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481.
铁基硅盐对土壤环境镉砷赋存形态及转化影响   总被引:1,自引:0,他引:1  
为探明铁基硅盐对土壤镉砷赋存形态影响及各形态间转化规律,采用室内长期淹水培养吸附实验,研究不同比例铁硅材料对土壤离子态镉砷活性影响;筛选适宜铁基硅盐(FS)配比同时添加腐殖酸(FSC)和金属氧化物(FSCa),明确复配处理土壤中镉砷分级形态转化程度.结果显示,铁:硅比值增加10%,土壤pH值平均降低0.35;F2-S8处理土壤离子态镉降幅71%;F10-S0处理土壤离子态砷降低59.9%,离子态镉砷含量与硅酸盐-铁盐施用量互呈反比;处理F4-S6和F6-S4之间镉、砷钝化率产生交点,约为25%~30%.土壤中镉主要以可溶态为主,占比58%;砷主要以铁铝氧化态和钙结合态为主,占比40%和23%.铁硅比例为5:5或5.5:4.5左右复配能有效将铝结合态砷和铁铝氧化态砷转变为钙结合态砷和残渣态砷,可溶态镉转化为碳酸盐结合态镉以及铁锰氧化态镉,同步降低土壤中镉砷的活性.  相似文献   
482.
韦彦汀  李思佳  张华 《中国环境科学》2022,42(10):4807-4816
利用2008~2018年成渝城市群内16个城市的面板数据,运用空间自相关和时空地理加权回归模型,探究了城市群碳排放的时空演变格局,揭示了碳排放影响因素的时空异质性.结果表明,成渝城市群碳排放整体呈增长态势,总量由5亿t增加到6.6亿t,增速约为1500t/a,地均碳排放量和人均碳排放量也存在波动上涨趋势.碳排放总量热点区域集中在成都和重庆,分别占总量约20%和25%,冷点区域为雅安市.碳排放总量和地均碳排放均存在显著的空间差异,人均碳排放的莫兰指数为正,呈现明显的空间聚集格局.整体上,人均碳排放表现出东北低-西南高的空间结构特征,南充,遂宁,广安是低低聚集区域.城市群中各个城市的影响因素显示出时空异质性,能源强度、经济发展水平、人口规模对城市的碳排放都有明显正向作用,在成渝中西部城市作用强度大;而城市化水平的正向影响较弱,对成渝东部城市影响较强.  相似文献   
483.
采用烧结杯试验,从固体燃烧角度出发,探究燃料结构和粒度对燃烧前锋温度及烧结气氛变化的影响。结果表明:随着燃料中煤粉比例逐渐提高(0~100%),烧结速度提高至4.32 mm/min,利用系数提高至0.13 t/(m2·h);转鼓强度先上升后下降,当煤粉比例为25%时,转鼓指数达到最高(58.4%);烟气中NOx浓度与CO成分分别提高28.34 mg/m3和0.72%,CO能促进NO的还原反应,抑制NOx生成。全煤条件下,随着煤粉粒径<1 mm的质量分数由50%降低到10%,烟气中NOx降低了51.33 mg/m3,提高燃料粒度可降低烟气NOx排放浓度;而延长烧结时间,NOx总排放量上升。研究结果可为烧结燃料选择及烟气减排提供参考。  相似文献   
484.
Excessive livestock grazing degrades grasslands ecosystem stability and sustainability by reducing soil organic matter and plant productivity. However, the effects of grazing on soil cellulolytic fungi, an important indicator of the degradation process for soil organic matter, remain less well understood. Using T-RFLP and sequencing methods, we investigated the effects of grazing on the temporal changes of cellulolytic fungal abundance and community structure in dry steppe soils during the growing months from May to September, on the Tibetan Plateau using T-RFLP and sequencing methods. The results demonstrated that the abundance of soil cellulolytic fungi under grazing treatment changed significantly from month to month, and was positively correlated with dissolved organic carbon (DOC) and soil temperature, but negatively correlated with soil pH. Contrastingly, cellulolytic fungal abundance did not change within the fencing treatment (ungrazed conditions). Cellulolytic fungal community structure changed significantly in the growing months in grazed soils, but did not change in fenced soils. Grazing played a key role in determining the community structure of soil cellulolytic fungi by explaining 8.1% of the variation, while pH and DOC explained 4.1% and 4.0%, respectively. Phylogenetically, the cellulolytic fungi were primarily affiliated with Ascomycota (69.65% in relative abundance) and Basidiomycota (30.35%). Therefore, grazing substantially reduced the stability of soil cellulolytic fungal abundance and community structure, as compared with the fencing treatment. Our finding provides a new insight into the responses of organic matter-decomposing microbes for grassland managements.  相似文献   
485.
Bimetallic oxides composites have received an increasing attention as promising adsorbents for aqueous phosphate (P) removal in recent years. In this study, a novel magnetic composite MZLCO was prepared by hybridizing amorphous Zr-La (carbonate) oxides (ZLCO) with nano-Fe3O4 through a one-pot solvothermal method for efficient phosphate adsorption. Our optimum sample of MZLCO-45 exhibited a high Langmuir maximum adsorption capacity of 96.16 mg P/g and performed well even at low phosphate concentration. The phosphate adsorption kinetics by MZLCO-45 fitted well with the pseudo-second-order model, and the adsorption capacity could reach 79% of the ultimate value within the first 60 min. The phosphate adsorption process was highly pH-dependent, and MZLCO-45 performed well over a wide pH range of 2.0-8.0. Moreover, MZLCO-45 showed a strong selectivity to phosphate in the presence of competing ions (Cl, NO3, SO42−, HCO3, Ca2+, and Mg2+) and a good reusability using the eluent of NaOH/NaCl mixture, then 64% adsorption capacity remained after ten recycles. The initial 2.0 mg P/L in municipal wastewater and surface water could be efficiently reduced to below 0.1mg P/L by 0.07 g/L MZLCO-45, and the phosphate removal efficiencies were 95.7% and 96.21%, respectively. Phosphate adsorption mechanisms by MZLCO-45 could be attributed to electrostatic attraction and the inner-sphere complexation via ligand exchange forming Zr/La-O-P, -OH and CO32− groups on MZLCO-45 surface played important roles in the ligand exchange process. The existence of oxygen vacancies could accelerate the phosphate absorption rate of the MZLCO-45 composites.  相似文献   
486.
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   
487.
The livestock breeding industries face overuse of antibiotics, which has been intensively studied in recent years. However, the occurrence and fate of antibiotics as well as their potential threats to the aquatic environments in alpine and arid regions remain unclear. This study investigated the relationship of the occurrence and concentrations of antibiotics between the Kaidu River and Bosten Lake in a typical alpine basin in China. Hot spots with antibiotic pollution source were explored. The antibiotic concentrations in river water and suspended sediment (SPS) were 2.20-99.4 ng/L and 1.03-176 ng/g. The dominant antibiotics were tetracyclines, sulphacetamide, and ofloxacin in river water and sulfonamides, clarithromycin, roxithromycin, and ofloxacin in SPS. The apparent differences in pollution sources and landscapes in different reaches led to the obvious spatial patterns of antibiotics in the Kaidu River. Higher partition coefficient of antibiotic between SPS and water phases for sulfonamides than tetracyclines was because that tetracyclines strongly responded to clay contents while sulfonamides significantly responded to organic carbon contents in SPS. There were significant differences in detected antibiotic categories between the river and the lake. Fluoroquinolones (especially ciprofloxacin and enrofloxacin) were detected in the lake while sulphacetamide was only detected in the river. Therefore, the surrounding husbandry and aquaculture around the Bosten Lake was an important antibiotic pollution source in addition to inputs from the Kaidu River. This research suggested that alpine lakes could be an important sink of antibiotics in alpine dry regions, and thus impose greater threats to the aquatic ecosystem.  相似文献   
488.
就地利用菜地改建小型湿地系统可能是实现农村生活污水消纳和资源化利用的一种有效途径,其中菜园土与吸附基质的组合直接关系水体污染物中氮磷的净化效果. 选取沸石、谷壳、活性炭、陶粒和菜园土作为试验基质,使用BET比表面积孔径分析仪、扫描电子显微镜和X射线衍射仪(EDX)对其进行表征,通过等温吸附试验分别筛选出对氮磷吸附效果较好的沸石和陶粒,设置菜园土∶陶粒∶沸石质量占比基质组合:F1(10∶0∶0)、F2(6∶2∶2)、F3(8∶1∶1)、F4(8∶2∶0)、F5(8∶0∶2)、F6(6∶1∶3)和F7(6∶3∶1). 在低、中、高3种氮磷浓度下,通过吸附动力学试验筛选出去除效果最好的基质组合. 结果表明:①5种单一基质中,活性炭、陶粒的比表面积(35.72、33.23 m2/g)和微孔体积(2.20×10?1、8.25×10?2 cm2/g)均较大;沸石和陶粒表面呈粗糙多孔结构. ②Freundlich和Langmuir等温吸附模型均能较好地拟合5种单一基质对氮磷的吸附,各基质对氮的饱和吸附量表现为沸石(2.00 mg/g)>陶粒(1.47 mg/g)>菜园土(1.17 mg/g)>活性炭(0.99 mg/g)>谷壳(0.21 mg/g),对磷的饱和吸附量表现为陶粒(1.28 mg/g)>活性炭(1.25 mg/g)>沸石(1.16 mg/g)>谷壳(0.80 mg/g)>菜园土(0.50 mg/g). ③7种基质组合对氮磷吸附具有相似的动力学特征,Elovich模型、双常数速率模型和一级反应动力学模型均能较好地模拟基质组合对不同污染负荷条件下氮磷的吸附规律. ④7种基质组合对氮磷的吸附速率均呈现先快后慢的趋势,最终于12~48 h趋于稳定. 研究显示,F2、F4和F7基质组合对氮磷的去除效果均较好,但考虑菜地改造的简易性和可操作性,F4为最佳基质组合,其在3种不同氮磷浓度下对氮、磷的吸附量分别为0.36~0.68和0.10~0.39 mg/g.   相似文献   
489.
选取1996-2010年云南省16个市州的旅游总收入为研究对象,综合运用标准差、变异系数、泰尔指数、累计比重等方法分析云南旅游总收入的总体差异,探讨近15年来全省旅游总收入在地带间、地带内和市州际的差异及其变动演进.研究表明,时间上云南省旅游总收入呈现绝对差异不断扩大但相对差异在小幅增长后逐步收敛的特征;空间上,云南省旅游总收入差异明显但不平衡特征正在逐步缩小.云南省旅游总收入的差异主要是由于地带间差异和地带内差异共同导致,地带间差异已有所缓和;滇西北、滇西南、滇东南和滇中地区是地带内差异的最重要来源;旅游资源禀赋、旅游基础设施、旅游发展政策和经济发展水平是云南省旅游总收入的时空差异及其变动的的主要原因.  相似文献   
490.
针对如何在不改变天线结构的前提下增大天线增益的问题,采用了AMC(人工磁导体)加载的方法。设计一款圆环缝隙AMC加载的天线,通过对AMC相位的改变来优化天线。设计的加载天线包括AMC和60GHz微带贴片天线,该加载天线拥有10GHz(55GHz-65GHz)的带宽和5.6dBi的增益;实验结果表明,相比没有加载之前的天线,加载天线拥有相同的带宽,其增益提高了2.9dBi。  相似文献   
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