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751.

Original high hydrocarbon groundwater represents a kind of groundwater in which hydrocarbon concentration exceeds 0.05 mg/L. The original high hydrocarbon will significantly reduce the environment capacity of hydrocarbon and lead environmental problems. For the past 5 years, we have carried out for a long-term monitoring of groundwater in shallow Triassic aquifer in Northwest Guizhou, China. We found the concentration of petroleum hydrocarbon was always above 0.05 mg/L. The low-level anthropogenic contamination cannot produce high hydrocarbon groundwater in the area. By using hydrocarbon potential, geochemistry and biomarker characteristic in rocks and shallow groundwater, we carried out a comprehensive study in Dalongjing (DLJ) groundwater system to determine the hydrocarbon source. We found a simplex hydrogeology setting, high-level water–rock–hydrocarbon interaction and obviously original hydrocarbon groundwater in DLJ system. The concentration of petroleum hydrocarbon in shallow aquifer was found to increase with the strong water–rock interaction. Higher hydrocarbon potential was found in the upper of Guanling formation (T2g3) and upper of Yongningzhen formation (T1yn4). Heavily saturated carbon was observed from shallow groundwater, which presented similar distribution to those from rocks, especially from the deeper groundwater. These results indicated that the high concentrations of original hydrocarbon in groundwater could be due to the hydrocarbon release from corrosion and extraction out of strata over time.

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752.
As the world's freshwater resources and available energy are alarmingly decreasing, the bioelectrochemical system (BES) is a cutting-edge technology for the resolution of the resource and energy issue. Researchers have paid much attention to t he application of t he BES configuration. Based on t he brief i ntroduction of m icrobial f uel cell a nd m icrobial electrolytic cell structure, principles, and domestic and foreign research, the BES and its influencing factors are introduced, specifically including: microbial activity, electrode materials, and configuration. Three important aspects (i.e., the electrode chamber, the reaction chamber, and micro-sensor) are summarized, and the advantages and disadvantages of single-electrode and multi-electrode chambers are compared, based on the microbial desalination cell. Microbial electrolysis desalination cell: Microbial electrolysis desalination and chemical-production cell have been discussed to introduce increasing reaction chamber configuration; this review focuses on the research of BES monitoring with regards to biochemical oxygen demand. The potential applications of the research progress are explored. The results show that the configuration of multi-chamber microbial fuel cell is complex and its efficiency is low, while the single chamber configuration is advantageous. The reaction chamber added is mainly aimed at desalination, and the study of the desalination pool still needs to be focused on optimizing the cation exchange membrane to maintain the anode pH balance and reduce the air cathode dissolved oxygen. Microbial electrode sensor can be applied in more areas, and its sensitivity and long-term stability need to be further improved. However, there is relatively less research on the abundance and activity of electricigen communities; the configurations and scopes of application of BES are still the research priority. © 2018 Science Press. All rights reserved.  相似文献   
753.
Climate change has become increasingly serious due to the greenhouse effect. It is therefore necessary to control the content of greenhouse gases such as carbon dioxide in the atmosphere, using, for instance, CO2-adsorbing materials. Here, we synthesized ultra-lightweight and spherical cellulose nanofibres aerogels by a suspension titration method using an efficient amination process. These functional materials with high porosity, higher than 96.54%, and three-dimensional network structure, were prepared by freeze-drying spherical cellulose nanofibres hydrogel. Their maximum CO2 adsorption capacity reaches 1.78 mmol/g, and they show excellent regeneration, of more than 10 cycles. This synthesis of bioaerogels represents a new method for the preparation of bio-CO2 adsorbents.  相似文献   
754.
为探讨北京不同污染天气大气可吸入颗粒物PM_(10)和细颗粒物PM_(2.5)污染对雄性大鼠血常规、氧化损伤、炎症反应和肺组织的影响,将64只雄性8周龄Wistar大鼠随机分为8组,分别为2个对照组(空白组和生理盐水组)和6个染毒组(清洁、雾霾及沙尘暴3种不同天气的PM_(10)染毒组和PM_(2.5)染毒组),每组8只。用2015年3月—5月在北京南海子麋鹿苑采集的清洁、雾霾和沙尘暴3种不同天气的PM_(10)和PM_(2.5)制备悬液,分别采用气管滴入PM_(10)和PM_(2.5)悬液作为染毒组,空白对照组不做任何处理,生理盐水对照组采用气管滴注生理盐水。急性染毒24 h后处死大鼠。采集血液测定18个血常规指标,分析肺泡灌洗液(BALF)中转化生长因子-β1(TGF-β1)、乳酸脱氢酶(LDH)、总抗氧化能力(T-AOC)、白介素-6(IL-6)及肿瘤坏死因子-α(TNF-α)的含量,并在高倍显微镜下观察肺组织和气管病理形态变化。同时,对PM_(10)和PM_(2.5)中的水溶性离子、有机碳/元素碳、16种多环芳烃和7种重金属等元素进行了测定,并分析了各组分与大鼠生理病理指标的相关性。结果表明:清洁、沙尘暴天气的PM_(10)和雾霾天气的PM_(2.5)急性染毒导致大鼠白细胞系参数即免疫力显著下降。污染天气颗粒物染毒后大鼠BALF氧化炎症因子的改变表明呼吸系统受到感染:沙尘暴和清洁天的PM_(10)染毒均显著提高了TGF-β1,雾霾PM_(10)染毒后IL-6和LDH有一定程度升高。3种天气颗粒物染毒对肺和气管造成的组织病理伤害各有特点,但PM_(2.5)伤害程度普遍大于PM_(10)。染毒颗粒物粒径大小,其化学成分类别、浓度是造成大鼠血常规指标变化、氧化炎症反应和组织学病变的可能原因。  相似文献   
755.
秦艳红  秦玮  蒋自强  袁琦  陈诚  高洁  刘晨 《环境化学》2021,40(12):3947-3954
利用大气细颗粒物水溶性离子在线监测仪(Marga 1S)分别与API 100E和Thermo 43i同时测量环境空气和二氧化硫(SO2)标气,进而评估了湿式旋转溶蚀器对SO2吸收效率及其测量干扰.研究结果显示,基于API 100E和Marga 1S测得的2017年南京市环境空气SO2浓度分别为(17.1+7.7)μg·m-3和(9.6±5.9)μg·m-3,Marga 1S较API 100E低43.8%,当API 100E监测SO2浓度低于25 μg·m3时,API 100E和Marga 1S的相对误差较大,秋、冬季Marga 1S测量结果与API 100E最为接近,夏季Marga 1S测量结果偏低;基于实验室研究发现,Marga 1S和Thermo 43i的相关系数r为0.999,相关性较好,Marga 1S的测量结果偏低,与环境空气结论一致.湿式旋转溶蚀器对SO2吸收效率为82.1%-91.7%,随着SO2浓度逐渐升高,湿式旋转溶蚀器的吸收效率逐渐升高,60 μg·m3附近时吸收效率趋于稳定.高浓度SO2条件下,颗粒态中SO42-残留率介于0.43%-1.34%之间,高浓度SO2对颗粒物SO42-组分监测影响较小.  相似文献   
756.
A new electrocoagulation process based on bipolar aluminum electrode is proposed. The placement angles of bipolar electrode are key parameter. The numerical simulations support the experimental results. We in our previous study reported the wireless electrocoagulation (WEC) based on bipolar electrochemistry for water purification. One of the most important advantages of WEC is the omission of ohmic connection between bipolar electrode (BPE) and power supply, and thus the electrochemical reactions on BPE are driven by electric field in solution induced by driving electrodes. In this study, the impact of placement angle of bipolar aluminum electrode on WEC was investigated to provide a detailed analysis on the correlations between the bipolar electrode placement angle and bipolar electrocoagulation reactions. The results showed that the WEC cell with a horizontal BPE placed at 0° produced the maximum dissolved aluminum coagulant, accounting for 71.6 % higher than that with a vertical one placed at 90°. Moreover, the finite element simulations of current and potential distribution were carried out along the surface of BPE at different placement angles, revealing the mechanism of different BPE placement angles on aluminum dissolution rates in WEC system.  相似文献   
757.
长江流域主要干/支流水化学特征及外源酸的影响   总被引:4,自引:4,他引:0  
王琪  于奭  蒋萍萍  孙平安 《环境科学》2021,42(10):4687-4697
为了探究人类活动对长江流域水化学特征的影响,本文以流域内主要干/支流代表断面的采样点为研究对象,分别于2016年丰水期和平水期采集地表水样各13组,通过离子比值法、主成分分析法和化学离子平衡计算法,综合分析水化学特征,并估算碳酸和外源酸参与碳酸盐岩的溶蚀比例.结果表明,水化学类型主要为HCO3-Ca型,指示流域内水化学的主要影响因素为碳酸盐岩的溶解,在碳酸盐岩风化过程中,碳酸与碳酸盐岩的相对快速风化为主导反应.此外,丰水期和平水期各采样点碳酸溶蚀比例均值分别为60.33%和59.14%,不同采样点的溶蚀比例差值较大,指示外源酸对河流与岩石侵蚀风化过程的影响不容忽视,且阳离子交换对水化学有一定影响,但并不是主要的反应过程.与多年前水文监测初期的数据相比,硫酸和硝酸对岩石风化作用加强,人为因素对长江的水质影响增大.  相似文献   
758.
高锰酸钾改性桉木生物炭对Pb(Ⅱ)的吸附特性   总被引:1,自引:0,他引:1  
以桉木为原料,使用高锰酸钾对桉木生物炭(BC)进行改性,制备改性生物炭(KBC).对其进行表征,并进行了水溶液中Pb (Ⅱ)的静态吸附实验,探究了溶液pH、吸附剂投加量、吸附时间、温度和初始浓度对Pb (Ⅱ)的吸附效果影响.结果表明,最佳吸附反应pH为5,吸附在6 h达到饱和,当温度为25℃,Pb (Ⅱ)的初始浓度为100mg ·L-1,吸附剂投加量为0.06 g时,KBC对Pb (Ⅱ)的最大吸附量为83.059mg ·g-1,去除率为99.67%.KBC对Pb (Ⅱ)的吸附遵循二级动力学模型和Langmuir等温吸附模型,其是发生在均匀表面的单层吸附.采用BET、SEM-EDS、XRD、FT-IR和XPS对吸附剂进行表征分析,发现吸附机制主要是KBC含氧和KBC含锰基团通过络合作用和沉淀作用来吸附Pb (Ⅱ),以及在吸附过程中生物炭表面会形成—O—Pb—O—双齿配合物.因此,高锰酸钾改性BC可以作为一种很好的Pb (Ⅱ)吸附剂.  相似文献   
759.
本文从海口湿地资源现状及特点、湿地面临威胁与问题、湿地保护修复经验等几个方面深入分析,总结了近年来海口市湿地保护修复工作的主要经验与启示,总结出"海口经验",即高位推动、顶层规划、示范带动、全民参与、合理利用,并对海口未来需要重点关注的内容提出了建议。在当今生态文明建设战略背景下,保护好人类发展的绿色基础设施——湿地,将产生巨大的生态、社会和经济效益。因此,将"海口经验"推向全国,并在全国形成示范作用,对落实湿地保护与合理利用的相关政策与制度、提高全民湿地保护意识、推动我国湿地保护管理进程具有重要意义。  相似文献   
760.
基于SPI的西北地区气候干湿变化   总被引:14,自引:1,他引:13  
干旱是西北地区乃至全国主要的自然灾害之一。论文应用标准化降水指数(SPI)对西北地区近50 a来不同时段的特旱和重旱发生频次及其空间分布进行了计算分析,结果表明:标准化降水指数(SPI)作为一种干旱重建指标,适用于西北地区,也可以作为气候变化的监测指标;降水量的西增东减趋势与干旱频次的西部和东北减少、东南增加相对应,亦即气候变化在某种程度上缓解了新疆北部和青海西部的干旱,但加重了甘肃东南部和陕西中南部的干旱;与气候变化相对应,全西北地区干旱频次有总体下降的趋势,尽管干旱发生的地域持续在改变。  相似文献   
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