氮磷矿化,N&P mineralization
1)N&P mineralization氮磷矿化
英文短句/例句

1.The Effect of Organic Matter and Submerged Macrophyte on Nitrogen & Phosphorus Mineralization and Pools in the Lake Sediment有机质及沉水植物对湖泊沉积物界面氮磷矿化与赋存的影响
2.Research on Nitrogen and Phosphorus Mineralization Character of Sewage Sludge Compost and Its Impact on Celery's Growth生活污泥堆肥氮磷矿化特性及对芹菜生长的影响
3.Effect of Light Fraction Organic Matter on Mineralization of N and P in Taihu Lake Sediments轻组有机质对太湖沉积物氮、磷矿化的影响
4.Nitrogen and Phosphorus Removal Characteristics of Denitrifying Polyphosphate-accumulating Organism C18反硝化聚磷菌C18脱氮除磷特性研究
5.Study on Removal Effects of NH_4~+-N and P from Bodies of Water by Four Kinds of Clay Minerals四种黏土矿物对水体中氮、磷去除效果的研究
6.Discussion the degradation of available P_2O_5 of SSP maked from phosphate rock with high iron and aluminum content高铁铝磷矿制过磷酸钙有效磷退化的探讨
7.Study of Ni-P Alloy Electroless Plating on Boron Nitride Particles氮化硼微粒化学镀镍-磷合金工艺研究
8.Removal of Nitrogen and Phosphorus from Municipal Sewage Using DPBs利用反硝化聚磷菌实现城市污水的脱氮除磷
9.Factors Influencing Anaerobic Phosphorus Release in A_2N Denitrifying Phosphorus and Nitrogen Removal ProcessA_2N反硝化脱氮除磷工艺厌氧释磷的影响因素
10.CHANGES IN [N], [P] AND SPECIFIC LEAF AREA OF GREEN LEAVES OF LEYMUS CHINENSIS ALONG NITROGEN, PHOSPHORUS AND WATER GRADIENTS羊草绿叶氮、磷浓度和比叶面积沿氮、磷和水分梯度的变化
11.The optimum ratio of N:P:K should be 2. 1:1: 0. 4.化肥氮磷钾比例应是2.1∶1∶0.4。
12.Enhanced Simultaneous Phosphorus and Nitrogen Removal in Membrane Bioreactors;膜生物反应器强化除磷脱氮性能研究
13.Study on Transformations of Carbon, Nitrogen and Phosphorus during Dairy Manure Fermentation;牛粪发酵过程中碳、氮、磷转化研究
14.Study on Immobilized Chlorella Vulgaris and Its Efficiency on Using N and P;固定化小球藻及其对氮磷利用的研究
15.Experimental Study on the Enhancement of Nitrogen and Phosphorous Removal in AB Process;强化AB工艺脱氮除磷法功能实验研究
16.Study on the Effects of Nitrogen, Phosphorus and Potassium Optimum Fertilization on Export Broccoli Production;出口青花菜氮磷钾优化施肥效应研究
17.Studies on Nitrogen,Phosphorus and Potassium for Mulation Apply Fertilizer of Hubei Maidong;湖北麦冬氮、磷、钾优化配方施肥研究
18.Study on Simultaneous Nitrification and Phosphorus Removal in Carrousel 2000 Oxidation DitchCarrousel 2000氧化沟同步脱氮除磷试验研究
相关短句/例句

nutrient discovery氮磷转化
3)NP chemical fertilizer氮磷化肥
1.Based on the long-time location exeriments,accumulation and distribution of available sulfur in soil of different cropping systerms under the condition of 22 years continuous application of NP chemical fertilizer in Loess Plateau were studied.以22 a定位试验为基础,在黄土高原旱地研究了长期施用氮磷化肥,对不同种植体系土壤有效硫在剖面上分布与累积状况。
4)dynamics of nitrogen and phosphorus氮磷变化
1.Therefore,study on the dynamics of nitrogen and phosphorus in water and soil layer affected by fertilization on Chengdu Plain paddy field,it has an important reality meaning to fertilization reas.因此,研究施肥对成都平原稻田土、水层氮磷变化特征的影响,对于合理施肥,控制稻田氮、磷流失,保护生态环境具有极其重要的现实意义。
5)phosphorus nitride氮化磷
6)phosphorus chloronitride氯氮化磷
延伸阅读

水稻土磷素转化    水稻土磷素转化  transformation of phosphorus in paddy soils  水稻土麟素转化(transformation。f phos-phorus in paddy 5011约水稻土在淹水和排水条件下含碑化合物的形态及有效性的变化。 大多数水稻土在淹水的情况下,其有效磷量(即土城溶液中磷的浓度)显著增加.因此.通常水田对碑的孺要性常较同类早地土壤为小.造成磷家浓度增加的原因主要有:①淹水导致三价铁还原为二价铁,从而使原与三价铁相结合的碑释放出来.甚至铁的形态变化还可使闭蓄态碑裸尽而增加其有效性.②淹水使土坡pH值升离,土城的正电荷t减少,从而使原被土壤吸附的带负电的碑酸离子释放出来.③淹水使某些简单的有机阴离子通过竞争吸附,代换出了部分磷酸离子。④在酸性土城中.淹水导致pH值升高,增加了Fe一P和AI一P的溶解度。在石灰性土壤中淹水后pH值下降.也将增加Ca一P的溶解度。⑤土坡淹水后,可使磷的扩徽系数增加,从而提高碑的有效性。 但是,土坡掩水后有效磷素增加至某最高值后,常有一个下降过程.有时可以降到淹水前的水平.其原因尚不十分清楚,可能有以下原因:①释放出的磷被新沉淀的物质所吸附.②礴可能以亚铁磷酸盐形态〔蓝铁矿,成:(OH);(H:PO.):·川:O〕重新沉淀。③由于徽生物的分解,使土城固相部分的有机阴离子减少,从而增加了土城固相部分对碑的吸附. 生产中水稻土常有干盆交替过程.在由湿变干过程中,土镶礴转化的墓本规律为:①土集排水后使其因淹水产生的一系列变化(电位下降、pH值增减等)均向逆反方向回复,因而,土城溶液磷和土集有效磷均下降。②土城排水后,土壤氧化还原电位升高,使已被还原的铁锰化合物重新氧化,从而生成新的铁锰化合物的沉淀.这种新生成的铁锰化合物为无定形化合物,具有较大的比表面,从而可以大t地吸附磷.降低磷的有效性,使水稻后作(早作)对磷肥的需求量增大。③水稻土中碑酸铁在淹水后,因铁的还原使结晶破坏,转化为亚铁礴酸盐,有效性碑增加.而在土坡排水后,亚铁又载化为高铁并和磷生成非晶质的磷酸铁,使土坡溶液礴浓度下降。但是由于新生成的非晶质的磷酸铁具有较大的比表面,因而在非晶质碑酸铁生成之初的一个短哲的时间内(排水后的短时间内)仍有较高有效性。然而随粉时间的延续,无定型磷酸铁将不断老化,结晶·逐渐恢复,有效性将大大减低。 (香如冲)