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| 1 | Effect of Organic Ligands on Biological Availability of Inorganic Phosphorus in Soils显示文摘Citrate, oxalate, tartrate and malate were added into soils during the growth period of ryegrass to study the effect of different organic ligands on the release various inorganic P (Pi) fractions in a yellow-brown soil and a paddy soil. The results showed that oxalate was most effective in promoting the release of total Pi in the yellow-brown soil and tartrate in the paddy soil. The dominant Pi fractions released from the yellow-brown soil were calcium phosphate (Ca-P) and aluminum phosphate (Al-P) and those from the paddy soil were iron phosphate (Fe-P) and reductant soluble phosphate (O-P) mobilized by tartrate. Phosphorous-mobilizing capability of organic acids in the yellow-brown soil revealed the following order: oxalate > citrate > malate > tartrate. In the paddy soil, the order was tartrate > citrate ≈ oxalate > malate. It was demonstrated that organic ligands were different in their capabilities of mobilizing Pi and the same organic ligand showed also a discrepancy in mobilizing P in different soils. Although the addition of organic ligands into soils could increase the amount of P taken up by ryegrass, the more uptake of P, however, was not only due to the more release of Pi, but also partly from organic P. In many cases, organic ligands promoted the release of the total of the total Pi, while different fractions showed different trends: some increased and others decreased. | FENGKe LUHai-Ming SHENGHai-Jun WANGXiao-Li MAOJian | 2004 | Pedosphere2004,14,1: | 43 |
| 2 | Preferential Fixation of Ammonium to Potassium by Soils显示文摘PreferentialFixationofAmmoniumtoPotassiumbySoils¥TANGYAN;FENGKEandYINSHIXUE(DepartmentOfAgronomy,AgriculturalCollege,Yangzhou... | TNAGYAN FENGKE 等 | 1996 | Pedosphere1996,6,1: | 3 |
| 3 | Acas- cade cross-coupling hydrogen evolution reaction by visible light catalysis 显示文摘 | Meng Q Y Zhong J J Liu Q Gao X W Zhang H H LeiT LiZJ FengK ChenB TungCH WuLZ | 2013 | Journal of the American Chemical So ciety2013,135,19: | 1 |
| 4 | Molecularcloning,tissuedistribution,andontogeneticexpressionofghrelinandregula-tionofexpressionbyfastingandrefeedinginthegrasscarp(Ctenopharyngodonidellus)显示文摘 | FengK ZhangGR WeiKJ etal | 2013 | JExpZoolPartA:EcolGenetPhysiol2013,319,4: | 1 |
| 5 | Effects of surfaee flame spread of plywood liningon enelosure fire in a modified ISO room显示文摘 | ZHANG Jun YANG Fengke | 2003 | Joumal of Fire Seience2003,21,: | 1 |
| 6 | DiscussiononproblemsinfertilizerNrecoveryestimation显示文摘 | ShanY-H(单玉华) FengK(封克) | 1998 | 植物营养营养与肥料科学报1998,4,4: | 1 |
| 7 | Preliminary design for a China ITER test blanket module显示文摘 | FENGK M PAN C H ZHANG G S | 2006 | Fusion Engineering and Design2006,81,814: | 1 |
| 8 | Aqueueing theoretical framework for QoS-enhanced spectrum management in cognitive radio networks显示文摘 | WANGLC WANGCW FENGK T | | 0,,6: | 1 |
| 9 | Synthesis and Study of Iodonium Boratesalts as Photoinitiators显示文摘 | Fengks Zang H M | 1998 | Polym Sci Part A Polym Chem1998,36,: | 1 |
| 10 | Progress on solid breeder TBM at SWIP显示文摘 | FENGK M PAN C H ZHANG G S | 2010 | Fu- sion Engineering and Design2010,85,: | 1 |
| 11 | Establishment of AFLP reaction system for Salix integra and primer se-leetion[J]显示文摘 | DAIXG(戴晓港) JUJT(渠纪腾) FENGK(冯凯) etal | | 西南林业大学学报0,32,1: | 1 |
| 12 | Tailoring morphology symmetry of bismuth vanadate photocatalysts for efficient charge separation显示文摘Although spatial charge separation between different facets of semiconductor crystals has been recognized as a general strategy in photocatalysis, the vital role of crystal morphology symmetry in charge separation properties still remains elusive. Herein,taking monoclinic bismuth vanadate(BiVO_(4)) as a platform, we found distinct charge separation difference via rationally tailoring the morphology symmetry from octahedral to truncated octahedral crystals. For octahedral BiVO_(4), photogenerated electrons and holes can be separated between edges and quasi-equivalent facets. However, as for truncated octahedral crystals,photogenerated electrons tend to transfer to {010} facets while photogenerated holes prefer to accumulate on {120} facets, thus realizing the spatial separation of photogenerated charge between different facets. Morphology tailoring of BiVO_(4) crystals leads to a significantly improved photogenerated charge separation efficiency and photocatalytic water oxidation activity. The built-in electric field for driving the separation of photogenerated electrons and holes is considered to be modulated by tuning the morphology symmetry of BiVO_(4) crystals. This work discloses the significant roles of morphology symmetry in photogenerated charge separation and facilitates the rational design of artificial photocatalysts. | Yuting Deng Hongpeng Zhou Chenwei Ni Fengke Sun Wenchao Jiang Ruotian Chen Wenming Tian Can Li Rengui Li | 2023 | Science China Chemistry2023,66,12: | 0 |
| 13 | Effects of Air-Drying on the Inorganic Phosphorus Forms in Soils显示文摘After 90 days cultivation of five different plants (rye grass, lupin, buckwheat, rape and amaranth) in three soils (Yellowbrown soil, Paddy soil and Red soil), fresh soil samples were collected and inorganic phosphorus (Pi) fractions weremeasured before and after air-drying. The results clearly indicated that the total Pi and their composition differed significantlyamong soil types. The air-drying process increased the total Pi in yellow brown soil and in paddy soil, while decreased thatin red soil. The total Pi could vary to 70% of that before air-drying. The Pi forms in different soils changed to differentextent after air-drying. As to yellow brown soil, Al-P decreased, while O-P and Ca-P increased; as to paddy soil, Al-P andCa-P increased, while Fe-P and O-P remained; as to red soil, Al-P and Fe-P increased, Ca-P remained and O-P reducedobviously. Growth of different plants in soils had effects on Pi forms during the process of air-drying. Therefore, forchemical study of soil phosphorus, application of fresh soil samples can provide more reliable results. | FENGKe TANGYan WANGXiao-li LUHai-ming ZHAOHai-tao | 2005 | Agricultural Sciences in China2005,4,6: | 0 |