首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 171 毫秒
1.
柠檬酸存在下酸性土壤中铝溶解动力学的初步研究   总被引:2,自引:0,他引:2  
李九玉  徐仁扣 《生态环境》2004,13(4):641-642
用一次平衡法研究了柠檬酸存在下砖红壤和红壤中铝的溶解动力学并与高岭石的结果进行比较,结果表明土壤铝的溶解速率比高岭石中的大得多,这主要因为土壤中交换态铝和无定形氧化铝的溶解速率较快,而粘土矿物中铝的溶解速率比较缓慢。红壤中硅、铝释放量的比较证明了这一假设,反应41.5h,硅的释放量仅为铝的8%。48h内铝的溶解动力学曲线可分为3个阶段:0-30min的快反应阶段,主要是土壤交换态铝和结晶不良的氧化铝的溶解;30-120min的较快反应阶段,主要是铝氧化物的溶解;120min后的慢反应阶段,主要是氧化铝和粘土矿物中铝的溶解。  相似文献   

2.
低分子量有机酸对可变电荷土壤吸附铝的影响机制   总被引:3,自引:0,他引:3  
徐仁扣  姜军 《生态环境》2005,14(2):253-256
通过吸附性铝的解吸实验研究了低分子量有机酸对三种可变电荷土壤(2种砖红壤和1种赤红壤)吸附铝的影响机制,结果表明,柠檬酸、苹果酸和酒石酸等带有3个及3个以上活性官能团的有机酸在低pH条件下可以通过形成土壤一有机酸一铝三元表面络合物和增加土壤的表面负电荷两种机制显著增加土壤对铝离子的吸附量,但以前一种影响机制为主。乳酸、水杨酸、草酸和丙二酸等带有2个活性官能团的有机酸仅通过改变土壤的表面负电荷影响铝的吸附。土壤氧化铁是土壤吸附有机酸的主要载体,当用化学方法将土壤中的氧化铁除去后,有机酸对铝吸附的影响变小。在pH5.0时有机酸主要通过形成可溶性有机铝络合物减小土壤对铝的吸附,但有机酸的存在增加了Al^3 在吸附性铝中所占的比例,导致铝的解吸率增加。土壤中大量氧化铁的存在使其即使在低pH下也能对铝离子发生专性吸附,导致吸附性铝的解吸率减小。  相似文献   

3.
在固定床、柱塞流反应器中,以浓度跃变方法进行过程应答实验,研究了在V2O5-TiO2催化剂上,存在O2时NO与NH3进行的选择性还原反应。根据应答曲线提出了该过程的反应历程,认为:反应是在吸附态的NH3与NO物种之间进行的,其速率控制步骤是NO的吸附;催化剂表面Vs^4+—OH再氧化为V^5+=0所需要的氧,可以从气相、也可以从体相骨架中逐层获得,而从V2O5体相骨架传递氧到表面是通过一个“氧空穴  相似文献   

4.
为考察土壤锰氧化物的还原溶解行为,本文选取常见的根系分泌的8种有机酸(抗坏血酸、香草酸、柠檬酸、草酸、酒石酸、水杨酸、半胱氨酸和邻苯二甲酸)和1种酚类化合物(邻苯二酚),人工合成的Mn O2和5种富含氧化锰的土壤(广东徐闻的砖红壤、海南澄迈的砖红壤、云南昆明的砖红壤、浙江嵊县的红壤和江苏南京的黄棕壤),研究了有机化合物对氧化锰的还原溶解作用.结果表明,较低p H和较高温度有利于有机化合物对Mn O2的还原溶解.在p H 4.5—5.5和温度5—45℃范围内,不同有机化合物还原溶解Mn O2能力的大小顺序为:邻苯二酚半胱氨酸抗坏血酸香草酸柠檬酸草酸≈酒石酸水杨酸≈邻苯二甲酸.邻苯二酚、半胱氨酸和抗坏血酸对土壤中氧化锰也有较强的还原溶解能力.当5种土壤比较时,徐闻砖红壤中还原溶解出的锰量最高,其次为昆明砖红壤,嵊县红壤中还原溶解出的锰量最小.当有还原性有机化合物存在时徐闻砖红壤、昆明砖红壤和澄迈砖红壤中的氧化锰容易发生还原溶解反应,增加土壤中可溶态和交换态Mn2+的含量,并可能对植物产生锰毒害.  相似文献   

5.
PCDDs在氯仿溶液中的紫外光解   总被引:11,自引:1,他引:10  
包志成  郑明辉 《环境化学》1995,14(3):190-195
使用NDC-3型化学反应仪、300W汞灯和15ml反应管,于43℃进行了2,3,7,8-TCDD,1,2,3,7,8-P5CDD,1,2,3,4,7,8-HxCDD,1,2,3,4,6,7,8-HpCDD和OCDD在氯仿溶中的紫外光解,其一级反应速率常数测得值依次为0.54,0.29,0.15,0.15和0.19min^-1,反应半衰期t1/2均在5min以内,还原脱氯是主要的光解途径,并有大量低  相似文献   

6.
多氯代二恶英在土壤表面的紫外光解研究   总被引:8,自引:0,他引:8  
张志军  包志成 《环境化学》1996,15(6):541-546
本文利用500W中压汞灯研究了二恶英在干燥土壤中的紫外光解,根据光解结果计算了土壤中二恶英的降解深度,并分析了五氯代二恶英(PeCDD)的光解产物,结果表明,二恶英在土表面发生了较快的光解反应,反应在2h内基本完成,降解深度为0.027mm,对PeCCD光解产物的分析结果显示,二恶英在土壤表面紫外光降解的主要途径为脱氯,而且脱氯优先发生在邻位下。  相似文献   

7.
铁还原菌介导的氧化铁还原与硝酸盐还原的竞争效应研究   总被引:1,自引:0,他引:1  
中性厌氧条件下,脱色希瓦氏菌Shewanella decolorationis(S12)能够使用多种电子受体进行厌氧呼吸,包括溶解态的硝酸盐以及难溶态的氧化铁基质。因此,本文通过构建"脱色希瓦氏菌/铁氧化物/硝态氮"的交互反应体系,研究这一体系中铁还原与硝态氮还原的相互作用过程,并对相互作用机制进行初步探讨。结果表明,交互反应体系中氧化铁还原与硝酸盐还原存在明显的竞争关系;随着氧化铁比表面积、可利用态铁含量的增大,硝酸受抑制作用逐渐增强;通过不同温度煅烧而得到的不同结晶度的赤铁矿对硝态氮的抑制作用也被研究。结果还表明,氧化铁结晶度越高,S12对硝态氮的还原抑制作用越小。循环伏安电化学测试结果发现,加入硝酸条件下,铁氧化峰几乎完全消失,表明硝态氮存在条件下,铁还原受到明显抑制。针对以上结果,初步探讨了铁还原与硝态氮还原竞争的原因,即:(1)Fe(Ⅲ)与NO3–同时作为电子受体,因竞争电子而受到抑制;(2)吸附态Fe(Ⅱ)物种还原NO3–,导致Fe(Ⅱ)累积减少,NO3–还原因产生的Fe(Ⅱ)的低速率而被抑制。  相似文献   

8.
有机酸对砖红壤的溶解及固定态磷素的活化   总被引:7,自引:0,他引:7  
选择柠檬酸、草酸、酒石酸和苹果酸4种土壤中常见有机酸为研究对象,研究了它们与砖红壤反应后,Fe、Al的溶出特征以及P的释放规律,并对上述反应的机制进行了探讨.结果表明,草酸、酒石酸和苹果酸3种有机酸与土壤反应24h后,溶液中总Fe浓度随反应体系pH值升高而降低,但柠檬酸与土壤反应24h后,溶液中总Fe浓度则随反应体系pH值升高而增加.4种有机酸溶出土壤Fe的能力按草酸柠檬酸酒石酸苹果酸的顺序下降,溶出机制主要是络合溶解和还原溶解.溶液中Al的溶出量在4种有机酸-土壤体系中均随体系pH值升高而降低,且按草酸柠檬酸≈酒石酸苹果酸的顺序下降,溶出机制主要是质子溶解和络合溶解.有机酸对固定态磷素有明显活化效应,在草酸、酒石酸和苹果酸3种有机酸-土壤体系中,溶液中P浓度均随体系pH值升高而降低,但在柠檬酸-土壤体系中,则随体系pH值升高而增加.溶液中Al/P物质的量之比要远大于Fe/P物质的量之比,这表明土壤中P主要结合在铁氧化物表面,其活化与铁氧化物的溶解过程关系密切.此外,Al的存在对草酸活化固定态P有抑制作用。  相似文献   

9.
应用X射线衍射和化学分析等手段研究了中南地区几种地带性土壤中的氧化铁类型与钼吸附的关系,结果表明:供试土壤粘粒的氧化铁以晶质氧化铁为主,非晶质氧化铁含量低;砖红壤和赤红壤中的晶质氧化铁以赤铁矿为主.其次为针铁矿;红壤、棕红壤中针铁矿含量比赤铁矿含量稍高,黄棕壤中的晶质氧化铁全为针铁矿;针铁矿的平均晶粒大小(MCD)一般比赤铁矿的小,而比表面积却比赤铁矿的大;针铁矿型氧化铁的钼吸附量比针-赤混合型氧化铁的高,从砖红壤到黄棕壤.单位重量的晶质氧化铁的钼吸附量随G/(G+H)比值的升高而增大.  相似文献   

10.
研究了纳米氧化铁吸附Cr(Ⅵ)反应特征及其对柠檬酸还原Cr(Ⅵ)的催化作用,并探讨了该作用的土壤环境意义.结果表明,纳米氧化铁对Cr(Ⅵ)的吸附能力较强;提高p H和离子强度对吸附过程有抑制作用;吸附速率可区分为快、慢阶段,5 min内吸附量可占总吸附量80%以上.纳米氧化铁可加速柠檬酸还原Cr(Ⅵ),且还原过程主要发生在溶液相,部分机理是柠檬酸与Fe(Ⅲ)相互作用生成的Fe(Ⅱ)将Cr(Ⅵ)还原.同时,体系p H越低,上述催化作用越明显.此外,砖红壤-柠檬酸体系Cr(Ⅵ)还原转化为Cr(Ⅲ)的比例较低,但加入纳米氧化铁后则明显提高,说明后者将有助于消除土壤环境中Cr(Ⅵ)污染风险.  相似文献   

11.
The total concentration-based regulations for soil remediation do not consider the possible changes in bioaccessibility of remaining arsenic (As) in soils due to biogeochemical interactions after remediation. This study used As-contaminated soil and pore water samples that were collected from the rice paddy and forest/farmland located in the vicinity of a former smelter site in Republic of Korea to elucidate the changes in As bioaccessibility due to biogeochemical interactions. Bioaccessibility and chemical forms of As in soils were determined by using an in vitro method and sequential extraction, respectively, and soil microbial community was evaluated. Bioaccessibility of As in the rice paddy soil samples was higher than that in the forest/farmland soil samples. This could be attributed to relatively higher dependence of bioaccessible As in the rice paddy soils on the soil concentration of iron (Fe), aluminum, or manganese, which could lead to greater changes in bioaccessible As via reductive dissolution. The strong linear relationship (R 2 = 0.90, p value ≤0.001) between the pore water As and Fe concentrations, and the greater portion of bacterial species related to reductive dissolution of Fe oxides in the rice paddies can support the higher As bioaccessibility promoted by reductive dissolution. Therefore, it is necessary to consider the potential changes in the bioaccessible As due to biogeochemical interactions in remediation of As-contaminated soils, particularly when soils are likely to be reused under reductive dissolution-promoting conditions (e.g., flooded conditions).  相似文献   

12.
红壤胶体铁氧化物界面有机氯的非生物转化研究进展   总被引:7,自引:0,他引:7  
综述了红壤胶体铁氧化物的结构、形态及其转化;铁氧化物界面有机氯的非生物转化过程及其影响因素;异化铁还原作用下的有机氯转化过程。有机氯的非生物转化主要包括氧化转化与脱氯转化过程。氧化转化包括暗态下的化学氧化与光化学氧化过程;脱氯转化包括脱氢卤化、加氢脱氯、脱双卤、二聚脱氯与亲核置换脱氯等反应过程。有机氯的非生物转化主要受胶体界面pH、Eh、水溶性有机物、金属离子、铁氧化物形态与铁还原细菌等的显著影响。有机氯非生物转化的化学-微生物耦合机制、复合污染条件下重金属对界面有机氯非生物转化过程的影响机制、红壤胶体界面有机氯污染的综合调控技术方法等三个方面值得关注,有助于推动土壤胶体界面环境化学的发展。  相似文献   

13.
Mixed contamination by organic and inorganic compounds in soil is a serious problem for remediation. Most laboratory studies and field-scale trials focused on individual contaminant in the past. For concurrent bioremediation by biodegradation and bioleaching processes, we tested metal-reducing microorganism, Geobacter metallireducens. In order to prove the feasibility of the coupled process, multiple-contaminated soil was prepared. Mineralogical analyses have shown the existence of labile forms of As(V) as amorphous and/or weakly sorbed phases in the secondary Fe oxides. In the biotic experiment using G. metallireducens, biodegradation of toluene and bioleaching of As by bacteria were observed simultaneously. Bacteria accelerated the degradation rate of toluene with reductive dissolution of Fe and co-dissolution of As. Although there have been many studies showing each individual process, we have shown here that the idea of concurrent microbial reaction is feasible. However, for the practical use as a remediation technology, more details and multilateral evaluations are required in future studies.  相似文献   

14.
Redox conditions in paddy soils may vary as they are submerged and drained during rice growth. This change may bring about reductive dissolution of iron (Fe) oxides and subsequent formation of secondary Fe-bearing minerals in rice paddies. The mobility and bioavailability of metal contaminants such as cadmium (Cd) in paddy soils are closely related to the chemical behaviors of Fe. Therefore, in this paper, advances in the study of paddy Fe redox transformations and their effects on Cd availability to rice are briefly reviewed. Current concepts presented in this review include the forms of Fe in paddy soils, the reactions involved in Fe oxidation-reduction, chemical factors affecting Fe redox processes, Cd availability to rice and the impacts of Fe transformation on Cd uptake and translocation in rice. Prospects for future research in this area are also discussed.  相似文献   

15.

Mixed contamination by organic and inorganic compounds in soil is a serious problem for remediation. Most laboratory studies and field-scale trials focused on individual contaminant in the past. For concurrent bioremediation by biodegradation and bioleaching processes, we tested metal-reducing microorganism, Geobacter metallireducens. In order to prove the feasibility of the coupled process, multiple-contaminated soil was prepared. Mineralogical analyses have shown the existence of labile forms of As(V) as amorphous and/or weakly sorbed phases in the secondary Fe oxides. In the biotic experiment using G. metallireducens, biodegradation of toluene and bioleaching of As by bacteria were observed simultaneously. Bacteria accelerated the degradation rate of toluene with reductive dissolution of Fe and co-dissolution of As. Although there have been many studies showing each individual process, we have shown here that the idea of concurrent microbial reaction is feasible. However, for the practical use as a remediation technology, more details and multilateral evaluations are required in future studies.

  相似文献   

16.
用双氧水破坏土壤有机质和用DCB(连二亚硫酸钠/柠檬酸钠/重碳酸钠)脱铁等方法研究湘南第四纪红粘土及其发育的土壤的表面电荷性质.结果表明:去除土壤有机质.使红壤胶体表面的阴离子交换量(AEC)增加、可变负电荷量(CECV)降低,在多数情况下其永久负电荷量(CECP)增加;脱游离氧化铁使红壤AEC减少、CECp增加,CECV增减不一.笔者认为,这与土壤胶体组分之间的相互作用有关.  相似文献   

17.
Mixed contamination by organic and inorganic compounds in soil is a serious problem for remediation. Most laboratory studies and field-scale trials focused on individual contaminant in the past. For concurrent bioremediation by biodegradation and bioleaching processes, we tested metal-reducing microorganism, Geobacter metallireducens. In order to prove the feasibility of the coupled process, multiple-contaminated soil was prepared. Mineralogical analyses have shown the existence of labile forms of As(V) as amorphous and/or weakly sorbed phases in the secondary Fe oxides. In the biotic experiment using G. metallireducens, biodegradation of toluene and bioleaching of As by bacteria were observed simultaneously. Bacteria accelerated the degradation rate of toluene with reductive dissolution of Fe and co-dissolution of As. Although there have been many studies showing each individual process, we have shown here that the idea of concurrent microbial reaction is feasible. However, for the practical use as a remediation technology, more details and multilateral evaluations are required in future studies.  相似文献   

18.
两种土壤中对硝基氯苯被Fe~0还原的对比研究   总被引:1,自引:0,他引:1  
利用零价铁(Fe~0)还原技术修复受对氯硝基苯(p-CNB)污染的土壤,研究常温常压下松砂土和中壤土两种不同土壤的理化性质对还原反应的影响.结果表明:Fe0能有效还原松砂土和中壤土中的p-CNB,生成对应的苯胺化合物,降低毒性;当土壤中p-CNB的含量约为2.5×10~(-6)mol·g~(-1),Fe~0用量为25 mg·g~(-1),反应体系中水分含量为0.75 mL·g~(-1)时,于25℃反应2 h后,松砂土和中壤土中p-CNB的还原率均超过93%;还原反应在中壤土中进行得较快.污染物在土壤中的老化时间对Fe~0还原降解效果影响很小,而土壤粒径、土壤是否灭菌以及土壤有机质含量等因素则对还原有较明显影响;还原降解反应在没有灭菌、有机质含量较高且粒径偏小的壤土中进行得最彻底.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号