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151.
叙述了稀土元素的化学结构及其在农业方面的应用,系统介绍了植物辣根过氧化物酶(HRP)的结构及其在植物体内的功能,并以重稀土元素Tb(Ⅲ)为例,通过探讨其对HRP的酶活和生态毒理效应等影响的研究,对两者相互作用的可能性机理进行了研究。 相似文献
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通过研究广东省江门市三个不同优质稻产地土壤中相同元素对水稻品质造成不同影响的特点,如都斛土壤中的N与水稻胶稠度呈正相关关系,而在牛江则呈较强负相关关系;都斛土壤中的Mo与水稻的不完善粒呈较强负相关关系,而在牛江则呈正相关关系。根据吸收系数与土壤营养元素关系,得出作物对营养元素的吸收限。当土壤能给作物提供足够的营养元素时,作物对土壤营养元素的吸收存在一个极限,土壤元素含量接近这个极限时,作物对元素的吸收达到饱和,对元素的吸收系数则低;当土壤营养元素供给能力不足时,作物对营养元素吸收能力较强,对元素吸收系数较高。通过对比各元素及指标与稻谷感官品质相关关系并评分,得出土壤营养元素含量越偏离水稻对营养元素的吸收限,则对水稻品质的影响越大的结论,由此解释了不同省份农业地质调查中农作物元素与土壤元素相关关系混乱甚至矛盾的问题,为水稻的施肥提供了科学合理的依据 相似文献
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B. Alteren 《Safety Science》1999,31(3):279
The Safety Element Method (SEM) is a method for improvements of safety results and safety approaches in the Norwegian mining industry. The method is developed by users and researchers in co-operation. The main approach of the method is that a group of organisational members assesses the current and desired situation for their own organisation within defined areas. Based on this assessment they work out a strategy and action plan to reach the internal goals for desired achievement, i.e. the desired situation defined. This article presents the implementation of the method in four mining companies and evaluates the method for its construct validity, criterion validity, face validity, how the method functions and is accepted among the users. The results show that the opinions regarding the experiences with the method are, on the whole, positive. The method is regarded as a valuable approach towards safety improvements. Subjective assessments play a prominent role in SEM, but these assessments are supported by an extensive review of empirical data such as accident reports, interview results and a questionnaire. This means that the internal assessments correspond well to the safety results of the companies and also to the independent external reviews carried out by the researcher. 相似文献
157.
在中国东部花岗岩、玄武岩和石灰岩地区布设91个采样点,采集土壤剖面和母岩样品,测试13种微量元素的含量,研究其纬向分异规律及影响因素。结果表时:(1)土壤微量元素含量顺序为:玄武岩土壤>石灰岩土壤>花岗岩土壤;(2)花岗岩和玄武岩上土壤微量元素含量与母岩接近,石灰岩上土壤微量元素含量远高于母岩;(3)花岗岩上土壤微量元素的含量由北向南呈降低趋势,而玄武岩和石灰岩上土壤微量元素含量由北向南均呈增高趋势,且与游离氧化铁含量的增高同步;(4)微量元素含量与氧化铁含量在玄武岩土壤中的相关性大于这两者在花岗岩土壤中的相关性。 相似文献
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The bio-briquette technique which mixes coal, biomass and sulfur fixation agent and bio-briquettes under 3-5 t/cm^2 line pressure has aroused people‘s attention in view of controlling the air pollution and the acid rain. In this paper, the physicochemical properties of bio-briquette and its ash were investigated. And the acid soil was improved by the bio-briquette combustion ash, which contained nutritive substances such as P, N, K and had the acid-neutralizing capacity(ANC). The pH, EC, effective nutrient elements(Ca, Mg, K, P and N), heavy metal elements(AI, Cu, Cd, Cr, Zn and Mn) and acid-neutralizing capacity change of ash-added soils within the range of 0-10%, were also studied. Specially, when 5% bio-briquette combustion ash was added to the tested soil, the content of the effective elements such as Ca, Mg and K rose by 100 times, ? times and twice, respectively. The total nitrogen also increased by about twice. The results showed the oxyanions such as that of AI, Cu, Cd, Cr, Zn and Mn were not potentially dangerous, because they were about the same as the averages of them in Chinese soil. It is shown that the ANC became stronger, though the ANC hardly increases in the ash-added soil. On the basis of the evaluation indices, it is concluded that the best mixture ratio is to add 2.5%--8% of the bio-briquette combustion ash to the tested soil. 相似文献
160.
HUANG Ya-ji JIN Bao-sheng ZHONG Zhao-ping XIAO Ruix TANG Zhi-yong REN Hui-feng 《环境科学学报(英文版)》2004,16(2):242-246
The contents of eight trace elements(Mn, Cr, Pb, As, Se, Zn, Cd, Hg) in raw coal, bottom ash and fly ash were measured in a 220 t/h pulverized coal boiler. Factors affecting distribution of trace elements were investigated, including fly ash diameter, furnace temperature, oxygen content and trace elements‘ characters. One coefficient of Meij was also improved to more directly show element enrichment in combustion products. These elements may be classified into three groups according to their distribution: Group 1. Hg, which is very volatile. Group 2: Pb, Zn, Cd, which are partially volatile. Group 3: Mn, which is hardly volatile. Se may be located between groups 1 and 2. Cr has properties of both group ! and 3. In addition, the smaller diameter of fly ash, the more relative enrichment of trace elements (except Mn). The fly ash showed different adsorption mechanisms of trace elements and the volatilization of trace elements rises with furnace temperature. Relative enrichments of trace elements(except Mn and Cr) in fly ash are larger than that in bottom ash. Low oxygen content can not always improve the volatilization of trace elements. Pb is easier to form chloride than Cd during coal combustion. Trace elements should be classified in accordance with factors. 相似文献