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ClO_2杀灭拟柱孢藻过程中毒素释放行为与释放机理
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作者 李绍秀 杨阳 +4 位作者 朱璐瑶 赵德骏 王志红 李冬梅 谢葆红 《安全与环境学报》 CAS CSCD 北大核心 2017年第3期1106-1111,共6页
试验考察了二氧化氯(ClO_2)杀灭拟柱孢藻过程中不同条件下柱孢藻毒素(CYN)随时间的释放规律,对释放量与时间数据进行曲线方程拟合,并以透射电镜观察不同反应时间拟柱孢藻细胞形态,对柱孢藻毒素的释放机理进行分析。结果表明,反应初期5 ... 试验考察了二氧化氯(ClO_2)杀灭拟柱孢藻过程中不同条件下柱孢藻毒素(CYN)随时间的释放规律,对释放量与时间数据进行曲线方程拟合,并以透射电镜观察不同反应时间拟柱孢藻细胞形态,对柱孢藻毒素的释放机理进行分析。结果表明,反应初期5 min内CYN释放率随时间延长快速提高,随后增长缓慢,30 min后趋于稳定。ClO_2投加量影响了CYN释放速率,1.0 mg/L ClO_2投加量时CYN释放率要高于0.5 mg/L和0.7 mg/L时,但在反应2 h后不同ClO_2投加量的CYN释放率趋于接近。拟柱孢藻初始浓度对CYN释放率的影响不明显。CYN释放率在酸性条件下高于中性和碱性条件。随反应温度升高,CYN释放率逐渐升高。各种反应条件下CYN释放量与反应时间的关系可以用曲线方程来表示。藻细胞形态随反应时间延长发生变化。ClO_2投加量增大,藻细胞结构的破坏程度加剧。在反应初期CYN释放是通过扩散作用而并非由细胞壁的破裂而致。 展开更多
关键词 环境工程学 二氧化氯(ClO2) 拟柱孢藻 柱孢藻毒素(cyn)
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直接竞争ELISA检测拟柱孢藻毒素的方法建立和评价 被引量:2
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作者 杨丹 刘金平 +2 位作者 赖淑燕 肖利娟 雷腊梅 《中国环境科学》 EI CAS CSCD 北大核心 2023年第10期5643-5649,共7页
拟柱孢藻毒素(CYN)对人和动物具有高毒性而在世界上广受关注,快速检测方法的建立可为蓝藻毒素的风险评估提供有效的技术手段.本研究基于前期制备的CYN的单克隆抗体N8,旨在建立一种CYN的快速免疫检测方法-直接竞争ELISA.在对HRP-CYN酶标... 拟柱孢藻毒素(CYN)对人和动物具有高毒性而在世界上广受关注,快速检测方法的建立可为蓝藻毒素的风险评估提供有效的技术手段.本研究基于前期制备的CYN的单克隆抗体N8,旨在建立一种CYN的快速免疫检测方法-直接竞争ELISA.在对HRP-CYN酶标记物和N8单抗的稀释度进行优化后,最适反应条件下建立的直接竞争ELISA在0~200ng/mL CYN浓度下呈现典型的S型反应曲线,该方法的灵敏度为0.069ng/mL,经logit-log拟合的线性范围为0.1~10ng/mL,检出限远低于WHO建议的0.7ng/mL CYN的安全限值.本研究建立的ELISA方法对水库水样和小球藻稀释液中加标回收率分别为80.44%~125.4%和52.97%~155.19%,在测定CYN时与商业Beacon试剂盒的检测结果高度一致.对大沙河水库中CYN的监测表明该毒素在水体中常年存在,但未超过WHO建议的安全限值.本研究发展的ELISA可实现水样和藻样中CYN的快速检测,为供水安全保障提供一种新的技术手段. 展开更多
关键词 直接竞争ELISA 拟柱孢藻毒素 单克隆抗体 HRP-cyn连接物 加标回收率
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垃圾填埋场覆盖层灌溉处理渗滤液的试验研究 被引量:5
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作者 张斌 何品晶 +1 位作者 邵立明 王如意 《长江流域资源与环境》 CAS CSSCI CSCD 北大核心 2005年第4期516-521,共6页
在模拟的填埋场封场覆盖层上灌溉处理不同强度的渗滤液稀释液,研究其水量减量和主要污染物COD和NH3-N的去除效果.结果表明:一个生长季内,灌溉水量负荷12 mm/d条件下,裸土覆盖层的水量减量负荷均为7 mm/d左右,狗牙根覆盖层的水量减量负荷... 在模拟的填埋场封场覆盖层上灌溉处理不同强度的渗滤液稀释液,研究其水量减量和主要污染物COD和NH3-N的去除效果.结果表明:一个生长季内,灌溉水量负荷12 mm/d条件下,裸土覆盖层的水量减量负荷均为7 mm/d左右,狗牙根覆盖层的水量减量负荷为7.7~11 mm/d,渗滤液原液灌溉处理时为7.7 mm/d;而灌溉渗滤液的强度从低到高,狗牙根生物量先增大后减小,狗牙根覆盖层的水量减量负荷与其生物量正相关;裸土覆盖层的COD去除率为65 %左右,NH3-N去除率为70 %~93 %;狗牙根覆盖层的COD去除率为68 %~93 %,NH3-N去除率为89 %~99 %; NH3-N的去除途径主要是转化为硝态氮和被植物吸收.渗滤液覆盖层灌溉处理有良好的水量减量和主要污染物去除效果,且有植被时效果更佳,表明填埋场封场覆盖层灌溉处理渗滤液是可行的. 展开更多
关键词 覆盖层 渗滤液 垃圾填埋场 试验研究 COD去除率 NH3-N 主要污染物 去除效果 狗牙根 灌溉水量 根生物量 植物吸收 减量 负荷 稀释液 生长季 正相关 硝态氮 强度 封场 裸土
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分散固相萃取-液相色谱-串联质谱法测定淡水鱼中柱孢藻毒素、节球藻毒素和微囊藻毒素 被引量:10
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作者 陈丽惠 贾玉珠 +3 位作者 张斌 潘秋仁 陈秦秦 蔡伟鹏 《色谱》 CAS CSCD 北大核心 2019年第7期723-728,共6页
建立了同时检测淡水鱼中柱孢藻毒素、节球藻毒素、微囊藻毒素-RR、微囊藻毒素-YR及微囊藻毒素-LR的分散固相萃取-液相色谱-串联质谱方法。样品粉碎后,用乙腈-水-甲酸(89∶10∶1, v/v/v)提取目标物,C 18 分散固相萃取柱净化,Agilent ZORB... 建立了同时检测淡水鱼中柱孢藻毒素、节球藻毒素、微囊藻毒素-RR、微囊藻毒素-YR及微囊藻毒素-LR的分散固相萃取-液相色谱-串联质谱方法。样品粉碎后,用乙腈-水-甲酸(89∶10∶1, v/v/v)提取目标物,C 18 分散固相萃取柱净化,Agilent ZORBAX Eclipse XDB C18 色谱柱分离,乙腈和水梯度洗脱,在多反应监测(MRM)模式下进行定性分析,基质匹配标准曲线外标法定量。考察了提取溶剂及吸附剂种类对提取效率和净化效果的影响,并优化了液相色谱-串联质谱条件。该法在各自范围内具有良好线性关系,相关系数( R 2)≥ 0.995 4;检出限为5~10μg/kg ,定量限为15~40μg/kg;样品的加标回收率为62.3%~101.2%。该方法前处理方法简单快速,灵敏高效,适用于淡水鱼中柱孢藻毒素、节球藻毒素和微囊藻毒素的有效检测。 展开更多
关键词 液相色谱-串联质谱 分散固相萃取 柱孢藻毒素 节球藻毒素 微囊藻毒素 淡水鱼
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The Full-length Genome Analysis of a Street Rabies Virus Strain Isolated in Yunnan Province of China 被引量:11
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作者 JianZhang Hai—linZhang +2 位作者 Xiao-yanTao HaoLi QingTang 《Virologica Sinica》 SCIE CAS CSCD 2012年第3期204-213,共10页
The epidemic of rabies has rapidly increased and expanded in Yunnan province in recent years. In order to further analyze and understand the etiological reasons for the rapid expansion of rabies in Yunnan, a strain of... The epidemic of rabies has rapidly increased and expanded in Yunnan province in recent years. In order to further analyze and understand the etiological reasons for the rapid expansion of rabies in Yunnan, a strain of rabies virus CYN1009D in Yunnan was isolated, and the complete genomic sequencing was carried out, and the bioimfomative analysis on genes/encoded proteins and phylogeny with reference to sequences in GenBank was performed. The complete genome of CYN1009D was 11923 nt in length and belonged to genotype I. The genes encoding different structural proteins were all conserved in their lengths, in comparison to other strains in China. The amino acid sequence was conserved at different antigen sites of NP, but the variation was detected at the secondary phosphorylation site of position 375; variations were also detected in the phosphorylation sites at positions 63-63 and 162 of PP; the sites playing important roles in virus synthesis, budding and viral morphology in MP were conserved; two glycosylation sites were detected at Asn37 and Ash319 in GP, the neutralizing antigen sites in GP were conserved; the initial amino acid of LP (ML) was different from that of most of the strains in China (MM); the variations in G-L region in the intergenic region were significant. The phylogenic tree showed that CYN1009D has a closer genetic relationship to the strains in Southeast Asia, indicating that prevention and control on rabies in borderland areas should be reinforced meanwhile efforts are made to control rabies in China. 展开更多
关键词 Rabies virus Yunnan cyn1009D Complete genome Characterization
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Cylindrospermopsin in Water Supply Reservoirs in Brazil Determined by Immunochemical and Molecular Methods
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作者 Maria do Carmo Bittencourt-Oliveira Viviane Piccin-Santos +1 位作者 Paula Kujbida Ariadne do Nascimento Moura 《Journal of Water Resource and Protection》 2011年第6期349-355,共7页
It is reported for the first time in Brazil and South America the presence of cylindrospermopsin (CYN) in water supply reservoirs. CYN is a powerful hepatotoxic alkaloid implicated in outbreaks of human sicknesses. We... It is reported for the first time in Brazil and South America the presence of cylindrospermopsin (CYN) in water supply reservoirs. CYN is a powerful hepatotoxic alkaloid implicated in outbreaks of human sicknesses. We detected CYN in different sources of water in Northeastern Brazil using molecular and immunological techniques. The highest concentrations of toxin occurred in the Jucazinho reservoir with the phytoplankton containing the potentially CYN-producing C. raciborskii and Sphaerospermopsis aphanizomenoides (previously known as Aphanizomenon aphanizomenoides). The polyketide synthase (PKS) and peptide synthetase (PS), which are directly related to the ability to produce CYN, were found in all the analyzed samples. The result of the present study emphasizes the need to improve monitoring of CYN in water bodies used for drinking and recreation, in order to avoid exposure of human populations to this toxin. 展开更多
关键词 APHANIZOMENON CYANOBACTERIA CYLINDROSPERMOPSIS Raciborskii cyn Sphaerospermopsis Aphanizomenoides TOXIN
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