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1.
Zinc- and lead-containing wastes are often mixed with construction and demolition wastes in many factories, generating abundant of heavy metal-enriched hazardous waste. In the present study, a novel integrated process of air classification, alkaline leaching, and water washing dechlorination was proposed for the efficient recycling of Zinc (Zn) resources. The first air classification process was realized via venturi tube, wherein the content of Zn could increase by 20 wt.%. After that, the product underwent an alkaline leaching process. Results showed that Zn recovery rate increased with fine particle sizes, and a 65% recovery rate was obtained under the following conditions of 5 mol/L NaOH, liquid/solid 10:1, and leaching time 1 h. Finally, water washing associated with microwave and ultrasonic treatments could remove over 85% of Cl and other water-soluble salts. All the results indicated that the integrated method had an excellent recovery rate for Zn resources from construction and demolition wastes. 相似文献
2.
以丙烯腈生产废水中的丙烯腈低聚物为原料制备聚丙烯酰胺。通过正交实验考察了水解反应条件和交联反应条件对反应的影响。FTIR表征结果显示,丙烯腈低聚物中的氰基已完全水解为酰胺基,产物聚丙烯酰胺中含有酰胺基和羧基。实验结果表明,在自来水加入量100 m L、水解反应温度95℃、m(Na OH)∶m(丙烯腈低聚物)=2.0、水解反应时间3 h的最佳水解反应条件,交联反应温度60℃、质量分数37%~40%的甲醛加入量6 m L、交联反应时间2 h的最佳交联反应条件下,处理20 g丙烯腈低聚物,可得到产物聚丙烯酰胺14.50 g,聚丙烯酰胺的水解度为21.1%、相对分子质量为2.7×106。产品性能满足Q/SH 0046—2007《钻井液用聚丙烯酰胺技术要求》中部分水解聚丙烯酰胺的性能要求。 相似文献
3.
久效磷对黄鳝乙酰胆碱酯酶、羧酸酯酶和磷酸酶活性的影响 总被引:5,自引:0,他引:5
采用静态急性毒性实验方法,研究了久效磷对黄鳝脑乙酰胆碱酯酶及肝脏、肾脏羧酸酯酶、碱性磷酸酶、酸性磷酸酶活性的影响.结果表明,在水温(20±2)℃条件下,经0.25 mg·L-1、0.50 mg·L-1、1.00mg·L-1和2.00mg·L-1的久效磷暴露96 h,黄鳝肝脏、肾脏羧酸酯酶和脑乙酰胆碱酯酶活性均显著下降,但两者表现出不同的抑制模式.随着暴露质量浓度的升高,肝脏和肾脏羧酸酯酶活性的下降幅度逐渐变小,而脑乙酰胆碱酯酶活性下降幅度却由小变大.久效磷暴露黄鳝96 h,肝脏、肾脏酸性磷酸酶活性均升高;而肝脏碱性磷酸酶活性升高;肾脏碱性磷酸酶活性降低.久效磷暴露质量浓度与脑乙酰胆碱酯酶和肝脏、肾脏羧酸酯酶活性之间具有剂量-效应关系,酸性磷酸酶和碱性磷酸酶可能在鱼体抵御有机磷农药毒性作用中有着重要的作用,其机理有待进一步研究.此外,本文还探讨了有机磷农药靶标酶乙酰胆碱酯酶和解毒酶羧酸酯酶、磷酸酶之间的相关性. 相似文献
4.
Orthophosphate is an essential but limiting macronutrient for plant growth. About 67% cropland in China lacks sufficient phosphorus, especially that with red soil. Extensive soil phosphorus reserves exist in the form of organic phosphorus, which is unavailable for root uptake unless hydrolyzed by secretory acid phosphatases. Thus, many microorganisms with the ability to produce phosphatase have been exploited. In this work, the activity of an extracellular acid phosphatase and yeast biomass from Candida mycoderma was measured under different culture conditions, such as pH, temperature, and carbon source. A maximal phosphatase activity of 8.47 × 10^5±0.11× 10^5 U/g was achieved by C. Mycoderma in 36 hr under the optimal conditions. The extracellular acid phosphatase has high activity over a wide pH tolerance range from 2.5 to S.0 (optimum pH 3.5). The effects of different phosphorus compounds on the acid phosphatase production were also studied. The presence of phytin, lecithin or calcium phosphate reduced the phosphatase activity and biomass yield significantly. In addition, the pH of the culture medium was reduced significantly by lecithin. The efficiency of the strain in releasing orthophosphate from organic phosphorus was studied in red soil (used in planting trees) and rice soil (originating as red soil). The available phosphorus content was increased by 230% after inoculating 20 days in rice soil and decreased by 50% after inoculating 10 days in red soil. This work indicates that the yeast strain C. mycoderma has potential application for enhancing phosphorus utilization in plants that grow in rice soil. 相似文献
5.
Removal of phosphate from wastewater using alkaline residue 总被引:2,自引:0,他引:2
Yubo Yan Xiaodong Liu Xiuyun Sun Fangbian M Lianjun Wang Jiansheng Li Jinyou Shen 《环境科学学报(英文版)》2014,26(5):970-980
Alkaline residue(AR) was found to be an efficient adsorbent for phosphate removal from wastewater. The kinetic and equilibrium of phosphate removal were investigated to evaluate the performance of modified alkaline residue. After treatment by NaOH(AR-NaOH), removal performance was significantly improved, while removal performance was almost completely lost after treatment by HCl(AR-HCl). The kinetics of the removal process by all adsorbents was well characterized by the pseudo second-order model. The Langmuir model exhibited the best correlation for AR-HCl, while AR was effectively described by Freundlich model. Both models were well fitted to AR-NaOH. The maximum adsorption capacities calculated from Langmuir equation were in following manner: AR-NaOH AR AR-HCl. Phosphate removal by alkaline residue was pH dependent process. Mechanisms for phosphate removal mainly involved adsorption and precipitation, varied with equilibrium pH of solution. For AR-HCl, the acid equilibrium pH( 6.0) was unfavorable for the formation of Ca-P precipitate, with adsorption as the key mechanism for phosphate removal. In contrast, for AR and ARNaOH, precipitation was the dominant mechanism for phosphate removal, due to the incrase on pH( 8.0) after phosphate removal. The results of both XRD and SEM analysis confirmed CaHPO4·2H2O formation after phosphate removal by AR and AR-NaOH. 相似文献
6.
利用碱性过硫酸钾消解紫外分光光度法,探讨了消解时间和消解温度对空白吸光值的影响,认为增加消解时间可以降低空白吸光值,而提高消解温度对空白吸光值的影响不大;对于某些样品中总氮含量低于氨氮含量的现象,将碱性过硫酸钾装入小试管,再放入装有水样的比色管中,虽然能够减少氨气形式逸出的氮含量,但回收率较低;连续流动和流动注射-盐酸萘乙二胺分光光度法,在以后的修订中应增加过硫酸钾含氮量以及镉柱还原能力大小的界定. 相似文献
7.
The growth and alkaline phosphatase activity (APA) of two raphidophyceae species Chattonella marina and Heterosigma akashiwo were investigated in response to P-limitation and subsequent addition of dissolved inorganic phosphorus (DIP, NaH2PO4) and two dissolved organic phosphorus (DOP) compounds: guanosine 5-monophosphate (GMP) and triethyl phosphate (TEP). APAlevels increased greatly after P-starvation as the decrease of the cellular phosphorus quotes (Qp). C. marina responded to P-limitation quickly and strongly, with 10-fold increase in APA within 24 hr after P-starvation. The larger difference between maximal and minimal Qp values in C. marina indicated its high capacity in P storage. APA of H. akashiwo wasmaximally enlarged about 2.5 times at 48 hr of P-starvation. After the addition of nutrients, cell numbers of C. marina increased in all treatments including the P-free culture, demonstrating the higher endurance of C. marina to P-limitation. However, those of H. akashiwo increased only in DIP and GMP cultures. APA increased only after the addition of the monophosphate ester GMP. The results suggest that quick responses of C. marina to P-limitation, high capacity in P storage as well as endurance for P-depletion provide this species an ecological advantage in phytoplankton community competition under DIP-limited conditions. 相似文献
8.
重金属污染下龟壳攀鲈组织中ACP和AKP的活力比较 总被引:1,自引:0,他引:1
龟壳攀鲈是一种在极端污染水域中具备生存优势的鱼类,收集重污染区和轻污染区的龟壳攀鲈,并通过比较其体内各组织中的酸性磷酸酶(ACP)及碱性磷酸酶(AKP)活性来揭示其耐污能力。贵屿作为重污染区有4个采样点:大陇村、市上村、联堤村和北林村;潮州作为轻污染区有2个采样点:卧石村和洗马桥。水质结果表明,贵屿采样地水中的Pb、Cd、Cr、As、Hg含量分别是潮州采样点的27.6倍、3.9倍、5.8倍、3.9倍和3.5倍,说明贵屿采样地的污染远高于潮州的。酶活结果表明,在龟壳攀鲈所有组织中,内脏组织(胃肠、性腺、肝脏、脾脏、肾脏)中的ACP和AKP活力均高于外周组织(肌肉、鳞片、鳃);重金属污染均能提高攀鲈体内所有组织的ACP和AKP活力;AKP活性更容易受到重金属的影响,各组织的AKP活力增幅普遍超过ACP活力增幅;其中,受重金属影响最大的组织是脾脏,ACP和AKP活力可增长到2.37倍和6.21倍。这些结果说明了龟壳攀鲈可以通过显著升高内脏组织(如肠胃、肝脏、肾脏等)中ACP和AKP活性,以便更好地应对高污染环境;其中AKP更容易受到重金属的影响,适合用于作为评估污染的指标。 相似文献
9.
10.
为检测海洋中环境激素及芳烃类化合物对端足类生物的污染危害,实验选择端足类河蜾蠃蜚(Corophium acherusicum)为受试生物,研究了其在壬基酚、五氯酚、硝基苯三种有机污染物暴露下的96 h急性致死毒性效应和7 d慢性DNA损伤毒性效应。计算获得壬基酚、五氯酚和硝基苯对河蜾蠃蜚的96 h半致死浓度(LC50)分别为70、465、25 000μg·L-1,三种有机污染物对河蜾蠃蜚的毒性强弱顺序为壬基酚五氯酚硝基苯。运用碱解旋法检测壬基酚、五氯酚和硝基苯对河蜾蠃蜚DNA损伤的程度,计算得到7 d半效应浓度(EC50)分别为30、256、11 000μg·L-1。实验结果表明:三种有机污染物浓度的不断加大,引起河蜾蠃蜚DNA损伤程度的不断增加,呈显著的剂量-效应关系。 相似文献