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Nobel Prize in Chemistry for Water Channel pins as Aquapodns to Activate Choroid Plexus for Osmoreguiation to protect micro-organisms from freezing and osmotic shock→ Modulats intend fluid environment and maintain blood and cellular fluid compositions within extreme presence of Leukemia, Carcinomatosis, congestive heart failure, brain edema, muscular dystrophy , anhidrosis, renal tubular acidosis, cystic fibrosis and other acute

Weater Channel水闸,是以2003年诺贝化学奖发现的水通道《水闸》蛋白,启动脉络丛的渗透调节,以保护徽生物免於从冻结和渗透压冲击→进一步可为白血病,扩散性肿瘤,充血性心丽衰竭,脑水肿,肌肉萎缩症,缺汗症,肾小管发中毒,囊肿性纤维化和其他急性和慢性疾病等(患者》,调节其内部极端存在的流体环境,和维持其血液和细胞内的液体成分。

The efficacy of presently used therapeutic oximes (such as pralidoxime, obidoxime, HI-6, etc.) as reactivators of inhibited AChE is different for various organophosphate. Moreover, the used oximes are hard to resolve in human blood and can t penetrate center nerve system easily. So many researchers work hard to seek for a broad-spectrum oxime suitable for the antidotal agents of poisoning with all organophosphorus.

由于当前所用的解磷啶、双复磷、HI-6等肟类解毒药对各种有机磷毒剂的重活化效果差异较大,脂溶性差,难以通过生物膜渗透到中枢神经系统,对中枢激动症状无显著疗效,因而寻求高效能的重活化剂一直是许多研究者努力的方向。

According to the characters of the biological subject in high school , we should seek the combining points of the psychological health education and the biological teaching in practice . In the individualizing teaching experiment , the psychological health education should be infiltrated in high school biological teaching for one and half a year , from the senior newborn matriculation to the end of the third semester, researching with the blind cut-and-try method and the questionnaire procedure,which promotes all students'psychological qualities enhancement and the psychological function health's development .

在实际工作中,根据高中生物学科特点,寻找心理健康教育与生物教学的结合点,开展心理健康教育渗透于高中生物教学的个别化教学实验,从高一新生入学开始,至高二第一学期期末结束,运用了盲实验法和问卷调查法进行研究,在一定程度上,促进了全体学生心理素质提高和心理机能健康发展。

In which the microorganism fouling was the main reason why the RO system operated and run diffidently, such as a great deal of sticky biofilm were attached to the surface of RO membrane, and which led to a higher influent press, a lot of energy consumption and lower water production and so on.

分析认为,RO膜污染主要来自无机物、胶体、有机物和微生物污染,其中微生物污染是造成反渗透水处理运行困难的重要原因,它会造成反渗透膜表面出现大量粘泥状生物膜,使进水水压过高,增大能耗,或造成膜的产水量下降。

This showed that capacity of water-holding in biological soil crusts were obvious improve,and effected precipitation permeate or water second distribute process.The study results of"fertile islands"formation mechanism in biological crusts showed that biological crusts layer cover could increased nutrients content for below sand soil through precipitation permeate washing,and it promoted plants assimilate more nutriment.The matter import ways of biological soil crusts fertility island had many ways,including the effection of living macrobiotics metabolism in crusts levels,wind-sand flow of near surface,dust deposition and plants decomposition course,etc.Source of particle matter in biological soil crusts was wind-sand flow of near surface,and not dust deposition.Biological crusts layer cover had preserved effection for nature water content in 0-5cm soil layer,compared with the sand of no biological crusts layer,effecting precipitation permeate,and could not obvious restrained from the water evaporate process indoor experiment.

生物结皮层肥岛形成机制的研究结果表明:生物结皮层覆盖能够通过降水淋溶作用而增加下层土壤养分的含量,进而促进植物对养分的吸收;生物结皮层养分输入有结皮生物代谢、降尘、风沙流和植物分解矿化作用等多(来源:A73e3B3eC论文网www.abclunwen.com)种途径,但生物结皮层的颗粒物质来源主要是近地表风沙流,而不是大气降尘;生物结皮层覆盖对0-5cm土层自然含水量有一定的保护作用,并影响降水向深层渗透,不能有效的阻止表层水分的蒸发进程;研究表明采取人工促进技术能够在流动沙丘上形成生物结皮层,实现流动沙地的快速治理。

In this paper, xerophyte , mesophyte: oil sunflower (G101, K102, K5) and halophyte were comparatively studied on their dry matter accumulation, growth of seedlings, water status, osmotic adjustment, ion distribution and chloroplast ultrastructure under water and salt stresses with the method of physiological and biochemical analyse, X-ray microanalysis, electron microscope.

水分胁迫可泛指环境与生物之间由于渗透势的不平衡而形成对生物的一种胁迫,土壤干旱和和盐渍在一定意义上都属于水分胁迫,而盐渍除了有其低渗透势作用外,还存在着盐离子的毒害作用。

In the biological area developed a world-leading levels of biological air purification pad, biological Penetrant, chitin textiles

在生物领域开发出了具世界领先水平的生物空气净化垫、生物渗透剂、甲壳素纺织

The sewage flows from pool to plant, passing through retention reservoir to adjust PH value, into removing ammonia with temperature increasing to 20℃,into UASB reactor with temperature increasingto 35℃ to remove off COD and ammonia under the function of anaerobia, then into SBR reactor to remove BOD under the function of aerobia. When the biochemical disposal is completed, the processed sewage will come into the UF system to remove adsorbed solid, organic matter, bacteria, and pathogens in waterand finally come into the RO system to remove off dissolvable salinity, colloid, organic matter, and microbe in water.

垃圾渗滤液经储存池进入污水处理厂,经调节池调整PH值,经1#加热器升温到20℃进入氨吹脱塔脱氨氮,再经2#加热器升温到35℃进人UASB生物反应器,在厌氧菌的作用下降解COD和脱氮,再进入SBR生物反应器,在好氧菌的作用下降解BOD,完成生化前处理后转入UF超滤中空纤维膜系统进行分离处理吸附固体、有机物、细菌、病原体等;最后经高压泵送入进口的RO返渗透中空纤维膜系统中,进行分离处理可溶解盐分、胶体、有机物、微生物等。

Integrated technology has two parts: 1,"liquid gold" of the infiltration, because the liquid gold of the biological potential, isoelectric point and osmotic pressure is identical with local organizations, through the neurohumoral regulation And micro-circulation mechanism, so that the rapid absorption of fluid infiltration, adequate flow, diffusion, form a network structure.

完整技术有两部分: 1、&液态金丝&的渗透,因为液态金丝的生物电位、等电点及渗透压与局部组织完全相同,通过神经体液调节及微循环机制,使渗透液迅速吸收,适当流动、扩散,形成网状结构。

As one of the most important osmoregulation actor, firstly,Proline plays a keyrole in the osmotic potential adjustment in plant cells. Secondly, Proline can preventNaCl from damaging the structure of biomacromolecule in cells. Thirdly, the highdissolubility and non-rejection capability of Proline can enlarge the solution volumnof the cell, so the concentration of salt will be diminished in cytoplasm and the saltstress will be relieved. Forthly, the accumulation of Proline could prevent thedehydrolysis from sap cavity in cytoplasm. Fifthly, the synthesis of plant chlorophyllwill be diminished under the salt stress, but the Proline can provide request ofchlorophyll synthesis.

脯氨酸作为渗透调节剂对植物体细胞渗透势的变化起重要作用:一,在盐胁迫下,脯氨酸在植物体内是一种重要的渗透调节剂,它是一些高等植物和绿藻抗盐和抗旱的主要渗透剂之一;二,脯氨酸可以保护细胞中的生物大分子的结构,使之不被NaCl破坏,并能维持其完整的水合范围;三,脯氨酸的高度溶解性以及其对植物各种酶活性不抑制性,可以扩大细胞的溶解容积,从而降低细胞质液中盐的浓度,减轻盐的胁迫作用;四,细胞质中积累的大量脯氨酸可以防止液泡对细胞质的脱水作用;五,在盐胁迫下,植物叶绿素的合成受到抑制,叶绿素的合成需要脯氨酸。

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