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Role of Resuspended Sediments as Sources of Dissolved Inorganic Phosphorus Along Different Dimensions in the Subei Shoal, South Yellow Sea, China
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作者 WANG Changyou ZHENG Ping +3 位作者 SU Rongguo LUO Zhuhua ZHANG Yuanzhi MAO Longjiang 《Journal of Ocean University of China》 SCIE CAS CSCD 2023年第1期161-170,共10页
Several studies have documented that during‘green tide’events,comprising green macroalgae blooms in aquatic ecosystems,dissolved inorganic phosphorus(DIP)levels remain relatively steady despite the absorption of a l... Several studies have documented that during‘green tide’events,comprising green macroalgae blooms in aquatic ecosystems,dissolved inorganic phosphorus(DIP)levels remain relatively steady despite the absorption of a large amount of DIP.In this study,surface sediment samples and a sediment core were extracted using a modified sequential extraction scheme,and water and surface sediment samples were analyzed in April 2017 to better understand phosphorus(P)cycling and replenishment in Subei shoal.We used a simple model on equilibrium of adsorption-desorption to present the buffering capacity of phosphate.The total P(TP)in the surface sediments ranged from 12.2 to 28.4μmol g^(-1)(average 15.5μmol g^(-1))and was dominated by inorganic P.TP,exchangeable P,reactive and reductive Fe/Al bound P,and authigenic apatite P significantly decreased northward and eastward from Subei shoal,contrary to the detrital P and organic P results.Dissolved and particulate inorganic P in the water samples ranged from 0.01 to 0.54μmol L^(-1)(average 0.19μmol L^(-1))and 0.9 to 19.6μmol g^(-1)(average 4.9μmol g^(-1)),respectively.The applied model showed that suspended particulate matter is an important regulator of DIP behavior.Thus,modification of SPM can alter the DIP buffering capacity.The calculated buffering capacity in the surface layer of the sea water was>60 within Subei shoal and always>10 along the path of floating Ulva prolifera,providing a reasonable explanation for the steady concentration of DIP and its replenishment during the blooming of this green macroalgae. 展开更多
关键词 phosphorus SPECIATION SEDIMENT buffering capacity South yellow Sea
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Simultaneous removal of sulfur dioxide and nitrogen oxide from flue gas by phosphorus sludge:The performance and absorption mechanism
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作者 Yuanyuan Yin Xujun Wang +3 位作者 Lei Xu Binbin He Yunxiang Nie Yi Mei 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第1期212-221,共10页
Developing low-cost and green simultaneous desulfurization and denitrification technologies is of great significance for sulfur dioxide(SO_(2))and nitrogen oxide(NO_(x))emission control at low temperatures,especially ... Developing low-cost and green simultaneous desulfurization and denitrification technologies is of great significance for sulfur dioxide(SO_(2))and nitrogen oxide(NO_(x))emission control at low temperatures,especially for small and medium-sized coal-fired boilers and furnaces.Herein,phosphorus sludge,an industrial waste from the production process of yellow phosphorus,has been developed to simultaneously eliminate SO_(2)and NO_(x)from coal-fired flue gas.The key factors affecting the experimental results indicate that desulfurization and denitrification efficiency of over 95%can be achieved at a low temperature of 55℃.Further,the absorption mechanism was investigated by characterizing the solid and liquid phases of the phosphorus sludge during the absorption process.The efficient removal of SO_(2)is attributed to the abundance of iron(Fe^(3+))and manganese(Mn^(2+))in the absorbent.SO_(2)can be rapidly catalyzed and converted to SO_(4)^(2-)by them.The key to NOx removal is the oxidation of NO toward watersoluble high-valent nitrogen oxides by oxidizing reactive substances induced via yellow phosphorus,which are then absorbed by water and converted to NO_(3)^(-).Meanwhile,yellow phosphorus is oxidized to phosphoric acid(H_(3)PO_(4)).The spent absorption slurry can be reused through wet process phosphoric acid production,as it contains sulfuric acid(H_(2)SO_(4)),nitric acid(HNO_(3)),and H_(3)PO_(4).Accordingly,this is a technology with broad application prospects. 展开更多
关键词 ABSORPTION OXIDATION Multiphase reaction phosphorus sludge yellow phosphorus Low temperature
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Seasonal variations of phytoplankton phosphorus stress in the Yellow Sea Cold Water Mass 被引量:6
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作者 WANG Dan HUANG Bangqin +2 位作者 LIU Xin LIU Guimei WANG Hui 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2014年第10期124-135,共12页
The Yellow Sea is located between the China Mainland and the Korean Peninsula, representing a typical shallow epicontinental sea. The Yellow Sea Cold Water Mass(YSCWM) is one of the most important physical features ... The Yellow Sea is located between the China Mainland and the Korean Peninsula, representing a typical shallow epicontinental sea. The Yellow Sea Cold Water Mass(YSCWM) is one of the most important physical features in the Yellow Sea. The characteristics of vertical profiles and seasonal variations of biogenic elements in the YSCWM may lead the variations of nutrient availability(e.g., phosphorus) and phosphorus stress of phytoplankton. In this study, the authors surveyed the seasonal variations of phytoplankton phosphorus stress with emphasis on the effect of the YSCWM during the four cruises in April and October 2006, March and August 2007. Using both bulk and single-cell alkaline phosphatase activity(APA) assays, this study evaluated phosphorus status of phytoplankton community, succession of phytoplankton community and ecophysiological responses of phytoplankton to phosphorus in the typical region of the YSCWM. With the occurrence of the YSCWM, especially the variations of concentration of dissolved inorganic phosphorus(DIP), the results of bulk APA appeared corresponding seasonal variations. Along Transects A and B, the mean APA in August was the highest, and that in March was the lowest. According to the ELF-labeled assay's results, seasonal variations of the ELF-labeled percentages within dominant species indicated that diatoms were dominant in March, April and October, while dinoflagellates were dominant in August. During the four cruises, the ELF-labeled percentages of diatoms except Paralia sulcata showed that diatoms were not phosphorus deficient in April 2006 at all, but suffered from severe phosphorus stress in August 2007. In comparison, the ELF-labeled percentages of dinoflagellates were all above 50% during the four time series, which meant dinoflagellates such as Alexandrium and Scrippsiella, sustained perennial phosphorus stress. 展开更多
关键词 alkaline phosphatase phosphorus stress PHYTOPLANKTON yellow Sea Cold Water Mass yellow Sea
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Phosphorus speciation and distribution in surface sediments of the Yellow Sea and East China Sea and potential impacts on ecosystem 被引量:7
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作者 SONG Guodong LIU Sumei 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2015年第4期84-91,共8页
For better understanding the phosphorus (P) cycle and its impacts on one of the most important fishing grounds and pressures on the marine ecosystem in the Yellow Sea (YS) and East China Sea (ECS), it is essenti... For better understanding the phosphorus (P) cycle and its impacts on one of the most important fishing grounds and pressures on the marine ecosystem in the Yellow Sea (YS) and East China Sea (ECS), it is essential to distinguish the contents of different P speciation in sediments and have the knowledge of its distribution and bioavailability. In this study, the modified SEDEX procedure was employed to quantify the different forms of P in sediments. The contents of phosphorus fractions in surface sediments were 0.20–0.89μmol/g for exchangeable-P (Exch-P), 0.37–2.86μmol/g for Fe-bound P (Fe-P), 0.61–3.07μmol/g for authigenic Ca-P (ACa-P), 6.39–13.73μmol/g for detrital-P (DAP) and 0.54–10.06μmol/g for organic P (OP). The distribution of Exch-P, Fe-P and OP seemed to be similar. The concentrations of Exch-P, Fe-P and OP were slightly higher in the Yellow Sea than that in the East China Sea, and low concentrations could be observed in the middle part of the ECS and southwest off Cheju Island. The distribution of ACa-P was different from those of Exch-P, Fe-P and OP. DAP was the major fraction of sedimentary P in the research region. The sum of Exch-P, Fe-P and OP may be thought to be potentially bioavailable P in the research region. The percentage of bioavailable P in TP ranged from 13%to 61%. Bioavailable P burial flux that appeared regional differences was affected by sedimentation rates, porosity and bioavailable P content, and the distribution of bioavailable P burial flux were almost the same as that of TP burial flux. 展开更多
关键词 phosphorus speciation burial flux SEDIMENT yellow Sea East China Sea
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Nonphytate Phosphorus Requirement and Efficacy of a Genetically Engineered Yeast Phytase for Yellow Broilers at 22- to 42-d-Old Age 被引量:6
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作者 JIANG Zong-yong ZHOU Gui-lian LIN Ying-cai JIANG Shou-qun LI De-zhong XI Peng-bin ZHANG Han-xing 《Agricultural Sciences in China》 CAS CSCD 2011年第2期304-311,共8页
An experiment was conducted to investigate the requirement of nonphytate phosphorus(nPP) and efficacy of a genetically engineered yeast phytase(PHY A) for Lingnan yellow broilers from 22-to 42-d-old age.A total of... An experiment was conducted to investigate the requirement of nonphytate phosphorus(nPP) and efficacy of a genetically engineered yeast phytase(PHY A) for Lingnan yellow broilers from 22-to 42-d-old age.A total of 1 320 1-d-old male chicks were randomly divided into 11 dietary treatment groups,which consisted of 4 replicate floor pens with 30 birds per pen.The control group(treatment 1) was fed with basal diet of nPP 0.08% without dicalcium phosphate or phytase supplementation.Dietary levels of nPP were 0.16,0.24,0.32,0.40,0.48,and 0.56%,respectively,for treatments 2 to 7,through addition of dicalcium phosphate(chemistry grade) to the basal diet.Diets of treatments 8 to 11 were supplemented with PHY A at 200,400 and 600 U kg-1,a commercial phytase product(PHY B) at 400 U kg-1 level,respectively.The birds in 0.32-0.56% nPP groups gained more than those of the other groups(P0.05).The nPP supplementation significantly improved feed intake(P0.05).The feed gain ratio was significantly decreased by 0.40% nPP diet compared to the control birds(P0.05).The level of 0.48% nPP was required for optimum tibia development.The additions of PHY A at 400 and 600 U kg-1 level and PHY B all significantly improved ADG(P0.05),ADFI(P0.05),and dry defatted tibia weight(P0.05).Similarly,the percentage of tibia ash was increased by 600 U kg-1 PHY A supplementation(P0.05).The requirement of nPP for maximal ADG and highest percentage tibia ash both was 0.40%.The phosphorus equivalency value of PHY A was estimated as 685 U kg-1 for male yellow broilers of 22-to 42-d-old age. 展开更多
关键词 nonphytate phosphorus growth tibia ash genetically engineered yeast phytase phosphorus equivalency value yellow broilers
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Corrosion of Different Materials in Combustion Chamber of Yellow Phosphorus Tail Gas in Industrial Boiler 被引量:2
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作者 郜华萍 宁平 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2010年第1期53-57,共5页
The corrosion of materials in combustion chamber of yellow phosphor tall gas was investrgated. The results reveal that the corrosion behavior is different for different materials under actual work conditions.
关键词 yellow phosphorus tail gas CORROSION industrial boiler CARBON metal material
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The use of yellow phosphorus to destroy toxic organic compounds 被引量:1
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作者 (Energy and Environment Division, Lawrence Berkeley Laboratory.Univeroity of California. Berkeley, CA 94720) Hu Keyuan Wang YizhongResearch Center for Eco-Environmental Sciences, Chinese Academy of Scienas, Beijing 100085, China 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 1994年第1期1-12,共12页
A new method for generating reactive species to destroy toxic organic chemicals has been developed. This method reacts yellow phosphorus with O_2, in moist air to produce species such as O,O_3, PO, and PO_2, which are... A new method for generating reactive species to destroy toxic organic chemicals has been developed. This method reacts yellow phosphorus with O_2, in moist air to produce species such as O,O_3, PO, and PO_2, which are capable of reacting with various types of organics. Toxic organic com-pounds are converted to small molecular wight organic acids, aldehydes, and/or alcohols, while yel-low phosphonis is oxidital into phosphoric acid, which may be recovered as a valuable byproduct.This technique has ben demonstrated to be effective for destroying many types of toxic organiccompounds. including PAH, aromatic chlorides, amines, alcohols, and acids, nitro-aromatics,heterocyclic hydrocarbons, PCB, aliphatic chlorides and sulfides, dyes, and pesticides. 展开更多
关键词 toxic organic compounds yellow phosphorus chemicals.
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The Risk Factors and Environm ental Risk Prediction during the Production of Yellow Phosphorus 被引量:1
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作者 Gao Ye Dong Guoli +3 位作者 Zhang Jie Gao Huaping Hu Xuewei Shi Jianwu 《Meteorological and Environmental Research》 CAS 2014年第10期17-21,共5页
Phosphorus is an important chemical raw material of economy. There are several risk factors in the entire production process of yellow phosphorus. The health of the production staff was greatly endangered by the toxic... Phosphorus is an important chemical raw material of economy. There are several risk factors in the entire production process of yellow phosphorus. The health of the production staff was greatly endangered by the toxic and harmful substances. The generation of risk factors was analyzed during the yellow phosphorus production and its harm was discussed,and several toxic and harmful substances were tested for a number of phosphorus manufacturing enterprises. The environmental risks of P2O5 in phosphorus pollution sources were scientifically predicted on the first time. 展开更多
关键词 yellow phosphorus Risk factors Environmental risk profile China
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Distribution and Changes of Specification of Phosphorus in the Yellow Sea
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作者 陈洪涛 陈淑珠 +2 位作者 张经 刘素美 吴强明 《Marine Science Bulletin》 CAS 2002年第2期32-38,共7页
The studies on the distribution and variation of the specification of phosphorus in the southern part of the Yellow Sea are made. The biogeochemistry of phosphorus in the Yellow Sea is discussed. The phosphorus is sli... The studies on the distribution and variation of the specification of phosphorus in the southern part of the Yellow Sea are made. The biogeochemistry of phosphorus in the Yellow Sea is discussed. The phosphorus is slightly higher in the bottom than in the surface waters in the southern part of the Yellow Sea and the dissolved organic phosphorus is the main form. The transfer patterns between various forms of particulate and dissolved phosphorus are different in the bottom and surface, probably due to the contribution of dissolved organic phosphorus. The distributions of dissolved inorganic phosphorus and dissolved organic phosphorus are mainly affected by the biological processes and could act as a prediction factor for the red tide. The supply of N and P in most of the areas in the southern part of the Yellow Sea is sufficient, without apparent limitation of N or P. 展开更多
关键词 yellow Sea phosphorus SPECIFICATION
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Accumulation Laws of Nitrogen and Phosphorus in Wetland Plants 被引量:1
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作者 ZHENG Huanqiang RONG Kun 《Journal of Landscape Research》 2017年第1期87-90,93,共5页
To study the accumulation regularity of nitrogen and phosphorus in typical constructive plants in coastal wetland,samples of Suaeda glauca(Bunge) Bunge,Phragmites austrahs and Tamarix chinensis Lour,were taken from th... To study the accumulation regularity of nitrogen and phosphorus in typical constructive plants in coastal wetland,samples of Suaeda glauca(Bunge) Bunge,Phragmites austrahs and Tamarix chinensis Lour,were taken from the Yellow River Delta National Coast Wetland Nature Reserve,nitrogen and phosphorus content in plants was measured and analyzed.The results showed that ① nitrogen and phosphorus content in different wetland plants is correlated;② different species in the same place and the same species in different spaces show different accumulation regularity of nitrogen and phosphorus;③ nitrogen and phosphorus content in plants is closely related to nitrogen and phosphorus content in the habitat;④ nitrogen content in T.chinensis Lour,is the highest,the mean is 11.63 g/kg,and phosphorus content in S glauca(Bunge) Bunge is the highest,the mean is 1.38 g/kg;⑤ nitrogen content in the 3 species:T.chinensis Lour.> S.glauca(Bunge) Bunge > P.australis;⑥ nitrogen content in aboveground parts of all plants is significantly higher than that in underground parts,and phosphorus content in aboveground parts of all plants except S.glauca(Bunge) Bunge is significantly higher than that in underground parts;⑦ nitrogen content in the 3 species in the study area is significantly higher than phosphorus content in these species. 展开更多
关键词 The yellow River Delta Wetland plant Nitrogen and phosphorus content Accumulation law
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China Raises Entry Threshold for Yellow Phosphorus Industry
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《China Chemical Reporter》 2009年第2期6-6,共6页
The updating entry to China’s yellow phosphorusindustry issued by the Ministryof Industry and Information Technologyis effective January 1st,2009.The move is to regulate the developmentof the yellow phosphorus indus... The updating entry to China’s yellow phosphorusindustry issued by the Ministryof Industry and Information Technologyis effective January 1st,2009.The move is to regulate the developmentof the yellow phosphorus industry。 展开更多
关键词 yellow phosphorus issued updating REGULATE yellow
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Initial Achievements in Readjustment to Yellow Phosphorus Industrial Policy
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作者 Wang Peilin, China Inorganic Salt Industry Association 《China Chemical Reporter》 2008年第28期23-23,共4页
Yellow phosphorus is one of the main raw materials of pesticides as well as one of the high energy-consuming products that are un-der strictly control of the Chinese government.In recent years the Chinese gov-ernment ... Yellow phosphorus is one of the main raw materials of pesticides as well as one of the high energy-consuming products that are un-der strictly control of the Chinese government.In recent years the Chinese gov-ernment has issued a series of industrial poli-cies to promote an orderly development of the yellow phosphorus sector.It is definedin the"Guiding Directory for the Industrial Restructuring in 2007"formulated by 展开更多
关键词 PESTICIDES SECTOR phosphorus yellow consuming form
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Yellow Phosphorus Market Remains Sluggish
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《China Chemical Reporter》 2009年第26期27-28,共6页
Since 2008,according to the economicsituation,the Chinese government has ad-justed the yellow phosphorus export tarifffor several times.It levied a 100% additionalexport tariff on yellow phosphorus on May20th,2008 and... Since 2008,according to the economicsituation,the Chinese government has ad-justed the yellow phosphorus export tarifffor several times.It levied a 100% additionalexport tariff on yellow phosphorus on May20th,2008 and then adjusted the additionaltariff from 100% down to 75% on December1st,2008 and later down to 50% on January1st,2009.Since July 1st,2009,China 展开更多
关键词 yellow phosphorus TARIFF DOWNSTREAM HUBEI Jiangsu
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China Adds Tariff on Exports of Phosphorus Products
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《China Chemical Reporter》 2008年第16期5-5,共4页
China levies a 100% special tariff on ex-ports of all phosphorus products on the current export tariff range from 10% to 20%,effective from May 20th to Decem-ber 31 st,2008.Phosphate rock,phospho-rus yellow and phosph... China levies a 100% special tariff on ex-ports of all phosphorus products on the current export tariff range from 10% to 20%,effective from May 20th to Decem-ber 31 st,2008.Phosphate rock,phospho-rus yellow and phosphate salts are involved in the list."The measure is required by heavy dam-ages of phosphorus mills in the quake-hitareas,Sichuan province,"chemical insid- 展开更多
关键词 TARIFF phosphorus yellow SALTS fertilizers rock QU
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Malong to Build Sodium Formate Facility
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《China Chemical Reporter》 2009年第17期10-10,共6页
Yunnan Malong Chemical Co.,Ltd.(Malong,SH:600792) announced on May 18th to build a20 thousand t/a sodium formate facility usingtail gas produced in yellow phosphorus electricstove as feedstock.
关键词 FEEDSTOCK thousand FACILITY phosphorus yellow Sodi
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Inorganics
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《China Chemical Reporter》 2009年第27期15-16,共6页
Guizhou Kailin Ready to Start upYellow Phosphorus ProjectOn September 1st, Guizhou Kailin (Group) Co., Ltd. (GuizhouKailin) basically installed the key body of yellow phosphorusfurnace of its yellow phosphorus debottl... Guizhou Kailin Ready to Start upYellow Phosphorus ProjectOn September 1st, Guizhou Kailin (Group) Co., Ltd. (GuizhouKailin) basically installed the key body of yellow phosphorusfurnace of its yellow phosphorus debottlenecking project thatmatching its advanced phosphogypsum production line.The debottlenecking project is ready to run wet commissioningin late September and come on stream in late October of2009. Construction on the project was started in October 2008.The project with an investment of RMB182.45 millioncovers five sets of energy-saving yellow phosphorus pro- 展开更多
关键词 installed GUIZHOU yellow phosphorus basically annu
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Xingfa Increases Phosphate Mine Resources
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《China Chemical Reporter》 2010年第13期9-9,共11页
Hubei Xingfa Chemicals Group Co.,Ltd.(Xingfa,SH:600141) announced in June it acquiredXingshan County Shukongping MineCo.,Ltd.for a consideration of RMB81.07million.This acquisition is an important step forXingfa to in... Hubei Xingfa Chemicals Group Co.,Ltd.(Xingfa,SH:600141) announced in June it acquiredXingshan County Shukongping MineCo.,Ltd.for a consideration of RMB81.07million.This acquisition is an important step forXingfa to increase the phosphate mine re- 展开更多
关键词 HUBEI RESERVES phosphorus SULFOXIDE yellow
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