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121.
为研究水田土壤中氮的行为,施给15NH4 或15NO3-标记的硝胺(NH415NO3或15NH4NO3)的沙壤土(Shirasu soil)添充在根箱里,对Japonica水稻(品种Hinohikari)进行温室栽培6周.收割后,水稻植株分地上部和根部,对各自的全氮,15N atom%进行测定.根箱各区域的土壤按着鲜土形态进行采取后,对此全氮,NO3-N,水溶性NH4-N,KCl抽出NH4-N和其各自的15N atom%进行测定.研究结果表明,土壤全氮含量与栽培前相比,在非根际明显降低,但在根际比非根际要高,保持了与栽培前相同的水平.土壤NO3-N浓度从非根际到根际递增,但与其栽培前相比显著地降低,在整个根箱里,施给NO3-N的79%为因脱氮而损失.土壤中NO3-N的大部分来自于土壤氮化合物,来自施肥的比例却较低,尤其是在根际.反而,施给NO3-N的残存率约仅为16%左右,但其中有机态氮所占的比率在非根际里55%~86%,在根际却达到了93%.土壤水溶性NH4-N和KCl抽出NH4-N浓度靠近根际逐渐降低,而且在非根际两者匀由1∶10的比例存在,但在根际里水溶性NH4-N没被检索到.在非根际里,土壤KCl抽出NH4-N的35%~66%为来自施肥,但其比例在根际里却降到15%左右.在土壤中残存的来自施给NH4-N的氮化合物之中,有机态氮所占的比例在非根际里约为11%~65%,但在根际却达到了92%.以上结果表明,在水稻根际,氮的无机化和有机化的活性比非根际显著.  相似文献   
122.
交联阳离子淀粉的合成及其对重金属离子的吸附   总被引:9,自引:4,他引:5  
通过正交实验合成了取代度为0.568的交联阳离子淀粉。考察了溶液pH、螯合剂用量、重金属离子初始浓度对交联阳离子淀粉去除重金属离子效果的影响。当重金属离子初始质量浓度为50mg/L、螯合剂投加量为0.5g/U时,Pb^2 ,Cu^2 ,Cr^3 在溶液pH为6时的去除率达到最高,分别为97.94%,99.46%,84.30%,而Cd^ 在溶液pH为7时的去除率达到最高,为99.36%。实验结果表明,交联阳离子淀粉是一种有效去除废水中重金属的处理剂。  相似文献   
123.
共混塑料因其用途广泛且价格低廉,生产和使用量逐渐增加,然而共混塑料在海水中光降解及其海洋环境风险尚不明确.选取聚丙烯/热塑性淀粉共混塑料(PP/TPS)和聚乳酸/对苯二甲酸-己二酸丁二醇酯/热塑性淀粉共混塑料(PLA/PBAT/TPS)为研究对象,单一聚合物塑料聚丙烯(PP)和聚乳酸(PLA)作为对照,探究共混塑料在海水中光降解后微塑料(MPs)的形成和物理化学性质的变化.MPs的粒径分布显示,与PP和PLA相比,PP/TPS和PLA/PBAT/TPS光降解后容易产生尺寸更小的颗粒,主要原因是共混塑料机械性能和抗紫外线能力较差.共混塑料光降解后表面出现更多裂纹和褶皱,表面形貌发生明显变化,而PP和PLA变化不明显.ATR-FTIR光谱显示PP/TPS和PLA/PBAT/TPS光降解后热塑性淀粉(TPS)的特征峰减小,表明共混塑料的淀粉组分降解.C 1s光谱表明,老化共混塑料含有更少的—OH,进一步证实了TPS的光降解.以上结果表明PP/TPS和PLA/PBAT/TPS比PP和PLA光降解程度更高,从而产生更多小粒径MPs.综上所述,共混塑料可能比单一聚合物塑料对海洋环境风险更高,对共混塑料的生产和使用应谨慎.  相似文献   
124.
微生物絮凝剂的研究进展及应用现状   总被引:1,自引:0,他引:1  
絮凝(混凝)技术是一种既经济、简便又最普遍使用的处理方法。目前,研制高效无毒的絮凝剂成为环境科学与工程领域中的重要内容。介绍微生物絮凝剂在环境中的应用优势以及国内外对微生物絮凝剂的应用现状,论述其在印染废水、啤酒废水、味精废水和淀粉废水中的应用,并提出今后微生物絮凝剂的发展前景及方向。  相似文献   
125.
Mercury (Hg) in rice is drawing mounting concern since methylmercury (MeHg) was found capable of accumulating in rice. In-vitro bioaccessibility is a feasible and reliable method to assess the health effects of Hg in rice and has been utilized in a number of studies. This study was done to investigate the impact of cultivar, planting location, and cooking on the total mercury (THg) and MeHg bioaccessibility of rice, for which multiple statistical analysis methods were used to analyze the significance of their effects. The THg concentrations of rice samples taken from non-Hg contaminated areas of China were all below 15 ng/g and their MeHg concentrations were below 2 ng/g. Cooking could significantly reduce the MeHg bioaccessibility of rice because the MeHg was mainly combined with protein and the protein will be denatured during the cooking process, and then the denatured MeHg is difficult to be dissolved into the liquid phase. Indica- and japonica-type rice cultivars did not show significant differentiation in either the concentration of Hg or its bioaccessibility. However, the glutinous rice type differed significantly from the above rice types, and it showed greater bioaccessibility of THg and MeHg due to its distinct protein contents and starch properties. Planting location can affect the Hg concentration in rice and THg bioaccessibility but has a limited impact on MeHg bioaccessibility. Based on these results, two macro factors (rice cultivar, planting location) are presumed to impact Hg bioaccessibility by how they affect micro factors (i.e., Hg forms).  相似文献   
126.
Methylmercury (MeHg) production in paddy soils and its accumulation in rice raise global concerns since rice consumption has been identified as an important pathway of human exposure to MeHg. Sulfur (S) amendment via fertilization has been reported to facilitate Hg methylation in paddy soils under anaerobic conditions, while the dynamic of S-amendment induced MeHg production in soils with increasing redox potential remains unclear. This critical gap hinders a comprehensive understanding of Hg biogeochemistry in rice paddy system which is characterized by the fluctuation of redox potential. Here, we conducted soil incubation experiments to explore MeHg production in slow-oxidizing paddy soils amended with different species of S and doses of sulfate. Results show that the elevated redox potential (1) increased MeHg concentrations by 10.9%−35.2%, which were mainly attributed to the re-oxidation of other S species to sulfate and thus the elevated abundance of sulfate-reducing bacteria, and (2) increased MeHg phytoavailability by up to 75% due to the reductions in acid volatile sulfide (AVS) that strongly binds MeHg in soils. Results obtained from this study call for attention to the increased MeHg production and phytoavailability in paddy soils under elevated redox potentials due to water management, which might aggravate the MeHg production induced by S fertilization and thus enhance MeHg accumulation in rice.  相似文献   
127.
为获得多孔纳米CeO2(氧化铈),以淀粉为生物模板,以Ce(NO33·6H2O为铈源,在温和条件下制备出海绵状的多孔纳米CeO2,同时考察了焙烧温度、碱液、铈源投加量对样品形貌的影响.利用XRD(X射线衍射光谱)、SEM(扫描电镜)、N2吸附-脱附等表征手段对合成的多孔纳米CeO2进行物相组成、微观形貌及孔径大小分布的分析.通过湿式催化过氧化试验,探究其对腈纶废水中有机物CODCr的催化降解性能.结果表明:①所制备的多孔纳米CeO2具有多孔结构,孔径分布范围为2~4 nm,孔容为0.225 cm3/g,BET比表面积为256.426 m2/g;②多孔纳米CeO2的最佳制备条件为1 g淀粉溶解于20 mL水中,加入0.02 mol Ce(NO33·6H2O,以5%的氨水调节前驱体混合液pH,以1℃/min升至400℃,焙烧4 h,得到海绵状的多孔纳米CeO2.③以不同形貌的CeO2作为湿式催化反应中的催化剂,催化降解腈纶废水中有机物,其中以制备的多孔纳米CeO2催化性能最佳,CODCr去除率可达82.5%.研究显示,焙烧温度、碱液、铈源投加量均可影响样品的形貌,在湿式催化过氧化处理腈纶废水试验中,多孔纳米CeO2能显著提高废水CODCr的去除率.   相似文献   
128.
采用液相Na BH4还原法,制备出淀粉负载纳米铁镍双金属(淀粉/ZVI-Ni)和淀粉负载纳米铁镍铜三金属复合材料(淀粉/ZVI-Ni-Cu),并采用XRD、SEM、BET、XRF等仪器对其性能进行表征;进而对比其与纳米零价铁(ZVI)、淀粉负载零价铁(淀粉/ZVI)对三氯乙烯和氯仿的降解效果及影响淀粉/ZVI-Ni-Cu降解氯代烃的因素.结果表明:通过双金属和三金属的掺杂,可有效提高复合材料对氯代烃的降解,其降解效能关系为:淀粉/ZVI-Ni-Cu淀粉/ZVI-Ni/淀粉/ZVIZVI.其中淀粉/ZVI-Ni-Cu三金属复合材料在48 h内可实现氯代烃的完全降解.由于淀粉载体的加入,使得纳米金属材料成功地负载在淀粉上,复合材料的抗氧化性增强了,降解效果也更稳定可靠.  相似文献   
129.
Lignocellulosic biomass offers the most abundant renewable resource in replacing traditional fossil resources. However, it is still a major challenge to directly convert the lignin component into value-added materials. The availability of plentiful hydroxyl groups in lignin macromolecules and its unique three-dimensional structure make it an ideal precursor for mesoporous biosorbents. In this work, we reported an environmentally friendly and economically feasible method for the fabrication of mesoporous lignin-based biosorbent (MLBB) from lignocellulosic biomass through a SO3 micro-thermal-explosion process, as a byproduct of microcrystalline cellulose. BET analysis reveal the average pore-size distribution of 5.50 nm, the average pore value of 0.35 cm3/g, and the specific surface area of 186 m2/g. The physicochemical properties of MLBB were studied by fourier transform infrared spectroscopy (FTIR), attenuated-total-reflection fourier transform infrared spectroscopy (ATR-FTIR), X-ray photoelectron spectroscopy (XPS), and element analysis. These results showed that there are large amounts of sulfonic functional groups existing on the surface of this biosorbent. Pb(II) was used as a model heavy-metal-ion to demonstrate the technical feasibility for heavy-metal-ion removal. Considering that lignocellulosic biomass is a naturally abundant and renewable resource and SO3 micro-thermal-explosion is a proven technique, this biosorbent can be easily produced at large scale and become a sustainable and reliable resource for wastewater treatment.  相似文献   
130.
稻草改性的红外光谱分析   总被引:4,自引:0,他引:4  
利用红外光谱对稻草改性的生成物进行分析,可以确定纤维素是否发生改变及生成何种物质.  相似文献   
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