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1.
生物炭灰分和碳结构在抗生素吸附过程中的影响尚不明确。本文以玉米芯为原料,在300~800 ℃下热解制备生物炭(CBCs)及除灰分生物炭(CBCs_AW),研究热解温度对生物炭灰分和碳结构的影响,探究灰分和碳形态与四环素(TC)吸附行为之间的关系。结果表明,随着热解温度升高,生物炭的碳结构由未完全碳化有机质(300 ℃)逐渐转化为石墨碳结构(800 ℃),吸附实验结果显示CBC800_AW的吸附量最大,证实石墨碳结构是促进TC吸附量增加的重要因素。CBCs_AW对TC吸附量高于CBCs,说明灰分对TC吸附有一定抑制作用。分析TC吸附性能与生物炭理化性质的相关性,结果显示吸附量与生物炭比表面积、孔体积、芳香性和石墨化程度相关性较高,推测TC的主要吸附机理为孔隙填充作用和π-π电子供体-受体相互作用。研究结果可为生物质资源化利用和抗生素污染修复提供科学依据。  相似文献   
2.
为探究NaHCO3前处理对不同种类生物炭性质及其磷吸附能力的影响,借助元素分析、光电子能谱、孔径分析、扫描电镜等手段对比处理前后秸秆、壳核及其他3类生物炭表面特性和孔结构的差异,基于吸附等温线和Freundlich与Dubinin-Radushkevich模型拟合,探讨生物炭性质控制磷吸附的机理。结果表明:NaHCO3前处理总体提高了各类生物炭的比表面积和孔体积,增幅分别为2.70%~110.84%和1.42%~123.80%,提高其芳香性(C=C),H/C增幅为5.56%~29.41%,同时降低了极性官能团(C—O和C=O)含量,极性指数[(O+N)/C]降幅为13.18%~46.34%。原始生物炭的磷释放量范围为78.33~568.33 mg·kg-1,NaHCO3前处理显著增加各类生物炭对磷的吸附,使其表现出近似的磷吸附能力(Freundlich吸附系数KF范围为119~254 mg1-n·Ln·kg-1)...  相似文献   
3.
安徽省蓝舌病流行病学调查   总被引:2,自引:0,他引:2  
1987~1991年,安徽省的三个县发生了绵羊的蓝舌病,并经病毒分离、鉴定证实。绵羊的发病率为33.0%,病死率11.3%。对反刍家畜的血清学调直显示,疫区中的阳性率高于非疫区。黄牛、水牛、绵羊的阳性率无统计学差异,均明显高于山羊及乳牛;美利奴绵羊的阳性率高于考力代及罗姆尼;放牧羊群的阳性率高于舍饲;无明显的年龄差异。调查得本省库蠓12种,尖喙库蠓、原野库蠓及日本库蠓为本省嗜畜的优势种。分析认为:原野库蠓是最可疑的媒介昆虫,水牛、黄牛是本省蓝舌病病毒越冬的保毒宿主。  相似文献   
4.
The persistence and dissipation behaviour of tebufenozide, an ecdysone agonist, were investigated: (1) under laboratory conditions in aquatic models set up in glass aquaria, and (2) under field conditions in in-situ aquatic enclosures deployed in a mixed-wood boreal forest lake. Two models were set up in the laboratory study (Study I), which was conducted at constant conditions of temperature, water pH and photoperiod. In Model I, partitioning of tebufenozide from sediment, treated at a concentration of 1400 μg kg-1, into untreated water was examined. The results showed that the chemical moved very little from the treated sediment into water. The concentration in sediment and water decreased gradually during the 90-day incubation period. Tebufenozide disappeared faster from the top layer of sediment than from the middle and bottom layers. The half-lives of disappearance were 64 days for the top layer but >90 days for the middle and bottom layers respectively. In Model II, partitioning from water, treated at a concentration of 350 μg litre-1, into untreated sediment was investigated. The results showed that the chemical moved from treated water into sediment due to adsorption. Little vertical downward movement of the adsorbed residues from the top layer of sediment occurred into layers beneath. The adsorbed residues were also not released readily back into water. The concentration in water and sediment decreased gradually during the 90-day incubation period. The half-life of dissipation from water was 67 days. The field microcosm study (Study II), conducted under fluctuating conditions of temperature, water pH and photoperiod, involved application of tebufenozide onto aquatic enclosures at four concentrations of 0·05, 0·10, 0·26 and 0·5 mg litre-1. This study also showed that the chemical moved downwards from the applied location and was adsorbed onto sediment. The chemical persisted longer in Study II than in Study I. Tebufenozide, being photo-labile, probably degraded faster after constant exposure to light in Study I than after exposure to fluctuating light in Study II. At 90 days after treatment in Study I, only about 55% of the applied material persisted in the sediment, and there was little accumulation. In Study II, the material not only persisted but also was accumulated in the sediment, since at 92 days post-treatment the residues were about 25 times higher than the applied concentration level. Residues in water also decreased more rapidly in Study I than in Study II, because the concentration at 90 days post-treatment was about 41% of the applied value. In Study II, however, about 65% of the applied chemical persisted in water at 92 days post-treatment. While the long persistence of tebufenozide in both the laboratory and field studies was attributable to its low vapour pressure, low water solubility, high octanol/water partition coefficient etc., the differences in the persistence characteristics observed in the two studies were due to the fluctuating environmental conditions and water pH encountered in the field study, compared with the constant environmental conditions and water pH utilized in the laboratory study. © 1997 SCI.  相似文献   
5.
Abstract

Magnesium (Mg) is an essential macronutrient element for all living organisms, but literature reports of Mg deficiency in agriculture and forestry appear regularly. In many tropical areas, Mg is added to soils by using dolomitic limestone and as minor additions through impurities in some fertilizers. Minimal information is available on the Mg status of Fiji soils, and deficiencies have been observed in some crops. This study investigated the Mg status of a range of Fiji soils and found that major agricultural soils of Fiji contain variable amounts of Mg, both in the total concentrations and in the different forms of the element present. The variations can be related to the soil parent materials, degree of weathering, clay content, and mineralogy. Low plant‐available Mg concentrations are present in many of the highly weathered soils with limited reserves present. Development of intensive agriculture should consider Mg when developing fertilizer programs.  相似文献   
6.
农业是新疆水资源消耗最大的产业。本研究应用水足迹理论对新疆83个县市主要农作物的生产水足迹进行研究分析,比较不同作物之间生产水足迹的差异,探讨新疆农业生产水足迹在空间上的变化规律。研究结果表明,全疆2014年主要农作物生产水足迹总量为355.47×108m3,其中主要为蓝水足迹,所占比例高达91.31%;绿水足迹极低,所占比例仅为8.69%。7种主要作物生产水足迹由高到低分别是棉花,向日葵,小麦,水稻,玉米,苜蓿以及甜菜。水足迹空间分布在不同区域差异显著,南疆以及伊犁地区的生产水足迹总量相对较高,二者总量为243.46×108m3,东疆和北疆地区水足迹总量相对较低,二者总量为112.01×108m3,总体呈现出西南高东北低的分布趋势。  相似文献   
7.
正小麦蓝矮病(Wheat blue dwarf,WBD)是我国西北麦区一种重要植原体病害,在我国西部地区危害严重。该病害由异沙叶蝉(Psammotettix alienus L.)专化性传播,介体传毒成为病害流行的重要中心环节[1]。本实验室前期通过免疫荧光标记研究发现WBD植原体免疫膜蛋白(immunodominant membrane protein, IMP)与介体异沙叶蝉肌动蛋白互作,说明IMP在植原体传播和致病过程中起关键作用。  相似文献   
8.
几种有机酸对恒电荷和可变电荷土壤吸附Cu2+的影响   总被引:15,自引:3,他引:15       下载免费PDF全文
以恒电荷土壤(黄褐土和黄棕壤)和可变电荷土壤(红壤和砖红壤)为供试材料,研究了乙酸、草酸、酒石酸和柠檬酸对土壤吸附重金属铜离子(Cu2 )的影响。结果表明,在相同酒石酸浓度下,土壤对酒石酸的吸附量依次为黄棕壤(2 1 8mmolkg-1) >红壤(15 4mmolkg-1) >砖红壤(9 5mmolkg-1) ,土壤吸附有机酸后负电荷量增加,相同条件下增幅为砖红壤>红壤>黄棕壤;无有机酸配体时,供试土壤对Cu2 的吸附量为黄褐土>黄棕壤>砖红壤>红壤;加入有机酸时,随有机酸浓度增高,土壤对Cu2 的吸附一般表现为“峰”形曲线,峰所对应的有机酸浓度因有机酸类型而异,且随土壤可变电荷性质增强而增高;土壤吸附有机酸后对Cu2 的次级吸附不同于有机酸与铜共存时的竞争吸附,且因土壤性质表现迥异。这些结果意味着在存在有机酸配体的根际环境中,恒电荷土壤与可变电荷土壤对Cu2 的吸附明显不同,并将影响重金属离子在根际的转化与有效性  相似文献   
9.
基于响应曲面法探究了马来酸酐浓度、四硼酸钠浓度和溶液静置时间对糠醇处理材吸湿性的影响。结果表明:(1)各因素对糠醇处理材吸湿性的影响程度为:四硼酸钠浓度>马来酸酐浓度>溶液静置时间。其中,四硼酸钠浓度和马来酸酐浓度具有显著性影响,且两者交互作用对吸湿率影响较大;溶液静置时间的影响不显著。(2)糠醇处理材的吸湿率随马来酸酐浓度增大,呈现先降低后升高的趋势;而四硼酸钠浓度增加,糠醇溶液虽然储存稳定性提高,但导致处理材吸湿性增大。(3)优化工艺条件为:马来酸酐浓度3.02%,四硼酸钠浓度1.03%,溶液静置时间3.8h。吸湿率的预测值与实验值误差约1%,预测效果较好。  相似文献   
10.
In this study, a non‐programmable freezing technique has been developed with the strip spawned blue mussel (Mytilus galloprovincialis) sperm. The key parameters optimized including (1) cryoprotectant agents (CPAs); (2) cooling temperature; (3) thawing temperature; (4) sugar and amino acid supplementation and (5) sperm to egg ratio. The fertilization rate and/or integrity of plasma membrane and acrosome were used as sperm quality assessment indicators. The highest post‐thaw sperm fertilization rate of 95% was achieved, when sperm were cryopreservated in 8% dimethyl sulfoxide at 7.8 cm above the liquid nitrogen surface and thawed in a 60°C seawater bath. The addition of glucose, sucrose or trehalose in dimethyl sulfoxide did not, whereas 0.8% glycine did significantly improve the post‐thaw sperm fertilization rates. The fluorescent evaluation has demonstrated that the addition of glycine significantly improved the post‐thaw sperm acrosome integrity, revealing a positive role of glycine in the improvement of post‐thaw sperm quality in blue mussels.  相似文献   
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