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51.
人工合成麝香(HHCB/AHTN)是近几年来受关注较多的药品与个人护理品(PPCPs)类新型污染物之一,再生水灌溉是HHCB/AHTN输入土壤的主要途径.本研究结合再生水灌溉土壤的实地检测结果,采用HYDRUS-1D模型,模拟了长期灌溉再生水条件下土壤中HHCB和AHTN的迁移转化和累积趋势.结果表明,尽管土壤中这两种麝香的含量极低,但是再生水灌溉土壤中的含量是自来水灌溉土壤的5倍;再生水灌溉下HHCB/AHTN累积趋势从lgKoc较低为3.44时的指数型增加,到lgKoc较高为4.12和4.86时的线性增加;半衰期的变化对再生水灌溉途径输入土壤的HHCB/AHTN的表层累积影响并不明显;再生水灌溉下土壤中HHCB/AHTN的垂直迁移能力较小,灌溉40 a以后最大迁移距离只有53 cm,且受Koc变化的影响较大;通过灌溉水途径进入土壤的HHCB和AHTN通过生物降解与植物吸收途径消解的比例较低,最高只占输入总量的7.69%,但是随着lgKoc的减小和灌溉时间增加,通过生物降解和根系吸收的消解率增加.本研究结果能够为准确评估再生水灌溉途径引起的土壤中人工合成麝香HHCB/AHTN的生态风险提供依据. 相似文献
52.
53.
一个耐受镉毒害的拟南芥突变体的筛选 总被引:3,自引:0,他引:3
从甲基磺酸乙酯(EMS)诱变获得的拟南芥M2代群体(Columbia型)中筛选获得一个耐受镉Cd2 毒害能力显著增强的拟南芥突变体(命名为cdr1-1).遗传分析表明,该突变性状为隐性单基因突变,与野生型相比,cdr1-1突变体在不同发育时期均能耐受Cd2 毒害,且其对Cd2 的积累能力也显著高于野生型.此外,还发现cdr1-1突变体体内的还原型谷胱甘肽(GSH)水平显著高于野生型,用GSH合成抑制剂丁硫氨酸亚矾胺处理cdr1-1突变体,导致其耐受Cd2 毒害能力显著下降,几乎接近野生型水平,表明cdr1-1突变体对Cd2 的耐受性至少部分依赖于GSH介导的途径. 相似文献
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55.
通过测定不同SO2、NO以及不同烟尘浓度条件下,小球藻ZY-1的生长速率及其对CO2的固定速率,研究烟气中NO和SO2及烟尘等环境因子对小球藻ZY-1的生长及其CO2固定效果的影响.研究结果表明,烟气中的SO2是以增加培养液中的SO24-浓度及降低pH值的形式来影响ZY-1的生长及其对CO2的固定的.当SO2体积浓度大于50×10-6时,需要进行烟气脱硫或控制培养液pH值变化来消除其影响;烟气中NO的体积浓度不高于300×10-6时,不影响ZY-1的生长及其对CO2的固定,可作为氮源供ZY-1生长用;对经过一般除尘处理的烟气,在利用小球藻ZY-1固定CO2时可不考虑溶解性烟尘的影响.研究结果证明利用小球藻ZY-1固定烟气中的CO2是可行的. 相似文献
56.
Process of rice straw degradation and dynamic trend of pH by the microbial community MC1 总被引:6,自引:1,他引:6
LIU Jian-bin WANG Wei-dong YANG Hong-yan WANG Xiao-fen GAO Li-juan CUI Zong-jun 《环境科学学报(英文版)》2006,18(6):1142-1146
The process of the rice straw degradation in the fermentor with aeration at 290 ml/h was studied. The results of dissolved oxygen (DO) indicated that the optimum DO during cellulose degradation by microbial community MC1 ranged from 0.01 to 0.12 mg/L. The change model ofpH values was as follows: irrespective of the initial pH of the medium, pH values decreased rapidly to approximate 6.0 after being inoculated within 48 h when cellulose was strongly degraded, and then increased slowly to 8.0--9.0 until cellulose was degraded completely. During the degradation process, 15 kinds of organic compounds were checked out by GC-MS. Most of them were organic acids. Quantity analysis was carried out, and the maximum content compound was ethyl acetate which reached 13.56 g/L on the day 4. The cellulose degradation quantity and ratio analyses showed that less quantity (under batch fermentation conditions) and longer interval (under semi-fermentation conditions) of rice straw added to fermentation system were contributed to matching the change model of pH, and increasing the quantity and ratio of rice straw degradation during cellulose degrading process. The highest degradation ratio was observed under the condition office straw added one time every five days (under semi-fermentation conditions). 相似文献
57.
对应用异烟酸 吡唑啉酮分光光度法测定海水中氰化物的方法进行了补充和改进,提高了海水氰化物测定方法的精密度和准确度。 相似文献
58.
Evi Kurniati Novi Arfarit Tsuyoshi Imai Takaya Higuchi Ariyo Kanno Koichi Yamamoto Masahiko Sekine 《环境科学学报(英文版)》2014,26(6):1223-1231
The use of filamentous fungi in bioremediation of heavy metal contamination has been developed recently. This research aims to observe the capability of filamentous fungi isolated from forest soil for bioremediation of mercury contamination in a substrate. Six fungal strains were selected based on their capability to grow in 25 mg/L Hg2+-contaminated potato dextrose agar plates. Fungal strain KRP1 showed the highest ratio of growth diameter, 0.831, thus was chosen for further observation.Identification based on colony and cell morphology carried out by 18S rRNA analysis gave a 98%match to Aspergillus flavus strain KRP1. The fungal characteristics in mercury(Ⅱ) contamination such as range of optimum pH, optimum temperature and tolerance level were 5.5–7 and 25–35℃ and 100 mg/L respectively. The concentration of mercury in the media affected fungal growth during lag phases. The capability of the fungal strain to remove the mercury(Ⅱ) contaminant was evaluated in 100 mL sterile 10 mg/L Hg2+-contaminated potato dextrose broth media in 250 mL Erlenmeyer flasks inoculated with 108spore/mL fungal spore suspension and incubation at 30℃ for 7 days. The mercury(Ⅱ) utilization was observed for flasks shaken in a 130 r/min orbital shaker(shaken) and nonshaken flasks(static) treatments. Flasks containing contaminated media with no fungal spores were also provided as control. All treatments were done in triplicate. The strain was able to remove 97.50%and 98.73% mercury from shaken and static systems respectively. A. flavus strain KRP1 seems to have potential use in bioremediation of aqueous substrates containing mercury(Ⅱ) through a biosorption mechanism. 相似文献
59.
Ken Kin Lam Yung Pengfei Fu Yufei Zhao Chuan Dong Zongwei Cai Ruijin Li 《环境科学学报(英文版)》2022,34(12):25-40
Fine particulatematter (PM2.5) is associated with increased risks of Alzheimer’s disease (AD),yet the toxicologicalmechanisms of PM2.5 promoting AD remain unclear. In this study,wildtype
and APP/PS1 transgenic mice (AD mice) were exposed to either filtered air (FA) or PM2.5 for eight weeks with a real-world exposure system in Taiyuan, China (mean PM2.5 concentration
in the cage was 61 μg/m3). We found that PM2.5 exposure could remarkably aggravate AD mice’s ethological and brain ultrastructural damage, along with the elevation of the pro-inflammatory cytokines (IL-6 and TNF-α), Aβ-42 and AChE levels and the decline of ChAT levels in the brains. Based on high-throughput sequencing results, some differentially expressed (DE) mRNAs and DE miRNAs in the brains of AD mice after PM2.5 exposure were screened.Using RT-qPCR, seven DEmiRNAs (mmu-miR-193b-5p, 122b-5p, 466h-3p, 10b-5p, 1895, 384–5p, and 6412) and six genes (Pcdhgb8, Unc13b, Robo3, Prph, Pter, and Tbata)
were evidenced the and verified. Two miRNA-target gene pairs (miR-125b-Pcdhgb8 pair and miR-466h-3p-IL-17Rα/TGF-βR2/Aβ-42/AChE pairs) were demonstrated that they were more
related to PM2.5-induced brain injury. Results of Gene Ontology (GO) pathways and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways predicted that synaptic and postsynaptic
regulation, axon guidance, Wnt, MAPK, and mTOR pathways might be the possible regulatory mechanisms associated with pathological response. These revealed that PM2.5-
elevated pro-inflammatory cytokine levels and PM2.5-altered neurotransmitter levels in AD mice could be the important causes of brain damage and proposed the promising miRNA
andmRNA biomarkers and potentialmiRNA-mRNA interaction networks of PM2.5-promoted AD. 相似文献
60.
Relation of hepatic EROD activity and cytochrome P4501A level in Sebastiscus
marmoratus exposed to benzo[a]pyrene 总被引:1,自引:0,他引:1
This study was designed to investigate the in vivo effects of benzo[a]pyrene (BaP) on hepatic ethoxyresorufin-O-deethylase (EROD) activity and its correlation with cytochrome P4501A (CYP1A) protein levels in Sebastiscus marmoratus, which were exposed through a water column to BaP (10, 100, 1000 ng/L, respectively) or were treated with intraperitoneal injections of BaP (0.5, 1, 5, 10 mg/kg, respectively) every 7 d. The results showed that after 25 d of waterborne exposure to 1000 ng/L BaP, fish hepatic CYP1A levels and EROD activity were significantly induced. In contrast, EROD activity was not altered 7 d after second intraperitoneal injections, whereas, CYP1A protein levels were increased. Dose-dependent increase of biliary BaP metabolites demonstrated that the catalytic activity of CYP1A was induced by treatment with BaP. The lowest observable effect concentration with regard to biliary BaP metabolites (100 ng/L) was much lower than that with reference to EROD activity (1000 ng/L). The results suggest that biliary polycyclic aromatic hydrocarbon (PAH) metabolites were shown to better reflect the contamination gradients of PAHs than EROD activity. It appeared to be necessary to measure CYP1A protein levels to complement the EROD activity in relevant toxicological assessments. 相似文献