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多功能智能织物纳米技术 总被引:1,自引:0,他引:1
未来武装部队(AFAN)的生存能力和机动性对具有多种防护和耐久功能的轻质结构材料提出了更高的要求.例如,除了武器、化学(生物化学)鉴别和防护设备及能量系统外,士兵还要携带越来越多的通信设备.因此,制造制服的织物除了具有防护的功能外,还应具有冲击防护、化学(生物)鉴别及传感、化学(生物)防护以及能量产生及存储的功能.这样就迫切需要建立新的材料体系和方法来把物质合成与结构设计结合起来.实验证明,由电纺丝过程制造的纳米级(直径≤100 nm)纤维能实现这样的功能.这些纳米纤维类似于自然界生物体系,以等级结构被组装,最终形成线形、平面形和三维组装体系.把电子聚合物及传统聚合物结合起来, 相似文献
2.
Luman Zhou Chengyang Wu Yuwei Xie Siqing Xia 《Frontiers of Environmental Science & Engineering》2020,14(2):27
3.
Zhonghua Zhao Yuyu Wang Lu Zhang Yongjiu Cai Yuwei Chen 《Environmental science and pollution research international》2014,21(14):8740-8749
Concentrations and tissue distribution of organochlorine pesticides (OCPs) in different tissues of freshwater fish, silver carp (Hypophthalmichthys molitrix) and bighead carp (Aristichthys nobilis), collected from Poyang Lake, China’s largest shallow lake, and were studied. OCPs were detected with the observed concentrations ranging from 280.67 to 1,006.58 ng/g wet weight (ww) for bighead carp and from 67.28 to 930.06 ng/g ww for silver carp. Composition analysis demonstrated OCPs in both fish were from the same polluted environment, and then, the species-specific bioaccumulation might be mainly due to the different fish age as well as the different feeding habits elucidating from the stable carbon (δ13C) and nitrogen (δ15N) isotope analysis. Tissue distribution indicated that dietary intake was the major exposure route of OCPs for both fish and higher accumulation potency of OCPs by the hepatobiliary-related tissues (such as liver, kidney, bile, and heart). The higher metabolic activities of these tissues elucidating from the higher values of δ15N might be the potential-determined factor responsible for the tissue-specific accumulation. 相似文献
4.
实验采用一步离子交换法制备Cu-Ce-La-ZSM-5催化剂,然后采用共混法制得Cu-Ce-La-ZSM-5/CaH2催化剂。采用扫描电镜(SEM),电感耦合等离子体发射光谱(ICP-AES),X射线衍射(XRD),红外(FTIR)以及NO吸脱附(NO-TPD)对催化剂进行表征。结果显示CaH2的加入使得催化剂中铜离子存在形式发生变化,催化剂表面变光滑洁净,并且吸附NO能力增强。NO催化分解实验的结果表明CaH2提高了催化剂活性和抗氧性。CaH2助催性是由于其受热分解过程中产生的H2能将Cu2+还原为具有催化活性的Cu+,同时使催化剂表面洁净光滑更容易吸附NO。 相似文献
5.
The impact of climate change on enteric infection has been a concern in recent years. This study aims to project disability burdens of bacillary dysentery (BD) associated with increasing temperature in different climatic zones in China. Years Lost due to Disabilities (YLDs) were used as the measure of burden of bacillary dysentery in this study. A temperate city in northern China and a subtropical city in southern China were selected as the study areas. The quantitative relationship between temperature and the number of cases in each city was base on the regression models developed in our previous studies. YLDs for bacillary dysentery in 2000 were used as the baseline data. Projection of YLDs for bacillary dysentery in 2020 and 2050 under future temperature scenarios were conducted. Demographic changes over the next 20 to 50 years in study cities were considered in the projections. Under the temperature scenarios alone, the YLDs for bacillary dysentery may increase by up to 80% by 2020 and 174% by 2050 in the temperate city and up to 75% increase in the YLDs by 2020 and a 147% increase by 2050 in the tropical city. Considering potential changes in both temperature and population size and structure, if other factors remain constant, compared with the YLDs observed in 2000, the YLDs for bacillary dysentery may double by 2020 and triple by 2050 in both the temperate and subtropical cities in China. The temperature-related health burden of enteric infection in China may greatly increase in the future if there is no effective intervention. Relevant public health strategies should be developed at an earlier stage to prevent and reduce the impact of infectious disease associated with climate change. 相似文献
6.
纳米零价铁(nZVI)进行土壤及水体中污染物的修复过程中, 结构和成分发生演化,生成铁氧化合物对污染物在环境中的迁移、转化和归宿等产生影响. 本文研究了nZVI在充氧水介质中与铬酸根(Cr(VI))的反应, 结果表明: nZVI的表面化学及晶相结构随溶液初始pH值、Cr(VI)浓度和反应时间等变化而变化. 低浓度Cr(VI)(≤20 mg?L-1)的存在使得nZVI的腐蚀加速, 单个颗粒由链球状结构演变为片状和针状结构,主要腐蚀产物成为γ-Fe2O3/Fe3O4、γ-FeOOH的混合物. 溶液中高浓度Cr(VI) (≥50 mg?L-1)与nZVI反应前后产物颗粒保持球形, 证明其抑制nZI颗粒的腐蚀. 这是由于Cr(VI)在nZVI表面还原产生Cr(OH)3或CrxFe1-x(OH)3或CrxFe1-xOOH, 覆盖在表面阻止进一步的腐蚀. 塔菲尔(Tafel)曲线测试发现, Cr(VI)浓度低于0.1 mg?L-1时, nZVI反应后固体产物制备的电极腐蚀电压负移, 腐蚀电流密度增大; 而当Cr(VI)浓度(≥20 mg?L-1)增高时, 腐蚀电位正移, 腐蚀电流密度减少; 且腐蚀电位随着Cr(VI)含量的增加而向正向移动, 而腐蚀电流密度则减小, 证明了腐蚀速率越慢. 塔菲尔腐蚀电流测试结合扫描电镜、X-射线电子衍射和X-射线光电子能谱分析, nZVI中Cr(VI)含量越高抗腐蚀能力越强. 本文对研究复杂环境条件nZVI与Cr(VI)反应后的最终产物以及其环境归趋具有重要意义. 相似文献
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Jianming Yu Meng Wu Yuwei Tang Jiaqi Shi Jun Hu Zhiliang Yu Jianmeng Chen 《环境科学学报(英文版)》2019,31(12):187-194
Enzymatic electrolysis cell(EEC) has advantages over microbial electrolysis cell(MEC) due to the needless of microbe inoculation and high-efficiency of enzymatic reaction. In this study, an EEC was first applied to achieve the effective degradation of halogenated organic pollutants and dichloromethane(CH_2Cl_2) was utilized as a model pollutant. The results indicate that the degradation efficiency of CH_2Cl_2 after 2 hr reaction in the EEC was almost100%, which was significantly higher than that with enzyme(51.1%) or current(19.0%). The current induced the continuous regeneration of reduced glutathione(GSH), thus CH_2Cl_2 was degraded under the catalysis of GSH-dependent dehalogenase through stepwise dechlorination, and successively formed monochloromethane(CH_3Cl) and methane(CH_4). The kinetic result shows that with a current of 15 mA, the maximum specific degradation rate of CH_2Cl_2(3.77 × 10~(-3) hr~(-1)) was increased by 5.7 times. The optimum condition for CH_2Cl_2 dechlorination was also obtained with pH, current and temperature of 7.0, 15 mA and 35°C,respectively. Importantly, this study helps to understand the behavior of enzymes and the fate of halogenated organic pollutants with EEC, providing a possible treatment technology for halogenated organic pollutants. 相似文献
8.
本文讨论了通过建立奖励与惩罚相结合的检验理念,采取全面检验与重点检验相结合的检验方式,使选择优质维保单位的电梯使用单位可支付更少的电梯检验费,而选择劣质维保单位的电梯使用单位则须支付更多的电梯检验费,从而促使电梯使用单位自觉选择优质维保单位.希望通过这种方式能够呈现择优汰劣的电梯维保市场,保证电梯的维保质量和安全质量. 相似文献
9.
菠菜对土壤中毒死蜱残留的吸收研究 总被引:3,自引:0,他引:3
农田土壤中农药污染是农产品质量全程控制的重要环节。采用盆栽法研究菠菜(Spinacia oleracea L.spinach)对土壤中毒死蜱的吸收情况。结果表明土壤中的毒死蜱能够被菠菜吸收,吸收量与土壤中的残留量呈一定的线性关系,r2=0.9538。土壤中毒死蜱残留量为3.74~67.7mg·kg-1时,菠菜中毒死蜱残留量为0.006~1.098mg·kg-1。毒死蜱在土壤中的残留量不同,其降解速率也不同,半衰期从15.4d到44.4d不等。土壤中高毒死蜱残留时能够影响菠菜产量,造成单株重量下降;但不影响菠菜的出苗率,处理间没有显著差异。试验结果表明即使土壤中含有毒死蜱残留,在正常情况不会对菠菜中毒死蜱残留造成很大影响,产品符合我国食品中规定毒死蜱在叶菜类为0.1mg·kg-1的标准要求,但是蔬菜加工出口企业要关注土壤中毒死蜱残留问题,以免生产出不符合进口国要求的菠菜产品。该试验研究为农产品全程质量控制和农田农药污染指标的设定提供一些理论依据。 相似文献
10.
巢湖流域和太湖流域沉积物中苄氯菊酯和高效氰戊菊酯的生态风险评价 总被引:2,自引:0,他引:2
分析了巢湖流域和太湖流域表层沉积物中苄氯菊酯和高效氰戊菊酯,并结合毒性单元法(Toxic Unit,TU)和物种敏感性分布法(Species Sensitivity Distributions,SSD)评价了两种拟除虫菊酯的生态风险.结果显示,两大流域沉积物中均广泛检测出两类污染物.总体而言,巢湖流域苄氯菊酯含量较高,而太湖流域高效氰戊菊酯含量较高.同时,两种污染物在巢湖流域呈现显著的正相关,但太湖流域二者之间没有相关关系.3种风险评价方法(TU法、沉积物SSD法、水体SSD法)均揭示苄氯菊酯对巢湖流域水生环境影响较大,而高效氰戊菊酯对两个流域影响均较大.因此,需要加强对流域高效氰戊菊酯污染的关注.其中,TU法预测的风险最小,沉积物SSD法预测的风险最大,主要原因在于TU法采用的毒性数据为LC50,而SSD法则选用了NOEC/LOEC,同时沉积物SSD法是出于保护大部分底栖生物为目的的方法.各种方法对于评价沉积物毒害污染物的生态风险均存在不足,尽管沉积物SSD法最为合理,但由于其毒性数据较少,最终预测结果存在一定的不确定性.因此,需要进一步加强对底栖生物毒性的研究和数据积累. 相似文献