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1.
微囊藻毒素毒理学研究综述   总被引:11,自引:0,他引:11  
施玮  朱惠刚 《上海环境科学》2000,19(2):82-85,91
微囊藻毒素常见于富营养化的水体中,结构是单环多肽链,其中均含有特殊的必要需活性氨基酸基团。MCYST的化学性质稳定,但可被生物降解和UV光解。利福平等化学保护剂可预防其毒作用。该文就MCYST的理化性质,暴露剂量,毒作用及机理,预防等各方面的研究,作一综述。  相似文献   

2.
UV/H2O2 and UV/peroxodisulfate (PDS) processes were adopted to degrade a typical β-blocker atenolol (ATL). The degradation efficiencies under various operational parameters (oxidant dosage, pH, HCO3-, humic acid (HA), NO3- , and Cl-) were compared. Principal factor analysis was also performed with a statistical method for the two processes. It was found that increasing the specific dosage of the two peroxides ([peroxide]0/[ATL]0 ) ranging from 1:1 to 8:1 led to a faster degradation rate but also higher peroxide residual. Within the pH range 3-11, the optimum pH was 7 for the UV/PDS process and elevating pH benefitted the UV/H 2O2 process. The presence of HCO3- , HA, and Cl adversely affected ATL oxidation in both processes. The NO3- concentration 1-3 mmol/L accelerated the destruction of ATL by the UV/PDS process, but further increase of NO3- concentration retarded the degradation process, contrary to the case in the UV/H2O2 process. The rank orders of effects caused by the six operational parameters were pH ≈ specific dosage > [HA]0 > [NO3-]0 > [HCO3-]0 > [Cl-]0 for the UV/H2O2 process and specific dosage > pH > [HA]0 > [NO3-]0 > [HCO3-]0 >[Cl-]0 for the UV/PDS process. The UV/PDS process was more sensitive to changes in operational parameters than the UV/H2O2 process but more efficient in ATL removal under the same conditions.  相似文献   

3.
研究了过碳酸钠(SPC)在Fe~(2+)催化作用下对磺胺二甲嘧啶(SMT)的降解作用,探究了Fe~(2+)和SPC的初始浓度及溶液初始p H对Fe~(2+)/SPC体系降解磺胺二甲嘧啶的影响,分析了体系中起主要作用的活性物种,并采用HPLC-MS/MS技术鉴定其降解的主要产物并提出可能的降解途径.结果表明,适当提高Fe~(2+)与SPC初始浓度可以提高磺胺二甲嘧啶的降解率,但超过一定范围后反而会抑制其降解,实验中Fe~(2+)/SPC/SMT的最佳物质的量比为15∶10∶1,此时磺胺二甲嘧啶的降解率可以达到84%;溶液初始p H的提高会抑制磺胺二甲嘧啶的降解,但抑制幅度不大,即使在偏碱性条件下仍能达到75%的降解率;Fe~(2+)/SPC体系中主要活性物种是HO·;磺胺二甲嘧啶可能的降解途径有3种,主要包括苯环相连N原子的羟基化、磺酰胺键[S—N]的断裂及分子间重排脱SO2.  相似文献   

4.
Microcystins, which represents one kind of cancerogenic organic compounds, is abundant in eutrophication water. The effects of reaction factors on chlorine dioxide (ClO2) for removal of low-concentration Microcystin-LR, Microcystin-RR, and Microcystin-YR in water as well as the reaction mechanisms was investigated by using enzyme-linked immunosorbent assay (ELISA) kit and gas chromatography-mass spectrometry (GC-MS). The results showed that MC-LR, MC-RR, and MC-YR could be efficiently decomposed by ClO2. The degradation efficiency was shown positively correlated to the concentration of ClO2 and reaction time; while the effect of reaction temperature and pH is slight. The kinetic constants and activation energies of the reaction of MC-LR, MC-RR, and MC-YR with ClO2 are determined as 459.89, 583.15, 488.43 L·(mol·min)−1 and 64.78, 53.01, 59.15 kJ·mol−1, respectively. As indicated by high performance liquid chromatography mass spectrometer (HPLC-MS) analysis, degradation should be accomplished via destruction of Adda group by oxidation, with the formation of dihydroxy substituendums as end products. This study has provided a fundamental demonstration of ClO2 serving as oxidizing disinfectant to eliminate microcystins from raw water source.  相似文献   

5.
研究了离子液体溴化-1-十四烷基-3-甲基咪唑盐([C_(14)mim]Br)对大鼠的亚慢性毒性.实验设立3个染毒组(2.5、5、10 mg·kg~(-1))和1个对照组,对大鼠经口染毒90 d后,分别考察大鼠的体重、血清生化指标、脏体指数、组织形态学的变化.结果表明,与对照组相比,染毒组大鼠的体重增长随着染毒剂量的增加而降低,肝脏/体重系数增大,其血清中碱性磷酸酶(ALP)、丙氨酸氨基转移酶(ALT)、天门冬氨酸转氨酶(AST)、直接胆红素(DBIL)和和球蛋白(GLB)水平均明显升高,A/G(ALB/GLB)、血清总蛋白(TP)值则明显下降.病理检查结果显示,染毒组大鼠的肝脏、肾脏及肺均有不同程度的损伤及病变.研究表明,[C_(14)mim]Br亚慢性染毒对大鼠的肝肾均有损伤,且其毒性呈一定的剂量依赖性.  相似文献   

6.
针对两种甲醛-DNA加合物,N~6-羟甲基腺嘌呤(N~6-HOMe-d A)和N2-羟甲基鸟嘌呤(N_2-HOMe-d G),本实验室建立了基于液相色谱串联质谱的分析方法,以便从DNA分子水平上探讨甲醛暴露对DNA的损伤作用机理,其中[~(15)N_5]N~6-Me-d A和[~(13)C_(10)~(15)N_5]N_2-Me-d G为内标;液相分离所用色谱柱为Thermo Polar Advantage II C_(18);方法的精密度较好(RSD5%)、灵敏度较高(检出限分别为0.014和0.0064 ng·m L~(-1))、回收率良好(94.9%~111%).后用小牛胸腺DNA进行体外染毒实验,设置甲醛染毒的浓度梯度(0.001,0.01,0.05,0.1,0.5和1 mmol·L~(-1))和染毒时间组(0、2、4、8、12、16、24 h),利用建立的LC-MS/MS方法检测了DNA中N~6-HOMe-d A和N_2-HOMe-d G的含量.结果表明,两种甲醛-DNA加合物N~6-HOMe-d A和N2-HOMe-d G的量与甲醛暴露存在剂量-反应和时间-反应关系.  相似文献   

7.
咪唑型离子液体对小鼠的急性毒性   总被引:2,自引:1,他引:1  
采用寇氏改良法研究了咪唑型离子液体对小鼠的急性毒性,并考察了烷基侧链长度对其毒性的影响,同时采用HE染色法观察了其对小鼠肝脏的毒性.结果表明,4种咪唑型离子液体([C10mim]Br、[C12mim]Br、[C14mim]Br和[C18mim]Br)对小鼠肝脏均有损伤,其LD50值在98.91~220.16 mg·kg...  相似文献   

8.
铋银氧化物混合物高效氧化降解四溴双酚A的研究   总被引:1,自引:0,他引:1  
以Ag NO3和Na Bi O3·2H2O为原料,采用离子交换-共沉淀法制备了铋银氧化物混合物(silver bismuth oxide,BSO),并利用它氧化降解溴代阻燃剂四溴双酚A(TBBPA).研究了制备过程中银铋摩尔比及降解过程中BSO用量对TBBPA降解效果的影响.结果表明,当银铋摩尔比为1∶1,BSO用量为1 g·L-1时,40 mg·L-1TBBPA在7 min内可完全降解,其总有机碳的去除率高达80%.采用离子色谱、气相色谱-质谱联用仪及X射线光电子能谱监测降解过程中TBBPA的变化,发现TBBPA降解过程涉及脱溴、叔丁基碳的断裂和苯环的开环氧化等反应.利用Na N3作为分子探针,发现单线态氧是BSO氧化降解TBBPA的主要反应活性物种.  相似文献   

9.
热活化过硫酸盐氧化降解水体中泛影酸钠的研究   总被引:3,自引:0,他引:3  
利用热活化过硫酸盐氧化降解水体中的泛影酸钠,主要研究了体系反应温度、氧化剂浓度、溶液初始pH、底物浓度及自然水体组分对降解效果的影响.结果表明,热活化过硫酸盐降解泛影酸钠符合准一级反应动力学模型及遵循阿伦尼乌斯模型,计算得到反应活化能为105.57 kJ·mol~(-1).增加过硫酸盐初始浓度或提高反应温度及降低泛影酸钠初始浓度可以增大泛影酸钠的降解速率常数k(k=0.0062×[K_2S_2O_8]_0,R~2=0.98,[K_2S_2O_8]_0=2~8 mmol·L~(-1);lnk=-12698×1/T+34.91,R~2=0.98,T=325~345 K;k=-1.54×[泛影酸钠]_0+0.064,R~2=0.98).泛影酸钠的降解速率常数k受溶液初始pH影响较小.溶液中Cl~-、HCO~-_3和HA的存在均会抑制泛影酸钠的降解.较低的TOC去除率和产物的检测表明,泛影酸钠降解过程中仅发生苯环侧链的破坏.泛影酸钠的降解途径主要有酰胺键断裂、氨基氧化和脱羧基羟基化.  相似文献   

10.
水质安全的动态超声波强化混凝除藻水处理试验研究   总被引:2,自引:0,他引:2  
超声波辐射能够破坏蓝藻气囊,在水处理工艺中达到强化蓝藻混凝沉淀的效果.然而不适当的超声处理会进一步破坏蓝藻细胞,导致胞内毒素大量释放,加重水质污染负荷.本研究为获得水质安全的超声波强化混凝沉淀蓝藻水处理方法,采用频率40~120 k Hz的超声波辐射蓝藻水,考察处理后蓝藻混凝沉淀去除效果及藻毒素释放情况.结果表明,频率68~120 k Hz、能量密度59.1~186.4 W·L-1的静态超声波作用10~15 s后进行混凝沉淀,藻类去除率达98%以上,且频率越高效果越好;然而各频率静态超声波作用5 s以上均会导致藻细胞内藻毒素释放.采用内衬吸声棉及动态超声方式,频率120 k Hz、能量密度38.5~196.6 W·L-1超声波作用7.5~30 s后,可避免胞内藻毒素释放,且能去除水中溶解性藻毒素18.7%~30.7%,混凝沉淀后藻类去除率97.0%以上,其它有机物也降低.  相似文献   

11.
岩溶地下河水化学对城镇化进程的时序响应   总被引:1,自引:1,他引:0  
杨应增  何守阳  吴攀  吴起鑫  韩志伟  罗维 《环境科学》2019,40(10):4532-4542
利用25年地下水观测与遥感解译数据研究地下河对城镇化进程的水化学时序响应,结果表明,随着城镇化的进行,地下河的矿化度逐渐上升;水化学类型时序演变从枯水期单一的HCO_3·SO_4-Ca·Mg型和丰水期HCO_3-Ca·Mg型向HCO_3·ClCa型、HCO_3·SO_4-Ca型、HCO_3-Ca和HCO_3·SO_4-Ca·Mg型等多类型演化,快速城镇化时期水化学类型多变.受地表降水输入影响,地下河枯水期与丰水期[Mg2+]/[Ca2+]和[HCO_3~-]/[SO_4~(2-)](摩尔比)变化较大,城镇化前地下河水化学受水岩相互作用、农业活动和酸雨入渗共同影响,两者均值分别为0. 86和29. 34; 2001年城镇化后农业活动和酸雨输入贡献减少,丰水期城镇化输入(居民生活和工业排污)明显增加,两者出现突变特征,分别降低至0. 38与6. 01. 1990~1995、1996~2010和2011~2015年不同时期的主要地球化学敏感阳离子分别为Ca~(2+)及Mg~(2+)、Na~+和NH_4~+,阴离子则分别为HCO_3~-、HCO_3~-及SO_4~(2-)和Cl~-.地下河对城镇化进程的水化学响应具有明显的阶段性和时序性.  相似文献   

12.
膜生物反应器处理甲苯性能及机制   总被引:6,自引:5,他引:1  
采用膜生物反应器处理甲苯有机废气,研究了进气浓度、停留时间、循环液喷淋密度和pH值对甲苯去除率的影响.膜生物反应器能高效净化挥发性有机废气,甲苯去除率可达99%.适宜运行条件为:pH值为7.2、停留时间为6.4 s、循环液喷淋密度为2.5 m3.(m2.h)-1.采用GC-MS分析出口气样,研究结果表明乙醛酸(C2H2O3)和乙烯基甲酸(C3H4O2)为甲苯生物降解的中间产物.膜生物反应器处理甲苯机制为甲苯气体通过中空纤维膜传质到生物膜,被生物降解为乙醛酸和乙烯基甲酸,然后继续好氧降解为最终产物二氧化碳和水.  相似文献   

13.
天然水体中颗粒物吸附抗生素特征分析   总被引:6,自引:2,他引:4  
为了研究抗生素在天然水体中的固、液相分配规律,分析了水体中颗粒物对7种典型抗生素的吸附特征,并通过环境扫描电镜测定了颗粒物的表面结构及元素组成.同时,采用高效液相色谱与质谱串联(HPLC-MS/MS)的检测方法对抗生素进行测定,以Simeton为内标物,得到抗生素的检出限为15~25 ng·L-1,定量下限为50~83 ng·L-1.连续吸附实验结果表明:初始的20 min颗粒物对抗生素的吸附比较快,达到过量吸附;吸附达到过饱和后会进行10 min的解吸反应;实验进行30 min后,吸附与解吸过程的变化会趋于稳定,2 h后达到吸附平衡.抗生素的平衡吸附量在1616~15568 ng·g-1之间,其吸附量及吸附曲线的变化与抗生素的pKa值密切相关.  相似文献   

14.
为了研究镉诱导的满江红花色素苷的分子结构,分别用0.1 mg·L-1Cd、0.1%盐酸-甲醇溶液、XAD-7大孔树脂和葡聚糖凝胶SephadexLH-20柱对其进行诱导、提取、纯化和分离.经紫外可见光谱特性和HPLC图谱分析.初步确定此物质为木犀草定-5-葡萄糖苷.采用不同的体外实验方法评价了满江红花色素苷纯化前后的抗...  相似文献   

15.
氮掺杂二氧化钛复合催化膜降解甲苯气体研究   总被引:4,自引:0,他引:4  
采用溶胶-凝胶法以聚丙烯(PP)中空纤维膜为载体制备了N-Ti O2/PP复合催化膜,并考察了其催化降解甲苯有机废气的性能.结果发现,紫外光催化的甲苯降解率可达84%,去除负荷为89.8 g·m-3·h~(-1),自然光催化的甲苯降解率可达63.9%,去除负荷为69.25 g·m-3·h~(-1).同时,采用紫外-可见光谱(UV-Vis)、X-射线光电子能谱(XPS)和傅里叶变换红外光谱(FT-IR)表征了N-Ti O2/PP复合催化膜,并采用GC-MS分析甲苯降解过程的中间产物并推测甲苯反应过程机理.采用GC-MS分析出口气样的研究结果表明,苯(C6H6)、苯甲醛(C7H6O)、苯乙酸(C8H8O2)、丙烯醛(C3H4O)、甲酸甲酯(C2H4O2)为甲苯光催化降解的中间产物.N-Ti O2/PP复合催化膜降解甲苯的机制为甲苯气体通过中空纤维膜传质到N-Ti O2/PP复合催化膜,光催化产生羟基自由基,甲苯气体被羟基自由基氧化成中间产物,并继续降解为最终产物二氧化碳和水.  相似文献   

16.
The 6:2 FTS was the substitute for perfluorooctane sulfonate(PFOS) in the chrome plating industry in Japan. Electrochemical oxidation of 6:2 FTS was investigated in this study. The degradabilities of PFOS and 6:2 FTS were tested on the Ti/SnO2–Sb2O5–Bi2O3anode. The effects of current density,potential,and supporting electrolyte on the degradation of 6:2 FTS were evaluated. Experimental results showed that 6:2 FTS was more easily degraded than PFOS on the Ti/SnO2–Sb2O5–Bi2O3anode. At a low current density of 1.42 mA/cm2,6:2 FTS was not degraded on Ti/SnO2–Sb2O5–Bi2O3,while the degradation ratio increased when the current density ranged from 4.25 to 6.80 mA/cm2. The degradation of 6:2 FTS at current density of 6.80 mA/cm2 followed pseudo first-order kinetics with the rate constant of 0.074 hr-1. The anodic potential played an important role in the degradation of 6:2 FTS,and the pseudo first-order rate constants increased with the potential. The surface of Ti/SnO2–Sb2O5–Bi2O3was contaminated after electrolysis at constant potential of 3 V,while the fouling phenomenon was not observed at 5 V. The fouled anode could be regenerated by incinerating at 600°C. The intermediates detected by ultra-performance liquid chromatography coupled with a triple-stage quadrupole mass spectrometer(UPLC–MS/MS) were shorter chain perfluorocarboxylic acids. The 6:2 FTS was first attacked by hydroxyl radical,and then formed perfluorinated carboxylates,which decarboxylated and removed CF2 units to yield shorter-chain perfluorocarboxylic acids.  相似文献   

17.
以固相微萃取(SPME)结合气相色谱(GC)、气相色谱-质谱联用(GC/MS)技术作为分析检测手段,研究光源、有机溶剂、无机盐与腐殖酸对BDE-28光降解的影响,实验结果表明,光源是影响其降解的主要因素,其次,丙酮、铜离子和腐殖酸对其降解的影响较显著.光源对BDE-28光降解速率的影响为300 W汞灯500 W金卤灯100 W汞灯500 W氙灯;有机溶剂对BDE-28降解速率的影响为甲醇/水(1∶1)甲醇己烷甲苯乙腈丙酮;无机离子的影响各有差别:K+、Na+、SO2-4、NO-3、Cl-对BDE-28降解影响不明显,而Fe3+、NH+4促进BDE-28的降解,Fe2+、Cu2+、Br-抑制BDE-28的降解;腐殖酸抑制BDE-28的降解.  相似文献   

18.
The effect of ammonium sulfate ((NH4)2SO4) and urea (CO(NH2)2) on polychlorinated dibenzo-p-dioxin and dibenzofuran (PCDD/F) formation from active carbon was investigated in this study. Both additives could significantly inhibit PCDD/F formation, and PCDD/F (TEQ) generation was reduced to 98.5% (98%) or 64.5% (77.2%) after 5% (NH4)2S04 or CO(NH2)2 was added into model ash, respectively. The inhibition efficiency of PCDDs was higher than the value of PCDFs, however, the reduction of PCDD/F yield was mainly from PCDFs decreasing. In addition, the solid-phase products were reduced more than the gas-phase compounds by inhibitors. By the measurement of chlorine emission in the phase of ion (Cl[Cl^-]) and molecule gas (Cl[Cl2]), it was observed that both Cl[Cl^-] and Cl[Cl2] were reduced after inhibitors were added into ash. Cl[Cl2] was reduced to 51.0% by urea addition, which was supposed as one possible mechanism of PCDD/F inhibition.  相似文献   

19.
A hemin [iron-Fe(III) protoporphyrin IX chloride] was adsorbed onto a carbon-felt (CF), which is a microelectrode ensemble of micro carbon fiber (ca. 7 μm diameter). The resulting hemin-adsorbed-CF (hemin-CF) showed a well-defined redox wave based on the hemin-Fe(III)/Fe(II) redox process with the formal potential of -0.225 V vs. Ag/AgCl in deoxygenated phosphate/citrate buffer solution (0.1 mol/L, pH 5.0). The apparent heterogenous electron transfer rate constant was estimated to be 8.6 sec-1. In air-saturated electrolyte solution, the hemin-CF exhibited an excellent electrocatalytic activity for the reduction of dioxygen (O2). This activity was reversibly inhibited by respiratory toxins such as cyanide and azide, which bind sixth coordination position of iron active center of hemin. The electrocatalytic O2 reduction current at the hemin-CF was modulated by the toxins in a concentration-depending manner. Based on the relationship between the inhibition and the toxin concentration, apparent inhibition constants of cyanide and azide were evaluated to be 4.52 and 1.98 μmol/L, respectively. When the hemin-CF was used as a working electrode unit of the CF-based electrochemical flow-through detector with air-saturated carrier, the injection of the azide induced peak-shape current responses, which allowed rapid and continuous flow-amperometric determination of azide with high sensitivity.  相似文献   

20.
A new biological nitrogen removal process, which is named herein “The circulating fluidized bed bioreactor (CFBBR)”, was developed for simultaneous removal of nitrogen and organic matter. This process was composed of an anaerobic bed (Riser), aerobic bed (Downer) and connecting device. Influent and nitrified liquid from the aerobic bed enters the anaerobic bed from the bottom of the anaerobic bed, completing the removal of nitrogen and organic matter. The system performance under the conditions of different inflow loadings and nitrified liquid recirculation rates ranging from 200% to 600% was examined. From a technical and economic point of view, the optimum nitrified liquid recirculation ratewas 400%. With a shortest total retention time of 2.5 h (0.8 h in the anaerobic bed and 1.5 h in the aerobic bed) and a nitrified liquid recirculation rate of 400% based on the influent flow rate, the average removal efficiencies of total nitrogen (TN) and soluble chemical oxygen demand (SCOD) were found to be 88% and 95%, respectively. The average effluent concentrations of TN and SCOD were 3.5 mg/L and 16 mg/L, respectively. The volatile suspended solid (VSS) concentration, nitrification rate and denitrification rate in the system were less than 1.0 g/L, 0.026-0.1 g NH4 +-N/g VSS·d, and 0.016–0.074 g NOx -N/g VSS·d, respectively. __________ Translated from Environmental Engineering, 2007, 25(6): 2, 7–10 [译自: 环境工程]  相似文献   

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