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141.
Microbial response to CaCO3 application in an acid soil in southern China   总被引:1,自引:0,他引:1  
Calcium carbonate (CaCO3) application is widely used to ameliorate soil acidification. To counteract soil and bacterial community response to CaCO3 application in an acidic paddy soil in southern China, a field experiment was conducted with four different dosages of CaCO3 addition, 0, 2.25, 4.5 and 7.5?tons/ha, respectively. After one seasonal growth of rice, soil physicochemical properties, soil respiration and bacterial communities were investigated. Results showed that soil pH increased accordingly with increasing dose of CaCO3 addition, and 7.5?tons/ha addition increased soil pH to neutral condition. Moderate dose of CaCO3 application (4.5?tons/ha) significantly increased soil dissolved organic carbon (DOC) and dissolved organic nitrogen (DON) content, enhanced soil respiration, while the excessive CaCO3 application (7.5?tons/ha) decreased these soil properties. High-throughput sequencing results illustrated that moderate dose of CaCO3 application increased the richness and alpha diversity of soil bacterial community. Compared with control, the relative abundance of Anaerolineaceae family belonging to Chloroflexi phylum increased by 38.7%, 35.4% and 24.5% under 2.25, 4.5 and 7.5?tons/ha treatments, respectively. Redundancy analysis (RDA) showed that soil pH was the most important factor shaping soil bacterial community. The results of this study suggest that proper dose of CaCO3 additions to acid paddy soil in southern China could have positive effects on soil properties and bacterial community.  相似文献   
142.
A series of meso-microporous Cu-SAPO-34 catalysts were successfully synthesized by a one-pot hydrothermal crystallization method, and these catalysts exhibited excellent NH_3-SCR performance at low temperature. Their structure and physic chemical properties were characterized by means of X-ray diffraction patterns(XRD), Scanning electron microscopy(SEM), Transmission electron microscopy(TEM), N_2 sorption-desorption, nuclear magnetic resonance(NMR), Inductively Coupled Plasma-Atomic Emission spectrometer(ICP-AES), X-ray absorption spectroscopy(XPS),Temperature-programmed desorption of ammonia(NH_3-TPD), Ultraviolet visible diffuse reflectance spectroscopy(UV-Vis DRS) and Temperature programmed reduction(TPR).The analysis results indicate that the high activities of Cu-SAPO-34 catalysts could be attributed to the enhancement of redox property, the formation of mesopores and the more acid sites. Furthermore, the kinetic results verify that the formation of mesopores remarkably reduces diffusion resistance and then improves the accessibility of reactants to catalytically active sites. The 1.0-Cu-SAPO-34 catalyst exhibited the high NO conversion( 90%) among the wide activity temperature window in the range of 150–425℃.  相似文献   
143.
介绍了系统性HAZOP/风险矩阵/LOPA半定量安全仪表功能等级(SIL)确定方案。基于HAZOP分析和风险矩阵评估,采用LOPA方法对识别出的危害进行分析,并分析所有能阻止该场景后果发生的独立保护层。由初始事件的频率和保护层要求的失效概率得到事故发生的可能性,根据风险可接受标准,确定安全仪表系统仪表安全功能的安全完整性等级。  相似文献   
144.
某些芳香化合物生物降解性研究   总被引:29,自引:2,他引:29       下载免费PDF全文
研究了5类32种芳香化合物生物降解性,选用城市污水场污泥富集的混合菌种做菌源,在好氧生物解实验条件下,苯甲酸类、苯酚类和甲苯是较容易降解的;苯和苯的同系物是可生物降解的;苯磺酸类和含氮芳氮芳香化合物均是难降解的。  相似文献   
145.
含丙烯腈废水危害大、难降解,而用生化法对该类废水进行预处理的难点在于工艺的选择。文章较系统地概述了含丙烯腈废水处理技术的发展现状,并重点研究了“水解酸化+SBR工艺+生物滤池技术”处理工艺的反应器启动阶段。研究结果表明:1.水解酸化工艺可用于含丙烯腈废水的处理;2.SBR反应器处理效果良好,COD的平均去除率在70%以上,而且对进水水质的变化适应性较强;3.生物滤池技术应用于废水处理可显著提高COD的去除率。上述研究成果为下一步进行水解酸化+生物滤池技术+SBR处理工艺的效果试验奠定了基础。  相似文献   
146.
为解决油田落地油泥含油率高但不能直接进行生物无害化处置的问题,探索一种热水洗辅助微生物修复工艺。利用热水洗实验考察了清洗配方和水温对降低含油率的影响;从落地油泥中分离出石油烃降解菌,以用于含油残砂的微生物降解过程,同时探究填料和烃降解微生物对残砂中石油烃降解效果的影响。结果表明,鼠李糖脂清洗剂在总用量为0.5%、水洗时间30 min和50 ℃条件下,可将油泥含油率由107.1 mg·g−1降至为39.3 mg·g−1;水洗后残砂中的土著菌群数量出现了明显下降。分离获得了2株烃降解菌,并优选出具有增加油泥溶氧和保水的沼渣。将烃降解微生物和优选沼渣加入残砂后,石油烃生物降解效率得到显著提升,200 d后含油率降为4.62 mg·g−1。在此过程中,微生物优先降解分子量小的饱和烃和芳香烃组分,对胶质和沥青质等组分降解程度偏低。该研究结果可为油田高含油落地油泥的环保处置提供参考。  相似文献   
147.
针对飞机部件周期控制律电加热防除冰的应用,提出基于机器学习以预测电加热防除冰表面温度的变化趋势.依靠大型结冰风洞及其电加热防除冰控制系统完成防除冰试验,获得有效的试验数据,以通、断电周期为分割单元,将试验数据划分成验证集和训练集.根据电热防除冰过程的换热情况,构建样本的特征参数,利用机器学习的有监督学习方式,选择KNN...  相似文献   
148.
Environmental Science and Pollution Research - Water conservation and soil retention are two essential regulating services that are closely related, and their relationship might produce synergies...  相似文献   
149.
Environmental Science and Pollution Research - The regeneration of EDTA-FeII is a key step in electrobiofilm reduction-integrated systems for NOx removal from industrial boiler flue gas. The...  相似文献   
150.
Massive volcano-related materials (VRMs) erupted from volcanoes bring the impacts to natural environment and humanity health worldwide, which include generally volcanic ash (VA), volcanic pumice (VP), volcanic tuff (VT), etc. Considering the pozzolanic activities and mechanical characters of these materials, civil engineers propose to use them in low carbon/cement and environment-friendly concrete industries as supplementary cementitious materials (SCMs) or artificial/natural aggregates. The utilization of VRMs in concretes has attracted increasing and pressing attentions from research community. Through a literature review, this paper presents comprehensively the properties of VRMs and VRM concretes (VRMCs), including the physical and chemical properties of raw VRMs and VRMCs, and the fresh, microstructural and mechanical properties of VRMCs. Besides, considering environmental impacts and the development of long-term properties, the durability and stability properties of VRMCs also are summarized in this paper. The former focuses on the resistance properties of VRMCs when subjected to aggressive environmental impacts such as chloride, sulfate, seawater, and freezing–thawing. The latter mainly includes the fatigue, creep, heat-insulating, and expansion properties of VRMCs. This study will be helpful to promote the sustainability in concrete industries, protect natural environment, and reduce the impacts of volcano disaster. Based on this review, some main conclusions are discussed and important recommendations regarding future research on the application of VRMs in concrete industries are provided.  相似文献   
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