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Abiotic environment The nonliving factors of the environment that influence ecological systems.

非生物环境:影响生态系统的非生物环境因子。

In the exclusive economic zone, all States, whether coastal or land-locked, enjoy, subject to the provisions of this Convention, the freedoms referred to in article 87 of navigation and overflight and of the laying of submarine cables and pipelines, and other internationally lawful uses of the sea related to these freedoms, such as those associated with the operation of ships, aircraft and submarine cables and pipelines, and compatible with the other provisions of this Convention.

以勘探和开发、养护和管理海床和底土及其上覆水域的自然资源(不论为生物资源或非生物资源)为目的的主权权利,以及对在区内从事经济性开发和勘探活动有主权权利。上述权利是沿海国的专属权利,非沿海国未经沿海国同意不得进行勘探和开发。

Pollution with biological theory and methods, monitor and estimate environmental quality, mainly including the basic conception of environmental biology, the toxin and mechanism of natural biological environmental pollution and abiological environmental pollution on organism, the pollution and mechanism

课程内容主要包括环境生物学的基本概念,自然生物环境的污染、非生物环境污染物对生物体的毒害和机理,生物污染物对环境的污染和机理,环境污染物的生物效应及其对平衡生态系统的破坏与摧毁,污染环境的生物净化,生物净化的新技术、新工艺等等。

Turthermore, the technological measures in ensuring beer abiological Stability were given in the production of Saecharification, fermentation, filter and filling and package.

就啤酒酿造过程中的蛋白质、多酚、氧物质对啤酒非生物稳定性的影响机理进行了分析阐述,说明了高分子蛋白质和多酚物质是影响啤酒非生物稳定性的主要因素;并就糖化、发酵、过滤、灌装各生产工序提出了工艺控制措施以保证啤酒的非生物稳定性。

The bad environment is a very important nonbiological force factor influencing agricultural production and ecological environment.

不良环境是影响农业生产和生态环境的非常重要的非生物胁迫因素,在各种非生物胁迫中,低温对植物的影响最为突出。

The bad environment is avery important nonbiological force factor influencing agricultural production and ecological environment.

不良环境是影响农业生产和生态环境的非常重要的非生物胁迫因素,在各种非生物胁迫中,低温对植物的影响最为突出。

The possibility of researching gene mutation with the technique of gene chip was discussed. A new imagination to randomly determine DNA sequence in different living beings with the technique of gene chip was advanced. In this way, whether the encoding sequence gene in DNA of eukaryon organism has some regularity was studied.

进而提出新设想——采用基因芯片技术对不同生物群体随机抽样进行DNA测序,从而探讨在真核生物DNA分子链上编码序列遗传基因的变化是否有规则而非随机的,非编码序列遗传基因是否为生物进化过程中曾经有表达能力的结构基因,并分析可能获得的结果。

The results suggest that to improve the natural regeneration,the integrated method ofcombining the biotic and abiotic factors should be adopted,and some artifical management,suchas formation of small gap,should be considered to improve the natural regeneration.

研究结果建议:对辽东栎林的天然更新,应该采取综合治理的方法,充分考虑各种生物和非生物因素的影响,处理好生物因素和非生物因素的关系;人为进行适当干扰,例如在森林中创建适当大小的林窗,以更好地促进辽东栎的天然更新。

However, the prediction has a limitation of underestimation and overestimation at low and high temperature or moisture conditions respectively. In order to acquire accurate estimation of soil respiration, main suggestions for further study are to: combine measurement of soil respiration by chamber with carbon flux of ecosystem by eddy covariance, measure synchronously the biotic and abiotic factors, especially pay more attention to the role of modification of biotic factors on the performance of abiotic controllers, make more measurement in typical plant phenology phase and different weather conditions, and strengthen experimental manipulation and modeling.

但是在土壤温度及湿度过高或过低的情况下会出现较大的误差,为了尽量减少土壤呼吸的误差,给出了如下建议:①加强土壤呼吸和生态系统自动碳通量的结合研究;②加强对不同生物和非生物生态环境因子的同步测定,特别重视生物因子对非生物因子的调节和影响;③加强典型物候期和不同季节典型天气土壤呼吸的测定;④加强模拟试验研究和模式研究。

However, the prediction has a limitation of underestimation and overestimation at low and high temperature or moisture conditions respectively. In order to acquire accurate estimation of soil respiration, main suggestions for further study are to: combine measurement of soil respiration by chamber with carbon flux of ecosystem by eddy covariance, measure synchronously the biotic and abiotic factors, especially pay more attention to the role of modification of biotic factors on the performance of abiotic controllers, make more measurement in typical plant phenology phase and different weather conditions, and strengthen experimental manipulation and modeling.

但是在土壤温度及湿度过高或过低的情况下会出现较大的误差,为了尽量减少土壤呼吸的误差,给出了如下建议:①加强土壤呼吸和生态系统自动碳通量的结合研究;②加强对不同生物和非生物生态环境因子的同步则定,特别重视生物因子对非生物因子的调节和影响;③加强典型物候期和不同季节典型天气土壤呼吸的测定;④加强模拟试验研究和模式研究。

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