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361.
不同施氮量对饲料稻糙米蛋白质含量的影响及其机理   总被引:2,自引:1,他引:2  
采用田间小区试验探讨了"氮中量施肥法"(N,P2O5,K2O施用量为190,90,100 kg·hm-2)、"氮高量施肥法"(N,P2O5,K2O施用量为210,90,100 kg-hm-2)、"氮低量施肥法"(N,P2O5,K2O施用量为170,90,100kg·hm-2)对饲料稻威优198糙米蛋白质质量分数的影响及其机理.结果表明,与氮高量施肥法和氮低量施肥法相比,氮中量施肥法能明显促进孕穗期、乳熟期水稻旗叶中硝酸还原酶,乳熟期旗叶中蛋白水解酶活性,齐穗期旗叶谷氨酰胺合成酶以及齐穗期和乳熟期籽粒中谷氮酰胺合成酶活性,明显促进水稻对氮素营养的吸收与转运,显著提高糙米中蛋白质质量分数和蛋白质质量分数.氮中量施肥法处理糙米蛋白质质量分数分别比氮高量施肥法处理和氮低量施肥法处理提高了 1.39%和17.93%,籽粒产量分别提高了 12.02%和8.47%,糙米蛋白质产量分别提高了12.54%和18.32%.研究表明,氮中量施肥法能满足饲料稻高蛋白高产栽培的需要.  相似文献   
362.
• Published data was used to analyze the fate of ARGs in water treatment. • Biomass removal leads to the reduction in absolute abundance of ARGs. • Mechanism that filter biofilm maintain ARB/ARGs was summarized. • Potential BAR risks caused by biofiltration and chlorination were proposed. The bacterial antibiotic resistome (BAR) is one of the most serious contemporary medical challenges. The BAR problem in drinking water is receiving growing attention. In this study, we focused on the distribution, changes, and health risks of the BAR throughout the drinking water treatment system. We extracted the antibiotic resistance gene (ARG) data from recent publications and analyzed ARG profiles based on diversity, absolute abundance, and relative abundance. The absolute abundance of ARG was found to decrease with water treatment processes and was positively correlated with the abundance of 16S rRNA (r2 = 0.963, p<0.001), indicating that the reduction of ARG concentration was accompanied by decreasing biomass. Among treatment processes, biofiltration and chlorination were discovered to play important roles in shaping the bacterial antibiotic resistome. Chlorination exhibited positive effects in controlling the diversity of ARG, while biofiltration, especially granular activated carbon filtration, increased the diversity of ARG. Both biofiltration and chlorination altered the structure of the resistome by affecting relative ARG abundance. In addition, we analyzed the mechanism behind the impact of biofiltration and chlorination on the bacterial antibiotic resistome. By intercepting influent ARG-carrying bacteria, biofilters can enrich various ARGs and maintain ARGs in biofilm. Chlorination further selects bacteria co-resistant to chlorine and antibiotics. Finally, we proposed the BAR health risks caused by biofiltration and chlorination in water treatment. To reduce potential BAR risk in drinking water, membrane filtration technology and water boiling are recommended at the point of use.  相似文献   
363.
• Magnetotactic bacteria (MTB) synthesize magnetic nanoparticle within magnetosomes. • The morphologic and phylogenetic diversity of MTB were summarized. • Isolation and mass cultivation of MTB deserve extensive research for applications. • MTB can remove heavy metals, radionuclides, and organic pollutants from wastewater. Magnetotactic bacteria (MTB) are a group of Gram-negative prokaryotes that respond to the geomagnetic field. This unique property is attributed to the intracellular magnetosomes, which contains membrane-bound nanocrystals of magnetic iron minerals. This review summarizes the most recent advances in MTB, magnetosomes, and their potential applications especially the environmental pollutant control or remediation. The morphologic and phylogenetic diversity of MTB were first introduced, followed by a critical review of isolation and cultivation methods. Past research has devoted to optimize the factors, such as oxygen, carbon source, nitrogen source, nutrient broth, iron source, and mineral elements for the growth of MTB. Besides the applications of MTB in modern biological and medical fields, little attention was made on the environmental applications of MTB for wastewater treatment, which has been summarized in this review. For example, applications of MTB as adsorbents have resulted in a novel magnetic separation technology for removal of heavy metals or organic pollutants in wastewater. In addition, we summarized the current advance on pathogen removal and detection of endocrine disruptor which can inspire new insights toward sustainable engineering and practices. Finally, the new perspectives and possible directions for future studies are recommended, such as isolation of MTB, genetic modification of MTB for mass production and new environmental applications. The ultimate objective of this review is to promote the applications of MTB and magnetosomes in the environmental fields.  相似文献   
364.
• UV/O3 process had higher TAIC mineralization rate than O3 process. • Four possible degradation pathways were proposed during TAIC degradation. • pH impacted oxidation processes with pH of 9 achieving maximum efficiency. • CO32– negatively impacted TAIC degradation while HCO3 not. • Cl can be radicals scavenger only at high concentration (over 500 mg/L Cl). Triallyl isocyanurate (TAIC, C12H15N3O3) has featured in wastewater treatment as a refractory organic compound due to the significant production capability and negative environmental impact. TAIC degradation was enhanced when an ozone(O3)/ultraviolet(UV) process was applied compared with the application of an independent O3 process. Although 99% of TAIC could be degraded in 5 min during both processes, the O3/UV process had a 70%mineralization rate that was much higher than that of the independent O3 process (9%) in 30 min. Four possible degradation pathways were proposed based on the organic compounds of intermediate products identified during TAIC degradation through the application of independent O3 and O3/UV processes. pH impacted both the direct and indirect oxidation processes. Acidic and alkaline conditions preferred direct and indirect reactions respectively, with a pH of 9 achieving maximum Total Organic Carbon (TOC) removal. Both CO32– and HCO3 decreased TOC removal, however only CO32– negatively impacted TAIC degradation. Effects of Cl as a radical scavenger became more marked only at high concentrations (over 500 mg/L Cl). Particulate and suspended matter could hinder the transmission of ultraviolet light and reduce the production of HO· accordingly.  相似文献   
365.
采用UV-254 nm活化过硫酸盐高级氧化技术去除水中污染物麻黄碱(EPH),并研究了其降解动力学过程和降解机理.考察了过硫酸盐(PS)投加量、EPH的初始浓度、不同pH值及不同离子(HCO~-_3、NO~-_3、Cl~-)对降解效果的影响.结果表明,UV-254 nm活化过硫酸盐工艺能有效去除实验条件下的EPH,其氧化降解反应符合二级动力学方程.EPH去除率随着PS投加量的增加而增大.pH对降解反应有较大的影响,在pH=7的条件下,反应速率最快,表观反应动力学常数(k_(obs))为0.467 min~(-1).进一步研究表明,HCO~-_3、NO~-_3和Cl~-对EPH的降解都存在抑制作用,在相同浓度下,其抑制程度依次为Cl~- NO~-_3 HCO~-_3.通过UPLC-MS/MS鉴定了麻黄碱降解的中间体,并提出了可能的降解机理和转化途径.  相似文献   
366.
森林火灾地面扑救的最佳路线的计算   总被引:1,自引:0,他引:1  
秦向东  李松  林其钊 《火灾科学》2004,13(4):235-240
建立了森林火灾地面扑救方式(直接扑救、间接扑救和平行扑救)的最佳扑救路线的数学模型,设计了模型的计算机数值求解算法。给出了匀速扩张的椭圆形火场的一个算例,从其计算结果中导出的一些实用的结论与以往用解析方法得到的结论是一致的,以此初步验证了模型的有效性。  相似文献   
367.
用尿素和甲醛作为主要原料合成脲醛树脂季胺盐和脲醛树脂叔胺盐。采用WEMCO浮选模型机和自行设计的模拟现场充气浮选的气浮设备及现场污水对絮凝浮选剂除油、除悬浮物的性能进行了评价。另外,用核磁共振和红外光谱测定了脲醛树脂叔胺盐的结构,并用凝胶色谱法测定了其分子量。  相似文献   
368.
369.
采用固定床动态吸附实验,用改性活性碳纤维(ACF)吸附去除CO2原料气中的H2S。通过改变改性剂种类、反应温度和原料气中CO2浓度,找出用改性ACF去除CO2原料气中H2S的规律。实验结果表明:常温下,可用NaON改性的ACF来消除CO2的酸性对去除H2S的不利影响;随着反应温度的升高,CO2与ACF形成的C(O*)中间产物增多,CO2的存在有利于改性ACF去除H2S;而当反应温度过高时,CO2与ACF形成的C(O*)中间产物发生分解,导致ACF碳化,不利于H2S的吸附去除。  相似文献   
370.
Environment, Development and Sustainability - In order to reveal the distribution and migration law of downwind and upwind coal cutting, total dust (TD) and respirable dust (RD) concentration...  相似文献   
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