对FCC汽油萃取精馏耦合重组分加氢脱硫进行了研究。首先在连续萃取精馏小试装置上,以N-甲酰基吗啉为萃取剂考察萃取精馏脱硫效果。在优化的工艺条件下,塔顶低硫精制油收率达64.2%(v),硫含量26 mg L 1,总脱硫率达86.3%;塔底富硫重组分硫...对FCC汽油萃取精馏耦合重组分加氢脱硫进行了研究。首先在连续萃取精馏小试装置上,以N-甲酰基吗啉为萃取剂考察萃取精馏脱硫效果。在优化的工艺条件下,塔顶低硫精制油收率达64.2%(v),硫含量26 mg L 1,总脱硫率达86.3%;塔底富硫重组分硫含量为366 mg L 1,收率为35.8%。随后在小型固定床上采用FGH-31催化剂对富硫重组分进行加氢脱硫,在优化操作条件下重组分加氢后硫含量降为9.5 mg L 1,脱硫率达97.4%。萃取精馏的低硫精制油和经过加氢脱硫后的重组分均可作为优良的欧IV汽油调和组分。展开更多
采用0.05mol.L-1的EDTA作为萃取剂,在一定的萃取条件下,对2种尾矿土壤中重金属进行土壤柱萃取实验,并采用优化的BCR(European Community Bureau of Reference)连续萃取方案对萃取前后的Pb、Zn、Cu和Cd进行形态分析.研究EDTA对4种金属的...采用0.05mol.L-1的EDTA作为萃取剂,在一定的萃取条件下,对2种尾矿土壤中重金属进行土壤柱萃取实验,并采用优化的BCR(European Community Bureau of Reference)连续萃取方案对萃取前后的Pb、Zn、Cu和Cd进行形态分析.研究EDTA对4种金属的萃取效率及萃取前后的形态变化特征.结果表明,EDTA能有效的从土壤中萃取该4种金属,萃取效率依次为:Cd>Zn>Cu>Pb;金属的4种形态均能被EDTA萃取;在浅层土壤中,EDTA对酸可提态的金属的萃取效果尤为显著;在深层土壤中,酸可提取态、氧化物结合态、有机结合态和残余态4种形态的金属萃取效果,随着土壤柱深度的增加而降低.展开更多
为了评价生物法浸取电解锰渣中锰的可行性,利用锰渣土壤中筛选出的2种锰抗性强的微生物Serratiasp.和Fusariumsp.浸取电解锰渣中的锰,并采用优化的BCR(European Commun ity Bureau of Reference)连续萃取方案对浸取前后的金属锰进行形...为了评价生物法浸取电解锰渣中锰的可行性,利用锰渣土壤中筛选出的2种锰抗性强的微生物Serratiasp.和Fusariumsp.浸取电解锰渣中的锰,并采用优化的BCR(European Commun ity Bureau of Reference)连续萃取方案对浸取前后的金属锰进行形态分析,研究其浸出率和浸取前后锰的形态变化特征。同时考察了3种萃取剂EDTA、HNO3和CaC l2对锰的萃取效率及萃取后金属锰的形态变化。研究结果表明,Serratiasp.和Fusariumsp.对锰都表现出一定的浸取能力,Fu-sariumsp.的浸取能力尤为显著,3 d后锰浸出率达到56.5%,为锰污染的微生物治理和资源化利用提供科学依据。3种萃取剂对锰的浸取效果为EDTA>HNO3>CaC l2,平均萃取效率依次为50.0%、28.8%和21.2%。浸取前后,酸溶解态锰所占比例变化较显著,说明酸溶解态锰是比较容易浸取的形态。展开更多
The efficiency of EDTA, HNO3 and CaCl2 as extractants to remove Pb, Zn and Cu from tailing soils without varying soil pH was investigated with distributions of Pb, Zn and Cu being determined before and after extractio...The efficiency of EDTA, HNO3 and CaCl2 as extractants to remove Pb, Zn and Cu from tailing soils without varying soil pH was investigated with distributions of Pb, Zn and Cu being determined before and after extraction using the sequential extraction procedure of the optimized European Community Bureau of Reference (BCR). Results indicated that EDTA and HNO3 were both effective extracting agents.The extractability of extractants for Pb and Zn was in the order EDTA > HNO3 > CaCl2, while for Cu it was HNO3 > EDTA > CaCl2. After EDTA extraction, the proportion of Pb, Zn and Cu in the four fractions varied greatly, which was related to the strong extraction and complexation ability. Before and after extraction with HNO3 and CaCl2, the percentages of Pb, Zn and Cu in the reducible, oxidizable and residual fractions changed little compared to the acid-extractable fraction. The lability of metal in the soil and the kinds of extractants were the factors controlling the effects of metal extraction.展开更多
In most arid and semiarid soils, naturally occurring phosphorus(P) is a major yield-limiting plant nutrient. In this study, to investigate the effects of organic(OP) and inorganic P(IP) sources on P fractionation, a c...In most arid and semiarid soils, naturally occurring phosphorus(P) is a major yield-limiting plant nutrient. In this study, to investigate the effects of organic(OP) and inorganic P(IP) sources on P fractionation, a calcareous sandy loam alkaline soil was fertilized with OP and IP fertilizers at low(80 mg P kg^(-1) soil) and high(160 mg P kg^(-1) soil) application rates. Three combinations of OP and IP(i.e., 75% OP + 25% IP, 50% OP + 50% IP, and 25% OP + 75% IP) were applied at low and high application rates,respectively, followed by soil aging for 21 d. Soil samples were collected after 1, 2, 3, 7, and 21 d and subjected to sequential extraction to analyze soluble and exchangeable, Fe-and Al-bound, Ca-bound, and residual P fractions. The soluble and exchangeable P fraction significantly increased up to 24.3%, whereas the Ca-bound fraction decreased up to 40.7% in the soils receiving 75% OP + 25% IP and 50% OP + 50% IP, respectively, compared with the control(receiving no P fertilizer). However, the transformation of P fractions was influenced by aging time. Addition of P sources caused instant changes in different P fractions, which then tended to decline with aging time. Change in soil p H was the limiting factor in controlling P availability. At high application rate, the OP source significantly increased soil P availability compared with the IP source with soil aging. Depending on P fractionation, a proper combination of OP and IP fertilizers, as long-term slow and instant P-releasing sources for plant uptake, respectively, may be a sustainable strategy to meet crop P requirements in the arid and semiarid soils.展开更多
文摘对FCC汽油萃取精馏耦合重组分加氢脱硫进行了研究。首先在连续萃取精馏小试装置上,以N-甲酰基吗啉为萃取剂考察萃取精馏脱硫效果。在优化的工艺条件下,塔顶低硫精制油收率达64.2%(v),硫含量26 mg L 1,总脱硫率达86.3%;塔底富硫重组分硫含量为366 mg L 1,收率为35.8%。随后在小型固定床上采用FGH-31催化剂对富硫重组分进行加氢脱硫,在优化操作条件下重组分加氢后硫含量降为9.5 mg L 1,脱硫率达97.4%。萃取精馏的低硫精制油和经过加氢脱硫后的重组分均可作为优良的欧IV汽油调和组分。
文摘采用0.05mol.L-1的EDTA作为萃取剂,在一定的萃取条件下,对2种尾矿土壤中重金属进行土壤柱萃取实验,并采用优化的BCR(European Community Bureau of Reference)连续萃取方案对萃取前后的Pb、Zn、Cu和Cd进行形态分析.研究EDTA对4种金属的萃取效率及萃取前后的形态变化特征.结果表明,EDTA能有效的从土壤中萃取该4种金属,萃取效率依次为:Cd>Zn>Cu>Pb;金属的4种形态均能被EDTA萃取;在浅层土壤中,EDTA对酸可提态的金属的萃取效果尤为显著;在深层土壤中,酸可提取态、氧化物结合态、有机结合态和残余态4种形态的金属萃取效果,随着土壤柱深度的增加而降低.
文摘为了评价生物法浸取电解锰渣中锰的可行性,利用锰渣土壤中筛选出的2种锰抗性强的微生物Serratiasp.和Fusariumsp.浸取电解锰渣中的锰,并采用优化的BCR(European Commun ity Bureau of Reference)连续萃取方案对浸取前后的金属锰进行形态分析,研究其浸出率和浸取前后锰的形态变化特征。同时考察了3种萃取剂EDTA、HNO3和CaC l2对锰的萃取效率及萃取后金属锰的形态变化。研究结果表明,Serratiasp.和Fusariumsp.对锰都表现出一定的浸取能力,Fu-sariumsp.的浸取能力尤为显著,3 d后锰浸出率达到56.5%,为锰污染的微生物治理和资源化利用提供科学依据。3种萃取剂对锰的浸取效果为EDTA>HNO3>CaC l2,平均萃取效率依次为50.0%、28.8%和21.2%。浸取前后,酸溶解态锰所占比例变化较显著,说明酸溶解态锰是比较容易浸取的形态。
基金Project supported by the National High Technology Research and Development Program (863 Program) of China(No. 2001AA644020)the Natural Science Foundation of Hunan Province (No. 04JJ3013)
文摘The efficiency of EDTA, HNO3 and CaCl2 as extractants to remove Pb, Zn and Cu from tailing soils without varying soil pH was investigated with distributions of Pb, Zn and Cu being determined before and after extraction using the sequential extraction procedure of the optimized European Community Bureau of Reference (BCR). Results indicated that EDTA and HNO3 were both effective extracting agents.The extractability of extractants for Pb and Zn was in the order EDTA > HNO3 > CaCl2, while for Cu it was HNO3 > EDTA > CaCl2. After EDTA extraction, the proportion of Pb, Zn and Cu in the four fractions varied greatly, which was related to the strong extraction and complexation ability. Before and after extraction with HNO3 and CaCl2, the percentages of Pb, Zn and Cu in the reducible, oxidizable and residual fractions changed little compared to the acid-extractable fraction. The lability of metal in the soil and the kinds of extractants were the factors controlling the effects of metal extraction.
基金supported by the International Research Group Project (No. IRG-14-02) from the Deanship of Scientific Research at King Saud University, Saudi Arabia
文摘In most arid and semiarid soils, naturally occurring phosphorus(P) is a major yield-limiting plant nutrient. In this study, to investigate the effects of organic(OP) and inorganic P(IP) sources on P fractionation, a calcareous sandy loam alkaline soil was fertilized with OP and IP fertilizers at low(80 mg P kg^(-1) soil) and high(160 mg P kg^(-1) soil) application rates. Three combinations of OP and IP(i.e., 75% OP + 25% IP, 50% OP + 50% IP, and 25% OP + 75% IP) were applied at low and high application rates,respectively, followed by soil aging for 21 d. Soil samples were collected after 1, 2, 3, 7, and 21 d and subjected to sequential extraction to analyze soluble and exchangeable, Fe-and Al-bound, Ca-bound, and residual P fractions. The soluble and exchangeable P fraction significantly increased up to 24.3%, whereas the Ca-bound fraction decreased up to 40.7% in the soils receiving 75% OP + 25% IP and 50% OP + 50% IP, respectively, compared with the control(receiving no P fertilizer). However, the transformation of P fractions was influenced by aging time. Addition of P sources caused instant changes in different P fractions, which then tended to decline with aging time. Change in soil p H was the limiting factor in controlling P availability. At high application rate, the OP source significantly increased soil P availability compared with the IP source with soil aging. Depending on P fractionation, a proper combination of OP and IP fertilizers, as long-term slow and instant P-releasing sources for plant uptake, respectively, may be a sustainable strategy to meet crop P requirements in the arid and semiarid soils.