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341.
• The rice growth was promoted by nano-TiO2 of 0.1–100 mg/L. • Nano-TiO2 enhanced the energy storage in photosynthesis. • Nano-TiO2 reduced energy consumption in carbohydrate metabolism and TCA cycle. Titanium dioxide nanoparticle (nano-TiO2), as an excellent UV absorbent and photo-catalyst, has been widely applied in modern industry, thus inevitably discharged into environment. We proposed that nano-TiO2 in soil can promote crop yield through photosynthetic and metabolic disturbance, therefore, we investigated the effects of nano-TiO2 exposure on related physiologic-biochemical properties of rice (Oryza sativa L.). Results showed that rice biomass was increased >30% at every applied dosage (0.1–100 mg/L) of nano-TiO2. The actual photosynthetic rate (Y(II)) significantly increased by 10.0% and 17.2% in the treatments of 10 and 100 mg/L respectively, indicating an increased energy production from photosynthesis. Besides, non-photochemical quenching (Y(NPQ)) significantly decreased by 19.8%–26.0% of the control in all treatments respectively, representing a decline in heat dissipation. Detailed metabolism fingerprinting further revealed that a fortified transformation of monosaccharides (D-fructose, D-galactose, and D-talose) to disaccharides (D-cellobiose, and D-lactose) was accompanied with a weakened citric acid cycle, confirming the decrease of energy consumption in metabolism. All these results elucidated that nano-TiO2 promoted rice growth through the upregulation of energy storage in photosynthesis and the downregulation of energy consumption in metabolism. This study provides a mechanistic understanding of the stress-response hormesis of rice after exposure to nano-TiO2, and provides worthy information on the potential application and risk of nanomaterials in agricultural production.  相似文献   
342.
Environmental Science and Pollution Research - Elucidating the bacterioplankton spatial distribution patterns and its determinants is a central topic in ecological research. However, research on...  相似文献   
343.
Environmental Science and Pollution Research - The impact of soil lead (Pb) pollution on survival, growth, and reproduction of the collembolan, Folsomia candida, and Pb compartmentation in its gut...  相似文献   
344.
The paper focuses on studying the conversion of rice husks and sawdust into liquid fuel. Rice husks, sawdust and their mixture are pyrolyzed at temperatures between 420 and 540 degrees C, and the main product of liquid fuel is obtained. The experimental result shows that the yield of liquid fuel depends on various factors such as feedstock and temperature. The maximum yields for rice husks, sawdust and their mixture are 56%, 61% and 60% at 465, 490 and 475 degrees C, respectively. Analyses with GC-MS and other apparatus show that the liquid fuel is a complicated compound with low caloric value and can be directly used as a fuel oil for combustion in a boiler or a furnace without any upgrading. Alternatively, the fuel can be refined to be used by vehicles.  相似文献   
345.
钢渣具有高碱度的特点,当碱度>2时转炉渣中的氧化钙将有一部分以游离氧化钙的形式存在。游离氧化钙是造成转炉渣膨胀的主要因素。本试验采用压蒸法测定了高炉渣和转炉渣的膨胀性,考虑了粒度和陈化时间对转炉渣膨胀性的影响,为高炉渣和转炉渣的应用提供依据。  相似文献   
346.
利用废渣盐石膏制作轻型墙体材料   总被引:1,自引:1,他引:0  
马铭杰  朱丽 《环境工程》2006,24(5):53-55
研究利用海盐化工产生的废渣盐石膏经过一定工艺处理,生产轻型墙体材料盐石膏空心条板,该产品与天然石膏空心条板相比,原料采用及生产工艺都有较大改进,生产成本却大幅度下降。经测试,该产品完全可替代天然石膏空心条板,技术性能指标达到了国家规定的相关标准。  相似文献   
347.
蜡防印花生产废水处理工程扩改设计   总被引:1,自引:1,他引:0  
对蜡防印花生产废水处理工程进行扩改设计,实际结果表明:机械洗蜡废水分流后经双级气浮处理,蜡回收率和处理水回用率可达90%以上;皂化脱蜡废水分流后采用酸化-气浮处理,蜡回收率可达95%以上,出水与印花水洗废水经微电解脱色,脱色率可达85%以上;混合废水经混凝气浮-生物接触氧化-沉淀-过滤组合工艺处理,出水达标排放。该处理工艺效率高,效果稳定,经济效益和环境效益高。  相似文献   
348.
朱杰  付永胜 《环境工程》2006,24(4):76-78
采用ABRSBR组合工艺开展了大量现场模拟试验及动力学理论研究,最终获得了进一步提高肉类加工废水脱氮效率的措施途径。通过对已建成、正调试、正设计3种情况下肉类加工废水脱氮工艺的研究,表明此脱氮工艺具有良好的工程应用价值。  相似文献   
349.
覃玉  朱景利  王艳辉 《化工环保》2006,26(6):491-493
用4种无机絮凝剂和3种有机絮凝剂进行了脱除全白土催化剂生产废水(简称废水)中固体悬浮物(SS)的实验研究。实验结果表明:在废水pH6.8条件下,无机絮凝剂和有机絮凝剂脱除废水中SS的效果均较差,用无机絮凝剂时的SS去除率低于26%,用有机絮凝剂时的SS去除率低于18%;废水pH对SS去除率的影响较大,当调节废水pH为8.0时,无机絮凝剂中硫酸铝脱除废水中的SS效果最好,在硫酸铝加入量为0.02mg/L、沉降时间为2h的最佳操作条件下,SS的去除率可达93%。  相似文献   
350.
Wang  Jiaqing  Lu  Pei  Su  Wei  Xing  Yi  Li  Rui  Li  Yuran  Zhu  Tingyu  Yue  Huifang  Cui  Yongkang 《Environmental science and pollution research international》2019,26(20):20248-20263

Currently, activated coke is widely used in the removal of multiple pollutants from industrial flue gas. In this paper, a series of novel FexLayOz/AC catalysts was prepared by the incipient wetness impregnation for NH3-SCR denitrification reaction. The introduction of Fe-La bimetal oxides significantly improved the denitrification performance of activated coke at mid-high temperature, and 4% Fe0.3La0.7O1.5/AC exhibited a superior NOx conversion efficiency of 90.1% at 400 °C. The catalysts were further characterized by BET, SEM, XRD, Raman, EPR, XPS, FTIR, NH3-TPD, H2-TPR, et al., whose results showed that the perovskite-type oxide of LaFeO3 and oxygen vacancies were produced on the catalysts’ surfaces during roasting. Fe-La doping enhanced the amount of acid sites (mainly Lewis and other stronger acid sites) and the content of multifarious oxygen species, which were beneficial for NOx removal at mid-high temperature. Moreover, it was investigated that the effect of released CO from activated coke at mid-high temperature on the NOx removal through the lifetime test, in which it was found that a large amount of CO produced by pyrolysis of activated coke could promote the NOx removal, and long-term escaping of CO on the activated coke carrier did not have a significant negative impact on catalytic performance. The results of the TG-IR test showed that volatile matter is released from the activated coke while TG results showed that the weight loss rate of 4% Fe0.3La0.7O1.5/AC only was 0.0015~0.007%/min at 300–400 °C. Hence, 4% Fe0.3La0.7O1.5/AC had excellent thermal stability and denitrification performance to be continuously used at mid-high temperature. Finally, the mechanisms were proposed on the basis of experiments and characterization results.

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