared with nZVI supported on other porous materials,graphene-supported nZVI(G-nZVI) could remove phosphorus more efficiently. The amount of nZVI in G-nZVI was an important factor in the removal of phosphorus by G-nZVI,and G-nZVI with 20 wt.% nZVI(20% G-nZVI)could remove phosphorus most efficiently. The nZVI was very stable and could disperse very well on graphene,as characterized by transmission electron microscopy(TEM) and scanning electron microscopy(SEM). X-ray photoelectron spectroscopy(XPS),Fourier Transform infrared spectroscopy(FT-IR) and Raman spectroscopy were used to elucidate the reaction process,and the results indicated that Fe-O-P was formed after phosphorus was adsorbed by G-nZVI. The results obtained from X-ray diffraction(XRD) indicated that the reaction product between nZVI supported on graphene and phosphorus was Fe3(PO4)2·8H2O(Vivianite). It was confirmed that the specific reaction mechanism for the removal of phosphorus with nZVI or G-nZVI was mainly due to chemical reaction between nZVI and phosphorus. 相似文献
795.
796.
Zn2+对铁氧化物吸附苄嘧磺隆的影响 总被引:1,自引:0,他引:1
研究2种人工合成的铁氧化物对磺酰脲类除草剂--苄嘧磺隆(bensulfuron-methyl,BSM)的吸附,以及Zn2 对供试样品吸附苄嘧磺隆的影响.实验结果表明,用Langmuir、Freundlich、Temkin等方程对供试样品加入Zn2 后吸附BSM的数据进行了拟合,发现供试样品吸附苄嘧磺隆的等温曲线较好地符合Freundlich方程.加入Zn2 后,铁氧化物吸附苄嘧磺隆的量较未加Zn2 有较大幅度的增加,但在苄嘧磺隆的平衡质量浓度较低(<4 mg/L)时,氧化物吸附苄嘧磺隆的量不随Zn2 浓度的增加而增加;在苄嘧磺隆的平衡质量浓度较高(>6 mg/L)时,氧化物吸附苄嘧磺隆的量随Zn2 浓度的增加而增加.这可能是Zn2 和苄嘧磺隆被吸附时存在竞争和协同交互作用的结果. 相似文献
797.
利用薄膜梯度扩散(DGT)原位采样装置获取了骆马湖全湖8个典型湖区泥-水界面(SWI)活性磷(P)、铁(Fe)、硫(S)垂向分布信息,据此定量估算三者交换通量.结果表明,骆马湖沉积物剖面P、Fe、S浓度范围分别为0~2.05,0~11.10和0.01~0.63mg/L,并在微小尺度呈高度空间异质性.在水平方向上活性P、Fe主要表现为西北湖区高于东南湖区,而活性S则未表现出明显的分布规律;就垂直剖面而言,活性P、Fe、S自界面向下呈升高趋势,并在60mm深度内出现峰值,且活性P和Fe剖面呈明显的同步变化特征;活性P、Fe在多数点位具有显著的正相关性(r>0.65,P<0.01),且各采样点沉积物中的总铁与总磷比值[w(∑Fe)/w(∑P)]均高于15,这表明Fe的地球化学循环过程对于骆马湖内源磷释放起重要控制作用;8个采样点样品中活性P、Fe、S交换通量分别为0.066~0.698,1.671~5.592和0.007~0.071mg/(m2·d),表明P、Fe、S由沉积物向水体释放.西北湖区表现出较高的P通量和活性P浓度,这可能会增加南水北调过程中水质污染的风险,应予以重视.以上结果支持了P、Fe耦合释放机制,明确了骆马湖SWI的活性P、Fe、S迁移特征. 相似文献
798.
文章分析了比较耐渗透嗜盐混合菌群、菌株TG-4和TG-20预处理煤制气废水的效果,并对其胞内相容性溶质瞬时释放量进行测定。结果表明:经16S rDNA序列分析,菌株TG-4和TG-20分别鉴定为Pseudomonas stutzeri和Halorubrum litoreum。耐渗透嗜盐混合菌群、菌株TG-4和TG-20对煤制气废水均具有良好的预处理效果,经预处理后,煤制气废水的COD去除率达到86%~90%,COD值为2 013~3 202 mg/L,挥发酚去除率达到64%~78%,挥发酚值为94~156 mg/L,基本能够达到生化处理阶段运行负荷的要求。比较分析三者低渗条件相容性溶质释放量和废水处理效果,结果表明嗜盐微生物高效絮凝煤制气废水与胞内相容性溶质快速释放具有相关性。 相似文献
799.
利用铁碳微电解技术对含铜黄连素制药废水进行预处理,通过单因素试验确定了反应时间,铁粉和废碳投加量,pH等因素对处理效果的影响,并设计了回收金属铜的工艺流程.结果表明:采用铁碳微电解工艺处理初始Cu2+浓度约为20000mg/L,黄连素浓度为1 700~1 900mg/L的含铜黄连素制药废水,当废水pH为2.0~3.0,... 相似文献