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1.
污染生态学的新发展—污染进化生态学 总被引:4,自引:1,他引:4
污染胁迫的最显著效应是消除敏感物种或个体,导致植物居群进化。突变是进化的原料,选择是进化的手段,隔离是进化的条件,控制抗性性状的基因因物种及污染物的种类不同而异,但也会出现植物同时具有对某两种或几种污染物的抗性,即所谓协同抗性;污染除使植物衰退外,还可能导致一些遗传信息丧失,使抗性种群内物种单一,降低其适合度,对其它环境胁迫因素的抵抗力下降,即所谓适应代价。 相似文献
2.
我国正处在从计划经济向市场经济转轨的过程,劳动安全卫生管理系统也在发生着重要变化。根据劳动安全卫生管理工作中存在的问题,分析并提出利用非官方的、独立自主的第三方认证/注册机构的优点和缺点。 相似文献
3.
Defu Xu Yinjuan Wu Yingxue Li Alan Howard Xiaodong Jiang Yidong Guan Yongxia Gao 《Environmental science and pollution research international》2014,21(17):10108-10119
A surface- and vertical subsurface-flow-constructed wetland were designed to study the response of chlorophyll and antioxidant enzymes to elevated UV radiation in three types of wetland plants (Canna indica, Phragmites austrail, and Typha augustifolia). Results showed that (1) chlorophyll content of C. indica, P. austrail, and T. augustifolia in the constructed wetland was significantly lower where UV radiation was increased by 10 and 20 % above ambient solar level than in treatment with ambient solar UV radiation (p?0.05). (2) The malondialdehyde (MDA) content, guaiacol peroxidase (POD), superoxide dismutase (SOD), and catalase (CAT) activities of wetland plants increased with elevated UV radiation intensity. (3) The increased rate of MDA, SOD, POD, and CAT activities of C. indica, P. australis, and T. angustifolia by elevated UV radiation of 10 % was higher in vertical subsurface-flow-constructed wetland than in surface-flow-constructed wetland. The sensitivity of MDA, SOD, POD, and CAT activities of C. indica, P. austrail, and T. augustifolia to the elevated UV radiation was lower in surface-flow-constructed wetland than in the vertical subsurface-flow-constructed wetland, which was related to a reduction in UV radiation intensity through the dissolved organic carbon and suspended matter in the water. C. indica had the highest SOD and POD activities, which implied it is more sensitive to enhanced UV radiation. Therefore, different wetland plants had different antioxidant enzymes by elevated UV radiation, which were more sensitive in vertical subsurface-flow-constructed wetland than in surface-flow-constructed wetland. 相似文献
4.
SGA对垃圾焚烧飞灰中重金属的固化性能研究 总被引:1,自引:0,他引:1
根据EPA1311、HJ/T299—2007、HJ/T300—2007和HJ557—2009等国内外不同标准,研究了深圳某垃圾焚烧发电厂垃圾焚烧飞灰的浸出毒性,探讨了六硫代胍基甲酸(sixthioguanidineacid,SGA)、二甲基二硫代氨基甲酸盐(sodiumdimethyldithiocarbamate,SDD)和Ca(OH)2浓度对垃圾焚烧飞灰中重金属的固定性能的影响。研究结果表明,随着浸提液pH的降低,该厂焚烧飞灰中大部分金属元素的浸出量增大,焚烧飞灰浸出液中的cd、Ni、Ph和zn浓度分别超过国家危险废物鉴别标准(GB5085.3—2007)规定值的4.75倍、1.47倍、6.72倍和2.20倍,属于危险废弃物,必须进行稳定化处理。当固化剂SGA加入量为0.1mol/kg时,稳定化后的重金属浸出浓度已经低于危险废物鉴别标准,且对Cd、Cr、Cu和Pb的固化性能优于SDD和Ca(OH)2;当固化剂SGA、SDD和Ca(OH)2加入量为0.5mol/kg时,稳定化后的焚烧飞灰重金属浸出浓度均低于国家危险废物鉴别标准(GB5085.3-2007)中的规定值。与SDD和Ca(OH):相比,SGA对垃圾焚烧飞灰中重金属的固化处理更具有优势。 相似文献
5.
An Ding Yingxue Zhao Huu Hao Ngo Langming Bai Guibai Li Heng Liang Nanqi Ren Jun Nan 《Frontiers of Environmental Science & Engineering》2020,14(6):96
6.
简述了我国重大工业事故发生的主要原因,提出了建立重大事故预防控制体系的建议,制定《重大事故预防和控制法》,实行重大危险源上报、登记、评价、分级监察管理,建立国家、省、市三级重大事故应急反应系统和重大危险源动态监控网络系统。 相似文献
7.
合理的注水半径一直是煤体注水防尘技术中难以确定的参数。笔者基于对影响煤体注水半径因素的分析和神经网络理论的原理之上 ,设计网络模型为 3层 ,输入层为 7个节点 ,应用BP网络算法 ,建立了煤体注水湿润半径的预测模型 ,并对其参数进行了讨论。然后 ,用平顶山矿务局和水城矿务局 13个矿 19个回采工作面的统计资料对BP网络进行自适应学习 ,并取η =0 .9,α =0 .82 ,控制网络总误差E≤ 10 6。经过 2 12 34次迭代后 ,网络趋于稳定。用训练好的网络对平顶山矿务局的某矿的 3层煤的注水湿润半径进行预测 ,预测结果与实测值很接近。其误差分别为 0 .5 %,0 .6 %和 0 .7%。 相似文献
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伴随流域水污染控制与治理工作的深入,农村分散生活污水治理逐渐成为制约流域水环境改善的关键.同时,农村生活污水治理是人居环境提升、美丽乡村建设以及乡村振兴战略实施的集中体现,事关广大农村居民的切身利益.本专栏是国家水专项“分散污水治理课题”团队近年来科研成果的总结,从污水治理的全生命周期角度出发,尝试通过人工智能赋能治理模式决策、“菜单式”工艺组合、设施运维与监管、长效管理等4个方面对研究和实践进行了梳理总结,构建基于人工智能驱动的农村生活污水治理决策支持系统,以期为北运河流域以及其他区域农村生活污水治理提供科技支撑. 相似文献
9.
聚苯乙烯微塑料单独或与镉共同暴露诱导肝细胞铁死亡 总被引:2,自引:0,他引:2
微塑料作为一种新型污染物,易吸附并富集环境中的重金属等,广泛存在于大气、土壤和水体环境中,对人体的危害正受到广泛关注.微塑料与其吸附污染物引发的复合毒性效应及机制是目前微塑料环境毒理学评价中亟待解决的科学问题.本研究以聚苯乙烯微塑料和镉为研究对象,考察其对新型细胞死亡方式-铁死亡的诱导作用,发现微塑料和镉暴露诱导肝细胞线粒体形态异常和线粒体嵴减少、GSH水平下降、脂质过氧化损伤以及关键铁死亡调节蛋白GPX4表达量降低,证实微塑料和镉暴露可诱导肝细胞发生铁死亡;同时不同铁死亡抑制剂及毒性检测指标的测定还表明,Cd2+主要通过抑制膜脂修复膜GPX4活性,引起脂质过氧化,导致铁死亡发生;聚苯乙烯微塑料主要通过刺激活性氧产生促进铁死亡;二者复合体可同时通过活性氧和抑制酶活等方式促进铁死亡发生,但其发生程度弱于Cd2+,可能是由于复合体中Cd2+呈吸附态降低其部分毒性所致.本文预期将为深入评价微塑料与镉的复合毒性效应提供数据支撑,同时为微塑料与其它共存的有毒组分的复合毒性效应及机制研究提供一定参考. 相似文献
10.
Defu Xu Yingxue Li Alan Howard 《Environmental science and pollution research international》2013,20(9):5922-5929
This study investigates biomass, density, photosynthetic activity, and accumulation of nitrogen (N) and phosphorus (P) in three wetland plants (Canna indica, Typha augustifolia, and Phragmites austrail) in response to the introduction of the earthworm Eisenia fetida into a constructed wetland. The removal efficiency of N and P in constructed wetlands were also investigated. Results showed that the photosynthetic rate (P n), transpiration rate (T r), and stomatal conductance (S cond) of C. indica and P. austrail were (p?<?0.05) significantly higher when earthworms were present. The addition of E. fetida increased the N uptake value by above-ground of C. indica, T. augustifolia, and P. australis by 185, 216, and 108 %, respectively; and its P uptake value increased by 300, 355, and 211 %, respectively. Earthworms could enhance photosynthetic activity, density, and biomass of wetland plants in constructed wetland, resulting in the higher N and P uptake. The addition of E. fetida into constructed wetland increased the removal efficiency of TN and TP by 10 and 7 %, respectively. The addition of earthworms into vertical flow constructed wetland increased the removal efficiency of TN and TP, which was related to higher photosynthetic activity and N and P uptake. The addition of earthworms into vertical flow constructed wetland and plant harvests could be the significantly sustainable N and P removal strategy. 相似文献