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221.
• Pig feces is the predominant excrement produced by animal husbandry in China. • The PF, Pig-1-BacTaqMan, and Pig-2-BacTaqMan MST assays showed better performance. • The pig-specific MST assays can contribute to managing the pig fecal pollution. In China, pig feces is the predominant source of excrement produced by animal husbandry. Improper use or direct discharge of pig feces can result in contamination of natural water systems. Microbial source tracking (MST) technology can identify the sources of fecal pollution in environmental water, and contribute to the management of pig fecal pollution by local environmental protection agencies. However, the accuracy of such assays can be context-dependent, and they have not been comprehensively evaluated under Chinese conditions. We aimed to compare the performance of five previously reported pig-specific MST assays (PF, Pig-Bac1SYBR, Pig-Bac2SYBR, Pig-1-BacTaqMan, and Pig-2-BacTaqMan, which are based on Bacteroidales 16S rRNA gene markers) and apply them in two rivers of North China. We collected a total of 173 fecal samples from pigs, cows, goats, chickens, humans, and horses across China. The PF assay optimized in this study showed outstanding qualitative performance and achieved 100% specificity and sensitivity. However, the two SYBR green qPCR assays (Pig-Bac1SYBR and Pig-Bac2SYBR) cross-reacted with most non-pig fecal samples. In contrast, both the Pig-1-BacTaqMan and Pig-2-BacTaqMan assays gave 100% specificity and sensitivity. Of these, the Pig-2-BacTaqMan assay showed higher reproducibility. Our results regarding the specificity of these pig-specific MST assays differ from those reported in Thailand, Japan, and America. Using the PF and Pig-2-BacTaqMan assays, a field test comparing the levels of pig fecal pollution in rivers near a pig farm before and after comprehensive environmental pollution governance indicated that pig fecal pollution was effectively controlled at this location.  相似文献   
222.
• Effects of metabolic uncoupler TCS on the performances of GDMBR were evaluated. • Sludge EPS reduced and transformed into dissolved SMP when TCS was added. • Appropriate TCS increased the permeability and reduced cake layer fouling. • High dosage aggravated fouling due to compact cake layer with low bio-activity. The gravity-driven membrane bioreactor (MBR)system is promising for decentralized sewage treatment because of its low energy consumption and maintenance requirements. However, the growing sludge not only increases membrane fouling, but also augments operational complexities (sludge discharge). We added the metabolic uncoupler 3,3′,4′,5-tetrachlorosalicylanilide (TCS) to the system to deal with the mentioned issues. Based on the results, TCS addition effectively decreased sludge ATP and sludge yield (reduced by 50%). Extracellular polymeric substances (EPS; proteins and polysaccharides) decreased with the addition of TCS and were transformed into dissolved soluble microbial products (SMPs) in the bulk solution, leading to the break of sludge flocs into small fragments. Permeability was increased by more than two times, reaching 60–70 L/m2/h bar when 10–30 mg/L TCS were added, because of the reduced suspended sludge and the formation of a thin cake layer with low EPS levels. Resistance analyses confirmed that appropriate dosages of TCS primarily decreased the cake layer and hydraulically reversible resistances. Permeability decreased at high dosage (50 mg/L) due to the release of excess sludge fragments and SMP into the supernatant, with a thin but more compact fouling layer with low bioactivity developing on the membrane surface, causing higher cake layer and pore blocking resistances. Our study provides a fundamental understanding of how a metabolic uncoupler affects the sludge and bio-fouling layers at different dosages, with practical relevance for in situ sludge reduction and membrane fouling alleviation in MBR systems.  相似文献   
223.

In this study, farmland and mining ecotypes of Solanum photeinocarpum (a potential cadmium (Cd) hyperaccumulator plant) were reciprocally hybridized each other, and the Cd accumulation characteristics of the F1 hybrids were studied. In pot experiments, higher biomasses and Cd extraction abilities were found for two S. photeinocarpum F1 hybrids than for the parents, but the Cd contents in various organs were lower in the hybrids than the parents. However, the differences between the Cd contents in the two hybrids were not significant. The antioxidant enzyme (superoxide dismutase and peroxidase) activities were higher for the S. photeinocarpum F1 hybrids than the parents. Less DNA methylation was found in the hybrids than the parents because more demethylation occurred in the hybrids than the parents. The biomass, Cd content, and Cd extraction ability effects in field experiments were similar to the effects in the pot experiments. It was concluded that reciprocally hybridizing different S. photeinocarpum ecotypes improved the ability of S. photeinocarpum to be used to phytoremediate contaminated land.

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224.
采用两种不同运行模式的间歇曝气序批式活性污泥反应器(IASBR)处理农村废水,反应器连续稳定运行235d,考察了5个工况下,缺氧/好氧循环次数、进水碳氮比(C/N,质量比)、水力停留时间(HRT)等对总有机碳(TOC)、氨氮、TN、TP去除效果的影响。在进水C/N低时,缺氧/好氧循环次数为4的1~#IASBR的脱氮效率及稳定性明显比缺氧/好氧循环次数为2的2~#IASBR高,而脱碳和除磷效果无显著差异。氨氮去除方面,在进水C/N较低的工况1(C/N平均为2.3)、工况2(C/N平均为2.2)和工况4(C/N平均为2.0)下,1~#IASBR的出水氨氮质量浓度明显比2~#IASBR更低,而在进水C/N相对较高时两者无显著差异。TN去除与氨氮去除有类似规律。构建以进水TOC、氨氮、TN、TP、C/N和HRT、缺氧/好氧循环次数为输入的反向传播人工神经网络(BP-ANN)模型,对TOC、氨氮、TN、TP的去除率进行模拟预测,结果显示以上4个输出参数在训练组中的预测结果和实际检测结果之间绝对平均误差分别为2.65%、5.27%、3.56%、34.56%,在测试组中的预测结果和实际检测结果之间绝对平均误差分别为2.74%、3.40%、5.13%、28.32%。  相似文献   
225.
226.
以土-膨润土为阻隔材料,使用硅灰及水泥对其进行固化改性,研究改性后阻隔墙对离子型稀土矿原地浸矿氨氮污染的阻控效果。通过了解阻隔墙材料的渗透性能、力学性能,并结合阻隔材料对氨氮的吸附效果、穿透效果和数值模拟结果,探讨改性土-膨润土阻隔材料对氨氮污染的阻控性能。结果表明:硅灰改性土-膨润土阻隔材料,最佳质量配比为硅灰∶土=1∶10,最佳含水率为67.80%;改性阻隔材料生成的铝硅酸盐提高了阻隔墙防渗性能,渗透系数为2.36×10~(-9) m·s~(-1);CaCO_3提高了材料的力学性能,使抗压强度达到0.896 MPa;改性阻隔材料对氨氮的吸附过程符合准二级动力学模型及Langmuir等温模型。这说明该吸附过程以化学吸附为主,并且该吸附是放热过程。在不同氨氮浓度的穿透下,渗透系数呈逐渐减小的趋势,实验期间并未达到穿透浓度。利用Visual MODFLOW数值模型对阻隔墙的阻控效果进行模拟发现,7 300 d后NH_4~+扩散范围小,未穿透阻隔墙。硅灰改性土-膨润土阻隔墙用于对离子型稀土矿氨氮污染阻控的效果较好。  相似文献   
227.
生态环境重大工程项目是中国生态环境保护规划实施的重要抓手,工程实施与管理的科学性和可行性是提高资金使用效率和确保项目发挥环境效益的关键,因此,系统构建生态环境保护重大工程项目管理制度具有必要性和现实意义。结合国家现行政策,在实际调研的基础上,梳理了现有生态环境保护重大工程项目管理制度,分析了地方重大工程项目管理现状,识别了目前生态环境保护重大工程项目管理的存在问题,据此提出了完善生态环境保护重大工程项目制度的建议框架,以期为实现新时代生态环境保护目标提供支撑。  相似文献   
228.
太湖蓝藻水华是广为关注的环境问题,迫切需要实现蓝藻水华的动态监测。利用静止轨道海洋水色遥感器(GOCI)遥感数据构建了太湖叶绿素a反演的三波段模型,使用归一化植被覆盖指数(NDVI)进行蓝藻水华监测,并进行了富营养化评价。结果表明:(1)三波段模型优于波段比值模型,可以用于GOCI遥感数据反演太湖叶绿素a浓度。(2)2019年6月3日太湖叶绿素a大致呈湖心和西部浓度低,北部和西南沿岸浓度高的空间分布;从10:15至15:15,叶绿素a浓度先升高后降低。(3)竺山湖和椒山周边水域水华聚集情况较为严重,是当天重度水华的主要发生区域;水华的时间变化规律同叶绿素a浓度变化规律一致。(4)对2019年4月和6月的GOCI遥感数据进行富营养化评价发现,太湖富营养化水平总体呈西部高东部低、北部高南部低、边缘高中间低的趋势;6月较4月富营养化水平明显加剧。  相似文献   
229.
随着新能源汽车工业的快速发展,废旧三元动力锂电池的量在不断地增加。三元动力锂电池中含有丰富的Co、Mn、Li和Ni资源,回收三元动力锂电池是防止环境污染和回收贵重金属的理想选择。利用抗坏血酸(C6H8O6)的酸性和还原性对废旧三元锂电池正极材料进行浸出,KMnO_4的强氧化性回收浸出液中的Co制备β-CoC_2O_4·2H_2O,采用浓度为1.3 mol·L~(-1)的C_6H_8O_6,在60℃的条件下对正极材料浸出20 min,向浸出夜中加入1 mol·L-1的H_2SO_4反应20 min后加入KMnO_4继续反应1 h,制得β-CoC_2O_4·2H_2O。实验结果表明,Co的回收率达91%,Li的浸出率可达96.4%,Mn和Ni完全浸出,可实现简单环保地浸出有价金属并回收Co。  相似文献   
230.
目前测定苦味酸的国标方法为《生活饮用水标准检验方法有机物指标》(GB/T 5750.8—2006)中的衍生物-液液萃取-气相色谱法,在实际测试过程中,发现水样pH值和基质效应会影响苦味酸测定。当pH值为8~12时,生成的氯化苦响应强度变化不大;在pH约为13时,响应强度最大。水质中除腐殖酸、硝基甲烷及2,4,6-三硝基甲苯会影响苦味酸测定外,硝基酚类和甲基酚类同样起到正干扰作用,因此,国标方法不能全面和准确地测定水中的苦味酸含量。  相似文献   
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