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1.
以太湖地区代表性的青紫泥、黄泥土、白土等3种水稻土为研究对象,采用低能量分离-分散法提取得到不同粒径的团聚体颗粒组,用HPLC测定了本土和分离得到的团聚体颗粒组中16种PAHs的含量.结果表明,供试水稻土不同粒径的团聚体颗粒组中PAHs含量分布存在差异,PAHs总含量以<2μm粒径的团聚体颗粒组最高,其次是200~2000μm粒径的团聚体颗粒组,PAHs在这2个团聚体颗粒组有明显富集现象(富集系数为1.25~3.92);而20~200μm和2~20 μm粒径的团聚体颗粒组中PAHs含量小于本土,呈现亏缺现象(富集系数为0.64~0.88).考虑到不同粒径团聚体颗粒组的相对组成,水稻土中PAHs主要分布于20~200μm和200~2000μm 2个团聚体颗粒组中,而在<2μm粒径的团聚体颗粒组中最少.PAHs在不同粒径的团聚体颗粒组中的含量分布与其总有机碳、腐殖质碳、胡敏酸碳的含量有关,并在很大程度上受芳构化疏水性有机物含量的控制.因此,水稻土不同粒径团聚体颗粒中有机碳及其组分的性质影响着这些团聚体颗粒组分对PAHs的吸持与固定.  相似文献   

2.
采用原状土样分离技术,研究了太湖地区几种主要水稻土示同颗粒中重金属元素Pb、Cr、Cd的分布,结果表明这些元素在不同粒径的土壤颗粒中分配迥异,重金属含量在>0.25mm的粗颗粒和<0.002mm的细颗粒中较高,且与土壤有机碳有密切的关系;重金属元素主要积累于>0.25mm的粗颗粒中,Cd的粗颗粒积累比Pb、Cr更强烈,耕层土壤重金属的颗粒分配因土壤种类不同而异,并响应于土壤环境变化,提出以分馏系数表示重金属在土壤颗粒的分配特点。  相似文献   

3.
Effects of free iron oxyhydrates (Fed) and soil organic matter (SOM) on copper (Cu2+) sorption-desorption behavior by size fractions of aggregates from two typical paddy soils (Ferric-Accumulic Stagnic Anthrosol (Soil H) and Gleyic Stagnic Anthrosol (Soil W)) were investigated with and without treatment of dithionite-citrate-bicarbonate and of H2O2. The size fractions of aggregates were obtained from the undisturbed bulk topsoil using a low energy ultrasonic dispersion procedure. Experiments of equilibrium sorption and subsequent desorption were conducted at soil water ratio of 1:20, 25℃. For Soil H, Cu2+ sorption capacity of the DCB-treated size fractions was decreased by 5.9% for fine sand fraction, by 40.4% for coarse sand fraction, in comparison to 2.9% for the bulk sample. However, Cu2+ sorption capacities of the H2O2-treated fractions were decreased by over 80% for the coarse sand fraction and by 15% for the clay-sized fraction in comparison to 88% for bulk soil. For Soil W, Cu2+ sorption capacity of the DCB-treated size fraction was decreased by 30% for the coarse sand fraction and by over 75% for silt sand fraction in comparison to 44.5% for the bulk sample. Cu2+ sorption capacities of the H2O2-treated fractions were decreased by only 2.0% for the coarse sand fraction and by 15% for the fine sand fraction in comparison to by 3.4% for bulk soil. However, Cu2+ desorption rates were increased much in H2O2-treated samples by over 80% except the clay-sized fraction (only 9.5%) for Soil H. While removal of SOM with H2O2 tendend to increase desorption rate, DCB- and H2O2-treatments caused decrease in Cu2+ retention capacity of size fractions. Particularly, there hardly remained Cu2+ retention capacity by size fractions from Soil H after H2O2 treatment except for clay-sized fraction. These findings supported again the dominance of the coarse sand fraction in sorption of metals and the preference of absorbed metals bound to SOM in differently stabilized status among the size fractions. Thus, enrichment and turnover of SOM in paddy soils may have great effects on metal retention and chemical mobility in paddy soils.  相似文献   

4.
We measured organic carbon input and content of soil in two wetland areas of Chongming Dongtan (Yangtze River Estuary) to evaluate variability in organic carbon accumulation capability in di erent wetland soils. Observed di erences were investigated based on the microbial activity and environmental factors of the soil at the two sites. Results showed that the organic carbon content of wetland soil vegetated with Phragmites australis (site A) was markedly lower than that with P. australis and Spartina alterniflora (site B). Sites di erences were due to higher microbial activity at site A, which led to higher soil respiration intensity and greater carbon outputs. This indicated that the capability of organic carbon accumulation of the site B soils was greater than at site A. In addition, petroleum pollution and soil salinity were di erent in the two wetland soils. After bio-remediation, the soil petroleum pollution at site B was reduced to a similar level of site A. However, the culturable microbial biomass and enzyme activity in the remediated soils were also lower than at site A. These results indicated that greater petroleum pollution at site B did not markedly inhibit soil microbial activity. Therefore, di erences in vegetation type and soil salinity were the primary factors responsible for the variation in microbial activity, organic carbon output and organic carbon accumulation capability between site A and site B.  相似文献   

5.
Data collection of soil organic carbon(SOC) of 154 soil series of Jiangsu, China from the second provincial soil survey and of recent changes in SOC from a number of field pilot experiments across the province were collected. Statistical analysis of SOC contents and soil properties related to organic carbon storage were performed. The provincial total topsoil SOC stock was estimated to be O. 1 Pg with an extended pool of 0.4 Pg taking soil depth of 1 m, being relatively small compared to its total land area of lOl?00 km^2. One quarter of this topsoil stock was found in the soils of the Taihu Lake region that occupied 1/6 of the provincial arable area. Paddy soils accounted for over 50% of this stock in terms of SOC distribution among the soil types in the province. Experimental data from experimental farms widely distributed in the province showed that SOC storage increased consistently over the last 20 years despite a previously reported decreasing tendency during the period between 1950--1970. The evidence indicated that agricultural management practices such as irrigation, straw return and rotation of upland crops with rice or wheat crops contributed significantly to the increase in SOC storage. The annual carbon sequestration rate in the soils was in the range of 0.3-3.5 tC/(hm^2. a), depending on cropping systems and other agricultural practices. Thus, the agricultural production in the province, despite the high input, could serve as one of the practical methods to mitigate the increasing air CO2.  相似文献   

6.
Carbon mineralization and its response to climatic warming have been receiving global attention for the last decade. Although the virtual influence of temperature effect is still in great debate, little is known on the mineralization of organic carbon (SOC) of paddy soils of China under warming. SOC mineralization of three major types of China's paddy soils is studied through laboratory incubation for 114 d under soil moisture regime of 70% water holding capacity at 20℃ and 25℃ respectively. The carbon that mineralized as CO2 evolved was measured every day in the first 32 d and every two days in the following days. Carbon mineralized during the 114 d incubation ranged from 3.51 to 9.22 mg CO2-C/gC at 20℃ and from 4.24 to 11.35 mg CO2-C/gC at 25℃ respectively; and a mineralizable C pool in the range of 0.24 to 0.59 gC/kg, varying with different soils. The whole course of C mineralization in the 114 d incubation could be divided into three stages of varying rates, representing the three subpools of the total mineralizable C: very actively mineralized C at 1-23 d, actively tnineralized C at 24--74 d and a slowly mineralized pool with low and more or less stabilized C mineralization rate at 75-114 d. The calculated Q10 values ranged from 1.0 to 2.4, varying with the soil types and N status. Neither the total SOC pool nor the labile C pool could account for the total mineralization potential of the soils studied, despite a well correlation of labile C with the shortly and actively mineralized C, which were shown in sensitive response to soil warming. However, the portion of microbial C pool and the soil C/N ratio controlled the C mineralization and the temperature dependence. Therefore, C sequestration may not result in an increase of C mineralization proportionally. The relative control of C bioavailability and microbial metabolic activity on C mineralization with respect to stabilization of sequestered C in the paddy soils of China is to be further studied.  相似文献   

7.
重金属污染的稻田土中总有机碳和颗粒态碳的变化   总被引:2,自引:1,他引:2       下载免费PDF全文
从广东大宝山矿区横石河下游受重金属污染的水稻田采集6个土壤剖面样品,研究了土壤中总有机碳(TOC)、颗粒态有机碳(POC)和POC/TOC比率的垂直分布特征,并探讨不同污染程度对土壤有机碳含量及稳定性的影响.结果表明,与轻度污染和中度污染采样点相比,在重度污染的各土层中,TOC含量显著下降,其垂直分布有显著改变.POC含量在不同土层间的变化与TOC表现出相似的规律,但差异更显著.重金属污染会影响土壤有机碳不同组分在土壤剖面上的垂直分布特征及分配比例,从而影响土壤有机碳的稳定性和可利用性.中度重金属污染使POC含量显著增高,土壤有机碳变得易于分解和损失;重度污染使TOC含量显著降低,不利于土壤有机碳的固定和积累.不同重金属对土壤有机碳稳定性的影响不同,Pb表现出与Cu、Cd的拮抗作用,Pb使有机碳稳定性增加;而Cu和Cd则相反.但多种重金属联合效应使土壤有机碳稳定性呈降低趋势.  相似文献   

8.
以太湖地区两种典型的水稻土(乌泥土和白土)为供试土壤,在盆栽条件下种植多年生黑麦草,并配制不同pH值的模拟酸雨浇灌。通过多次刈割鲜草,研究模拟酸雨对土壤-植物系统中铜的化学行为的影响。结果表明:对植物体内铜含量的影响是模拟酸雨和“稀释效应”两种影响综合作用的结果。试验初期,表现为处理黑麦草体内铜含量低于对照;随收割茬次的增加,表现出随处理pH的降低,黑麦草体内铜含量的增加,且对缓冲能力弱的白土影响强度大于缓冲能力较强的乌泥土;对土壤pH有明显影响,随模拟酸雨作用时间增长,土壤pH下降,其降幅随处理pH的降低而增大;模拟酸雨主要影响交换态铜,表现为随处理pH的降低交换态铜的分配系数增高,在处理pH=3.0时影响到碳酸盐结合态铜,只有强酸化条件下(处理pH=2.0)才影响到铁锰氧化物结合态铜,对有机物结合态及残渣态铜几乎无影响。  相似文献   

9.
红壤丘陵区土壤有机碳组分对土地利用方式的响应特征   总被引:2,自引:0,他引:2  
土地利用方式影响土壤有机碳(SOC)及其组分,进而决定了碳库的稳定性.以林地为参照,分析我国红壤丘陵区农田(水田和旱地)SOC及其活性组分[可溶性有机碳(DOC)、微生物生物量碳(MBC)和颗粒有机碳(POC)]和惰性组分[矿物结合态有机碳(MAOC)]含量,探讨土壤有机碳组分对土地利用方式的响应特征.结果表明,与旱地和林地相比,水田SOC、 MBC、 POC和MAOC含量均为最高.DOC含量以林地显著高于旱地和水田(P<0.001).SOC各组分占SOC的比例,即DOC/SOC、 MBC/SOC、 POC/SOC和MAOC/SOC范围分别为0.22%~0.93%、 1.62%~2.70%、 31.08%~40.00%和43.22%~56.82%.活性组分(MBC和POC)含量与占比趋势一致,均以水田>林地>旱地.MAOC含量以水田最高、旱地最低,MAOC/SOC则以旱地最高、水田最低.相关分析表明,水田、旱地和林地中MBC、 POC和MAOC分别与SOC呈极显著正相关(P<0.001),而DOC与SOC及其它组分均无显著相关性(P>0.05);旱地、林地...  相似文献   

10.
土壤水稳性团聚体及土壤碳、氮含量是影响土壤肥力的关键因素.以福州平原稻田为研究区,在早稻和晚稻生长季,对对照、炉渣、生物炭和炉渣与生物炭配施处理下耕层和犁底层土壤团聚体分布及其稳定性,包括0.25 mm团聚体含量(DR0.25)、平均质量直径(MWD)、几何平均直径(GMD)、分形维数(D)及土壤碳、氮含量进行了测定和分析.研究结果表明:早稻和晚稻不同土层,对照、炉渣、生物炭和配施4种处理团聚体均以0.25 mm粒级为主;0.25 mm水稳定性大团聚体数量随深度增加而增加,土壤团聚体的稳定性随土层加深而增强;早稻组中,生物炭施加后MWD、GMD和DR0.25较对照组分别减少了20.08%、15.12%和21.87%,D值增加了3.67%,炉渣和配施后差异不显著(p0.05);晚稻组中,生物炭施加后MWD、GMD和DR0.25较对照组分别增加了23.00%、13.82%和16.75%,配施后MWD、GMD和DR0.25较对照组分别增加了16.77%、9.80%和15.37%,D值分别减少了3.75%和2.59%,炉渣施加后差异不显著(p0.05);炉渣、生物炭和配施3种处理都显著增加了早稻耕层和晚稻耕层土壤的碳含量,生物炭和配施处理都显著增加了早稻耕层和晚稻耕层土壤的氮含量(p0.05),3种处理都显著增大了早稻耕层土壤C/N比(p0.05),同时,土壤不同粒级团聚体碳、氮含量百分比主要集中在0.25 mm粒级大团聚体.  相似文献   

11.
全球变暖下土壤有机碳储存的变化是土壤与全球变化研究的热点问题.本研究选择了3种太湖地区代表性水稻土的表层土壤,分别进行20℃和25℃的室内恒温培养,监测培养过程中总有机碳、溶解性有机碳和微生物量碳的变化动态,试图了解这些土壤的有机碳分解过程对全球变暖的响应特点.结果表明,这些土壤培养中总有机碳变化可以用一级衰变动力学方程或对数衰减方程描述,但动力学特征依培养温度的不同而异.升温大大促进了铁渗水耕人为土和潜育水耕人为土中有机碳的分解与呼吸损失,而铁聚水耕人为土没有显著变化.供试土壤总有机碳损失的Q10系数分别为:潜育水耕人为土(11.1~14.1)>铁渗水耕人为土(4.4~6.4)>铁聚水耕人为土(0.63~0.73).这一方面说明温度敏感性在同一地带的不同土壤间的差异超过文献上报道的不同气候带的差异,但另一方面揭示了水稻土可能是一类对全球升温敏感响应的人为土.溶解性有机碳和微生物量的碳的变化还提示不同温度培养下水稻土微生物群落结构可能改变,因而影响到土壤有机碳库的生物有效性在温度条件下的变化.可以认为,土壤升温下有机碳的变化不但与土壤有机碳的性质有关,而且与土壤性质控制下的生物条件的改变有关.故土壤升温下有机碳的损失不仅仅是温度对分解过程的反应速度的影响.当然,对于不同土壤间的这种差异还需从有机碳-土壤环境-土壤生物的相互关系上做进一步的工作.  相似文献   

12.
选择位于广东小良的自然林、光裸地和森林恢复地3种典型陆地生态系统类型,通过研究土壤137Cs和土壤有机碳(SOC)的含量与分布,分析137Cs与SOC的关系,尝试运用137Cs法研究典型陆地生态系统类型的土壤侵蚀与土壤碳动态.结果显示,自然林为研究区土壤137Cs的背景点,其0~40cm土壤中的137Cs平均活度值为(0.99±0.28)Bq/kg,137Cs背景值为(448.1±56.3)Bq/m2,0~40cm的SOC储量为5.93kg/m2.森林恢复地和光裸地土壤中没有检出137Cs,表明森林恢复地和光裸地发生了严重的土壤侵蚀.自然林土壤137Cs深度分布形态为非指数衰减形态,137Cs浓度峰值出现在次表层.自然林的各土层137Cs活度与SOC含量的相关关系不显著(P>0.1).研究区137Cs含量的背景值很低.基于137Cs法计算研究区及相似地区的SOC侵蚀量有一定局限性.  相似文献   

13.
A field study was conducted in the Taihu Lake region, China in 2004 to reveal the organochlorine pesticide concentrations in soils after the ban of these substances in the year 1983. Thirteen organochlorine pesticides (OCPs) were analyzed in soils from paddy field, tree land and fallow land. Total organochlorine pesticide residues were higher in agricultural soils than in uncultivated fallow land soils. Among all the pesticides, ΣDDX (DDD, DDE and DDT) had the highest concentration for all the soil samples, ranging from 3.10 ng/g to 166.55 ng/g with a mean value of 57.04 ng/g and followed by ΣHCH, ranging from 0.73 ng/g to 60.97 ng/g with a mean value of 24.06 ng/g. Dieldrin, endrin, HCB and α-endosulfan were also found in soils with less than 15 ng/g. Ratios of p,p'-(DDD DDE)/DDT in soils under three land usages were: paddy field > tree land > fallow land, indicating that land usage inlfuenced the degradation of DDT in soils. Ratios of p,p'-(DDD DDE)/DDT >1, showing aged residues of DDTs in soils of the Taihu Lake region. The results were discussed with data from a former study that showed very low actual concentrations of HCH and DDT in soils in the Taihu Lake region, but according to the chemical half-lives and their concentrations in soils in 1980s, the concentration of DDT in soils seemed to be underestimated. In any case our data show that the ban on the use of HCH and DDT resulted in a tremendous reduction of these pesticide residues in soils, but there are still high amounts of pesticide residues in soils, which need more remediation processes.  相似文献   

14.
郑顺安  陈春  郑向群  李松 《中国环境科学》2012,32(11):2053-2059
为了解再生水灌溉对砂质紫色土土壤有机碳、氮和磷的形态及其在不同粒级团聚体中分布的影响,比较了四川省彭州市灌溉年限分别为3a和8a的2个再生水灌溉区土壤中不同粒径团聚体中有机碳、氮和磷的分布及化学形态.结果表明,再生水灌溉区土壤有机碳、氮和磷主要分布在>2mm和2mm的大粒径团聚体所占比例下降,向较小粒径转化;>0.25mm团聚体中有机碳和氮含量显著上升,在所有5个粒级的团聚体中磷素含量都有显著提高.再生水灌溉还有利于紫色土重颗粒态有机碳和颗粒态氮的形成,且灌溉时间越长,效果越明显.在除<0.053mm的其它4个粒级团聚体中,再生水灌溉区土壤中交换态磷及钙结合态磷比例上升,而铁铝结合态磷比例下降.综上,再生水灌溉有效的改善了砂质紫色土土壤的有机碳库、氮库和磷库,长期灌溉可以减少人工施肥量.  相似文献   

15.
湖南省稻田表层土壤固碳潜力模拟研究   总被引:14,自引:2,他引:14  
稻田土壤有机碳的储存对于缓解大气温室效应具有不可忽视的作用。我国作为水稻产量最大的国家,迫切需要掌握稻田生态系统固碳现状及相应固碳措施。文章利用自主建立的土壤有机碳模型对湖南省稻田生态系统不同有机物投入方式下土壤有机碳的变化进行了模拟研究。结果表明,常规施肥(现状)方式下稻田表层土壤有机碳的饱和固碳量为39.75~64.90th/m2,半数模拟点已基本饱和,其余点仍具有3.38~4.19th/m2的固碳潜力;50%秸秆还田效果低于常规施肥方式,而50%秸秆+绿肥效果高于常规方式(平均高10.94th/m2);全量秸秆还田(冬闲)情况下稻田表层土壤饱和固碳量在55.57~94.25th/m2之间,与稻田现有碳储量比较有4.15~33.46th/m2的潜在提高幅度。如果全量秸秆还田结合冬季种植绿肥,土壤饱和固碳量则可以在稻田土壤现有碳储量的基础上平均提高65.77%。模拟结果还表明,湖南稻田土壤中,每年投入1th/m2的新鲜有机碳可最终形成土壤有机碳饱和固碳量约12th/m2。研究表明,稻田土壤的饱和固碳量可以通过人为措施进行调控,增加有机物质的投入量(秸秆还田)和冬季绿肥种植是提高稻田土壤固碳能力的有效途径。  相似文献   

16.
森林土壤活性有机碳和土壤呼吸及其组分区异是森林土壤碳循环过程研究的关键问题.青藏高原亚高山原始森林植被是我国重要的生态屏障,对全球陆地生态系统的碳收支平衡具有举足轻重的作用.本研究选取西藏色季拉山两种最典型的天然林分(急尖长苞冷杉和林芝云杉)为研究对象,测定了这两种林分的土壤活性有机碳含量和同期的土壤呼吸速率及其组分速率,分析了土壤呼吸及其组分与土壤活性有机碳组分之间的关系,结果表明,西藏色季拉山两种天然林分土壤总有机碳(TOC)、土壤颗粒有机碳(POC)、易氧化有机碳(LOC)和微生物量碳(MBC)含量均具有显著的表聚性.急尖长苞冷杉林土壤活性有机碳含量较高,其TOC、POC、LOC、MBC含量分别为57.05 g·kg-1、17.9 g·kg-1、12.2 g·kg-1和365.6 mg·kg-1.两种林分的土壤总呼吸速率(Rt)和微生物呼吸速率(Rh)差异不显著(p0.05),但它们与枯枝落叶呼吸速率(Rl)和根系呼吸速率(Rr)差异极显著(p0.01),同时,Rl和Rr之间差异极显著(p0.01).从不同林分来看,林芝云杉林的土壤总呼吸速率(Rt)和微生物呼吸速率(Rh)高,而急尖长苞冷杉林的枯枝落叶呼吸速率(Rl)和根系呼吸速率(Rr)高.两种林分土壤呼吸各组分对土壤总呼吸速率(Rt)的贡献率大小依次为:RhRlRr.两种林分均表现为微生物呼吸对总呼吸的贡献比例最高,林芝云杉为92.42%,冷杉为70.81%.两种林分的土壤活性碳组分与土壤呼吸关系最密切的是MBC,其次是LOC,最不密切的是POC.  相似文献   

17.
土地利用方式对土壤团聚体稳定性和有机碳含量的影响   总被引:11,自引:0,他引:11  
罗晓虹  王子芳  陆畅  黄容  王富华  高明 《环境科学》2019,40(8):3816-3824
探究不同土地利用方式下土壤团聚体的粒径分布、稳定性及有机碳在各粒径团聚体中的分布规律,以期为重庆地区土壤结构的改善及土壤有机碳库的维持及提高提供依据.以重庆市北碚区6种土地利用方式(针阔叶混交林、竹林、果园、旱地、水田和荒草地)为研究对象,采用湿筛法对土壤进行粒径分组,对比分析了6种土地利用方式处理下土壤团聚体和团聚体有机碳在0~20、20~40、40~60和60~100 cm土壤剖面中的分布规律.结果表明,不同土地利用方式下,土壤的结构和肥力水平存在显著的差异.在0~100 cm土层土壤的各粒径团聚体中,6种土地利用方式的团聚体粒径均以 0. 25 mm为主;其中,竹林 0. 25 mm团聚体含量最高,其次是荒草地,旱地与果园含量最低.不同土地利用方式下0. 25~2 mm的粒径团聚体主要分布在0~20 cm土层(28. 78%~50. 08%),而0. 053~0. 25 mm和0. 053 mm的粒径团聚体主要集中在40~60cm土层.在整个土壤深度内,竹林和荒草地的土壤团聚体MWD和GMD均高于其他土地利用方式,即二者的土壤团聚体稳定性较强.土壤团聚体稳定性与土壤团聚体有机碳呈极显著正相关(r=0. 569,P 0. 01),在0~100 cm土层中,土壤0. 25~2 mm和0. 053 mm粒径的有机碳含量较高,其中0. 25~2 mm的最高,平均含量为56. 54 g·kg~(-1).除旱地土壤各粒径团聚体有机碳含量在20~40 cm土层内最高,其他土地利用方式下土壤各粒径团聚体内有机碳含量均随土壤深度的增加而降低,表现出显著的表层富集现象.总体上,6种土地利用方式下,竹林和荒草地在各土层中的土壤团聚体稳定性较好,且在各土层中,竹林土壤各粒径团聚体有机碳含量最高.  相似文献   

18.
晁建颖  高光  汤祥明  沈燕  朱丽萍 《环境科学》2009,30(11):3196-3202
2007年1~12月对太湖4个不同生态类型湖区水体中有机聚集体(organic aggregates,OA)的丰度、有机质含量和营养盐(N、P)含量及其它水环境因子进行了同步监测.结果表明,①OA是太湖水体中营养盐的一个重要来源,其N、P含量分别占水体中TN、TP的16.5%及43.3%;②水体中OA的丰度与水体的富营养化程度密切相关,随着水体富营养化水平的提高和浮游植物生物量的增加,OA丰度及其中有机质的含量也呈现逐渐上升的趋势;③风浪扰动对太湖水体中OA的理化性质影响较大.OA作为营养盐的一个重要载体,可能是浅水湖泊营养盐循环中的一个关键点.  相似文献   

19.
以华中地区阳新县农田土壤为研究对象,采用热光反射法研究了不同类型农田土壤(水稻土、红壤、潮土)中黑碳、焦炭、烟炱含量的变化特征,并探讨了影响黑碳、焦炭和烟炱分布的影响因素以及黑碳的可能来源。结果表明,农田土壤中黑碳、焦炭和烟炱含量变幅较大,分别为0.17—3.18 g?kg~(~(-1)),0.03—2.37 g?kg~(-1)和0.09—1.50 g?kg~(-1),平均值分别为0.85 g?kg~(-1),0.45 g?kg~(-1)和0.40 g?kg~(-1)。不同类型土壤中黑碳、焦炭、烟炱含量的大小顺序是:水稻土红壤潮土。黑碳占有机碳的比例变化范围在1.45%—26.43%,平均值为6.76%。相关分析结果表明土壤黑碳含量与有机碳、焦炭和烟炱含量之间都呈显著的正相关关系。根据焦炭/烟炱比值分析结果推测农田土壤中的黑碳主要来源于化石燃料燃烧,如工业燃煤及机动车尾气排放等。  相似文献   

20.
为了探究干旱区盐碱土壤可溶性无机碳的动态分布特征,选取内蒙古河套灌区7种不同电导率土壤的0—100 cm剖面,采用临近样地,随机布点的方法,研究该地区土壤可溶性无机碳和盐基离子的剖面分布规律。结果表明:土壤含盐量对可溶性无机碳含量及盐基离子含量具有重要影响,不同含盐量土壤(S_1-S_7)的可溶性无机碳平均含量随电导率的增加而逐渐降低;随土壤深度的加深呈先减小后增加,表现为浅层0—50 cm含量少,深层50-100 cm含量聚积;可溶性无机碳储量随电导率的增加而逐渐降低。不同含盐量土壤(S_1—S_7)盐基离子含量随电导率的增加而增加;随土壤深度的加深盐基离子含量逐渐减少,具有较强的表聚性。研究区域土壤盐基离子组成以Ca~(2+)、SO_4~(2-)为主,平均含量分别占离子总量的27%和29%;K~+、Mg~(2+)含量较少,平均含量分别占离子总量的13%和7%。通过相关性分析,土壤可溶性无机碳含量与EC呈显著负相关(R~2=0.83,p0.05),与pH无显著相关性(R~2=0.17,p0.05),盐基离子平均含量与EC呈显著正相关(R~2=0.85,p0.05),与pH无显著相关性(R~2=0.07,p0.05),表明土壤EC的增加会影响可溶性无机碳和盐基离子的聚积。  相似文献   

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