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1.
为了阐明改变肥料养分投入后土壤微生物特性的短期变化,采集长期定位有机无机肥配施的红壤水稻土,通过室内培育试验,观测添加不同肥料养分后土壤微生物生物量碳及BIOLOG群落功能多样性的变化.结果表明,长期有机无机肥配施土壤中添加无机肥料养分短期内( 185 d)降低了15%~22%的微生物生物量碳含量和55.6%的微生物群落平均光密度;添加有机肥料养分短期内提高了8%~42%的微生物生物量碳含量和992%的微生物群落平均光密度;而不添加肥料养分短期内提高了501%的微生物群落平均光密度,降低了微生物群落均一性,但对微生物生物量碳含量影响不大.此外,添加不同肥料养分均改变了土壤微生物群落碳源代谢模式.长期配施有机无机肥土壤中添加不同肥料养分后土壤微生物生态特征发生明显变化,其差异体现在微生物生物量碳与微生物碳源利用特性的变化上.  相似文献   

2.
氮修饰木素对土壤生化特性的影响   总被引:1,自引:0,他引:1  
文章通过氮修饰木素对土壤生化特性影响的研究,旨在探索工业木素资源的高效利用途径。研究结果表明,在培养土壤(总培养期4个月)中直接掺入1%的工业木素,土壤微生物量(C,N)、土壤净N矿化率除培养初期有一定的影响外,在其余时间内几乎没有显著变化,但土壤微生物代谢熵值(qCO2)在大多数培养时间内有明显增加,说明掺入工业木素对土壤微生物的生理状况产生一定的负面作用。与此相对,掺入氮修饰木素对土壤微生物的正常生长没有不利的影响。比较两类氮修饰木素产品(高压和常压工艺产品),常压工艺生产的氮修饰木素的总含氮较低,但该产品在前3个月的氮矿化率高于加高压工艺生产的氮修饰木素。两类氮修饰木素中结合的氮在整个培养过程中都表现出较好的缓释性。上述研究结果为氮修饰木素的生产和农业应用提供了重要的科学基础。  相似文献   

3.
刘洁  杨妍  韩兰芳  孙可 《环境化学》2021,40(1):174-184
生物质炭在碳封存和土壤改良等方面的应用潜力取决于其在土壤中的微生物矿化稳定性.明确生物质炭在土壤中微生物矿化稳定性是推进生物质炭在土壤固碳、改良等领域应用的关键.基于生物质炭在土壤中的微生物矿化稳定性研究进展,本文系统总结了不同类型生物质炭的微生物矿化速率和在土壤中的平均驻留时间,探讨了不同因素(生物质炭特性、土壤特性...  相似文献   

4.
《Chemistry and Ecology》2008,24(2):147-156
The main objective of this study was to investigate the efficiency of different substrates to reduce the extraction of heavy metals concentration in a heavily contaminated soil. Two contaminated soils by Cu and Zn were used to evaluate the effectiveness of eight substrates (calcium carbonate, bentonite, kaolinite, charcoal, manganese oxide, iron oxide, zeolite, phosphate) to reduce metal availability and to study the change of metals speciation in different forms using sequential extraction technique (single step). Sequential extraction technique (single step, 0.11 M acetic acid, HONH3Cl, H2O2+NH4OAc, Aqua regia) was applied on contaminated soils after and before treatment to evaluate metals speciation. Results indicate that the most effective treatments in decreasing available metal concentrations were calcium carbonate, zeolite and manganese or iron oxide. Metal sequential fractionations indicate that the exchangeable fraction of Cu and Zn in contaminated soils can be transformed into unavailable forms after chemical remediation.  相似文献   

5.
Land use conversion is an important factor influencing the carbon gas exchange between land and atmosphere. The effect of land use conversion on soil organic carbon mineralization and microbial function is important for soil organic carbon sequestration and stability. This research studied the effects of land use conversion on soil chemical properties, organic carbon mineralization and microbial community structure after two years of conversion from double rice cropping (RR) to maize-maize (MM) and soybean-peanut (SP) double cropping systems in southern China. The results showed that soil pH significantly decreased by 0.50 (MM) and 0.52 (SP, P = 0.002), and dissolved organic carbon significantly increased by 23%- 35% (P = 0.016). No significant difference was found in soil organic carbon mineralization rate with the land use conversion, though the accumulated mineralization decreased after 13 days of incubation (P = 0.019). Land use conversion from paddy to upland significantly changed soil microbial community structure. The total PLFAs, bacterial, gram-positive bacterial (G+), gram-negative bacterial (G-) and actinomycetic PLFAs decreased significantly (P < 0.05), the ratio of fungal PLFAs to bacterial PLFAs (F/B) increased significantly (P = 0.006). But no significant differences in microbial groups were found between MM and SP. The accumulated mineralization at the beginning period of the incubation were significantly positively correlated with soil actinomycetic PLFAs (P = 0.034). After 13 days of incubation, soil F/B showed a positive correlation with the accumulated mineralization (P = 0.004). However, soil microbial community structure(P = 0.014)and total PLFAs(P = 0.033)showed a positive correlation with the accumulated mineralization after 108 days of incubation. Our results indicated that after conversion from paddy soils to drained soils, soil pH and total nitrogen are the key factors regulating the variations in soil microbial community structure and biomass, and then influencing soil organic carbon mineralization.  相似文献   

6.
Tropical estuary wetlands are important for aquaculture and wildlife. However, many of them receive large amounts of anthropogenic heavy metals annually. Here, the transformation of spiked heavy metals, namely, Cd, Cr, Cu, Ni, Pb, and Zn, and the effects of salinity on their transformation in wetland soils after an eight-month-long incubation under moisture-saturation conditions were studied in the Pearl River estuary in China. Cd exhibited high mobility and bioavailability, with 12.2% to 25% Cd existing in the exchangeable fraction. Other heavy metals primarily existed in the reducible and oxidisable forms, and less than 2% were bound to the exchangeable fraction. Compared with the controls, contents of none of the metals associated with residual forms were significantly altered. These results imply that most exchangeable metals, except for Cd, transformed into other stable fractions through an eight-month-long ageing process, but not into the residual fraction. Thus, transformation from non-residual to residual forms was very slow in the tropical estuary wetland environment. Addition of NaCl increased the exchangeable fractions of Cd, Pb, and Zn, suggesting that increased soil salinity induced by flood tides during the dry season may enhance their mobility.  相似文献   

7.
采用人工污染土壤、尾矿砂、污泥等不同载体的污染源来模拟土壤污染 ,研究其对水稻生长、吸收养分和吸收重金属的影响。结果表明 ,不同污染载体对水稻生长的影响不同 ,其影响的大小顺序为人工污染土壤 >尾矿砂 >污泥 >尾矿砂 +污泥。不同污染载体对水稻吸收重金属的影响亦不同 ,以纯化学试剂的形式添加到土壤中的重金属最易被提取出来 ,植物从中吸收的Cu、Zn、Pb、Cd最多 ,而从以污泥为污染载体的土壤中吸收的Zn、Pb、Cd最少。研究表明 ,用添加纯化学试剂的方法来模拟污染土壤对生态与环境的影响是可行的 ,确定土壤负载容量是安全的 ,因为在实验条件下它对供试植物的影响最明显  相似文献   

8.
在实验室内,研究了模拟酸雨下Cd、Cu、Zn复合污染对供试土壤中微生物量碳和酶活性的影响.结果表明,污染土壤中微生物量碳和酶活性明显降低,脱氢酶活性几乎丧失,脲酶、酸性磷酸单脂酶、总磷酸酶和多酚氧化酶活性均明显降低到一较低水平.污染土壤中微生物量碳和酶活性随重金属量增加而进一步降低,有效性Cd、Cu、Zn含量与土壤微生物量碳和酶活性之间呈显著性负相关.  相似文献   

9.
外源铅铜镉在长三角和珠三角农业土壤中的转化   总被引:4,自引:0,他引:4  
选择了我国经济发达地区的长江三角洲和珠江三角洲10个代表性农业土壤,采用室内培养和化学分级方法研究了加入外源铅、铜、镉在土壤中的动态变化及转化趋势,探讨了碳酸钙、粉煤灰、猪粪和钢渣等土壤改良剂对土壤重金属形态的影响。结果表明,随着土壤重金属负荷的提高,土壤中交换态重金属的比例增大,残余态比例下降,有效性提高,对环境威胁增大。当重金属加入最较低时,重金属优先向氧化物结合态、有机质结合态转化;而当加入最较高时,向交换态和碳酸盐结合态转化的比例明皿增加。pH和土壤组分对重金属在土壤中的转化有显著的影响,土壤pH下降可使交换态Cd、Cu、Pb的比例递增。加入碳酸钙、粉煤灰、猪粪和钢渣等改良剂可显著地降低土壤中交换态重金属比例,增加其它形态的重金属比例。  相似文献   

10.
Earthworms highly increase ciprofloxacin mineralization in soils   总被引:1,自引:0,他引:1  
This report shows that earthworms increase up to eight times the mineralization of the antibiotic ciprofloxacin in soils. Antibiotics are extensively used and disseminated in environmental compartments. Antibiotics may enter food chains and thus induce resistance in environmental and human commensal bacteria. The antibiotic ciprofloxacin is suspected to induce significant adverse effects on soil microbial processes, with possible consequences on soil functions. Nevertheless, little is known concerning the fate of ciprofloxacin in soils. Here, we studied the mineralization and distribution of the [2-14C]-ciprofloxacin in soil–plant–water systems where ciprofloxacin was applied by amendment of spiked pig slurry. Results show that a very weak microbial mineralization of the antibiotic, lower than 0.01 %, occurred after 84 days of incubation. By contrast, the addition of earthworms increased from 5 to 8 times ciprofloxacin mineralization during the following 84 days incubation. In addition, earthworm activity induced the transfer of 40 % of radioactive compounds from the upper to the lower layer of soil, modifying the distribution of the antibiotic within the soil profile. We conclude that earthworms can be used efficiently to mineralize ciprofloxacin and modify its distribution in soils. As a consequence, earthworms change the exposure of soil organisms to ciprofloxacin, and, in turn, the eco-toxicological impact of the antibiotic.  相似文献   

11.
镁碱化对土壤微生物活性和水解酶的影响   总被引:1,自引:0,他引:1  
元炳成  黄伟  李凤成 《生态环境》2010,19(10):2344-2348
研究了镁碱度对土壤微生物生物量及其活性的影响,研究地点位于甘肃河西走廊疏勒河中游昌马洪积冲积扇缘。从10个具有不同镁碱化程度的采样点,采集土壤样品30个,测定了土样的pH、镁碱度、Mg2+/Ca2+、HCO3-+CO32-、钠碱度、有机碳、全氮、微生物生物量碳、微生物熵、精氨酸氨化率、β-葡萄糖苷酶、磷酸酶、蛋白酶-casein、蛋白酶-BAA、脲酶等指标。结果表明:土壤pH和钠碱度没有明显的相关性,而和镁碱度、Mg2+/Ca2+、HCO3-+CO32-显著正相关,相关系数分别为0.70、0.69和0.72。镁碱度和Mg2+/Ca2+显著正相关,相关系数为0.84。有机碳、全氮、微生物生物量碳、微生物熵、精氨酸氨化率的变化范围分别是6.4-18.5 g·kg-1、0.28-1.20 g·kg-1、23.1-351.9 mg·kg-1、0.37-2.52%、0.77-1.83μmol.g-1.d-1,和Mg2+/Ca2+之间显著负相关,相关系数分别是-0.52、-0.50、-0.59、-0.62、-0.65。β-葡萄糖苷酶、磷酸酶、蛋白酶-casein、蛋白酶-BAA、脲酶的变化范围分别是6.68-27.79μmol.g-1.h-1、7.03-25.99μmol.g-1.h-1、0.11-0.76μg.g-1.h-1、0.05-0.48μmol.g-1.h-1、0.07-0.61μmol.g-1.h-1吗,和微生物生物量碳之间显著正相关,相关系数分别是0.73、0.71、0.78、0.87、0.81,和Mg2+/Ca2+之间显著负相关,相关系数分别是-0.59、-0.58、-0.60、-0.56、-0.54。可见,镁碱化会造成土壤有机质含量下降、微生物生物量变小、微生物活性降低、水解酶活性低下,镁碱化是导致土地生产力低下的原因之一。  相似文献   

12.
Soil microbes in temperate forest ecosystems are able to cycle several hundreds of kilograms of N per hectare per year and are therefore of paramount importance for N retention. Belowground C allocation by trees is an important driver of seasonal microbial dynamics and may thus directly affect N transformation processes over the course of the year. Our study aimed at unraveling plant controls on soil N cycling in a temperate beech forest at a high temporal resolution over a time period of two years, by investigating the effects of tree girdling on microbial N turnover. In both years of the experiment, we discovered (1) a summer N mineralization phase (between July and August) and (2) a winter N immobilization phase (November-February). The summer mineralization phase was characterized by a high N mineralization activity, low microbial N uptake, and a subsequent high N availability in the soil. During the autumn/winter N immobilization phase, gross N mineralization rates were low, and microbial N uptake exceeded microbial N mineralization, which led to high levels of N in the microbial biomass and low N availability in the soil. The observed immobilization phase during the winter may play a crucial role for ecosystem functioning, since it could protect dissolved N that is produced by autumn litter degradation from being lost from the ecosystem during the phase when plants are mostly inactive. The difference between microbial biomass N levels in winter and spring equals 38 kg N/ha and may thus account for almost one-third of the annual plant N demand. Tree girdling strongly affected annual N cycling: the winter N immobilization phase disappeared in girdled plots (microbial N uptake and microbial biomass N were significantly reduced, while the amount of available N in the soil solution was enhanced). This was correlated to a reduced fungal abundance in autumn in girdled plots. By releasing recently fixed photosynthates to the soil, plants may thus actively control the annual microbial N cycle. Tree belowground C allocation increases N accumulation in microorganisms during the winter which may ultimately feed back on plant N availability in the following growing season.  相似文献   

13.
长春市土壤微生物生化作用与重金属化学形态关系研究   总被引:2,自引:0,他引:2  
研究了长春市土壤微生物的生化作用强度(氨化作用强度、固氮作用强度,纤维素分解强度和土壤基础呼吸)与重金属(Pb、Cd、Cu、Zn和Ni)化学形态的关系。通过科学采样和实验室测试分析了不同功能区土壤中,重金属含量和化学形态与微生物生化作用强度,并使用相关分析、偏相关分析多种数据统计方法进行数据处理。结果表明:各功能区因土地利用方式的差别和土壤中重金属的各种化学形态对土壤微生物生化作用强度有不同的影响。其中氨化作用与交换态Cd、Zn和Ni含量呈显著正相关;固氮作用与土壤重金属各化学形态相关性均不显著;呼吸作用与铁锰氧化物结合态Pd和交换态Cu呈显著正相关;纤维素分解作用强度与交换态Pd含量呈显著负相关。在土壤理化性质等相关变量受控时,重金属化学形态对微生物生化作用强度的影响有较明显的变化。其中与无控制变量相比,在控制变量作用下,纤维素分解作用强度受交换态Pd影响上升了0.0314,表现为交换态Pd抑制纤维素分解作用强度。呼吸作用与交换态Pd的相关系数在无控制因素情况下为-0.1425,在有控制因素情况下为-0.3230,表明交换态Pd促进呼吸作用强度。而有机结合态Ni表现为抑制固氮作用。因此可利用交换态Pd与纤维素分解作用强度、呼吸作用强度的相互关系,有机结合态Ni与固氮作用的相互关系等相结合来评价城市土壤重金属污染状况。文章为评价长春城市土壤重金属污染提供了微生物学指标的理论依据。  相似文献   

14.
污染黑土中重金属的形态分布与生物活性研究   总被引:36,自引:5,他引:31  
郭观林  周启星 《环境化学》2005,24(4):383-388
通过对污染和清洁黑土的耕层、非耕层分层采样分析,比较了Cd,Pb,Cu和Zn等在同一土壤耕层和非耕层以及不同采样点土壤中的形态分布和生物活性.结果表明,无污染黑土中这些重金属的形态分布一般为:残渣态>有机结合态>铁锰结合态>碳酸盐结合态>可交换态,外源污染则使可交换态重金属的含量增加.以生物有效性系数和迁移系数进行重金属生物活性评价,其在黑土中生物活性大小的顺序为:Cd>Cu>Zn>Pb.污染愈严重的土壤,重金属的生物活性和自身的淋溶能力相对较强,在非耕层中也表现出较高的生物活性.综合重金属在土壤中的含量和生物活性,发现2个污染点的黑土中Cd和Pb对当地农业生产和地下水安全已构成潜在的威胁.  相似文献   

15.
农田重金属污染原位钝化修复研究进展   总被引:52,自引:0,他引:52  
污染土壤重金属原位钝化修复是通过向土壤中施加一些活性钝化修复材料,通过溶解沉淀、离子交换吸附、氧化还原、有机络合等反应来改变重金属在土壤中的赋存状态,降低土壤中重金属的有效浓度、迁移性和生物有效性。这种方法成本较低、操作简单、见效快且适合大面积推广,在重金属污染土壤修复中有着不可替代的作用。尤其对主要由污水灌溉、大气沉降等造成的农田土壤面源污染,一些具有吸附固定土壤中重金属离子特性的天然物质和工业副产品都可运用在实地的钝化修复中,且不同类型的钝化修复剂对重金属污染土壤的钝化修复效果各不相同。采用实验室评价和实地应用评价,一方面可以评估钝化修复材料对污染土壤中重金属离子的固定效率;另一方面可以评估钝化修复材料对土壤理化性状、养分状况和生物活性的影响。对重金属污染土壤原位钝化修复中不同来源的钝化剂进行了分类,目前广泛使用的钝化修复剂主要包括硅钙物质、含磷材料、有机物料、黏土矿物、金属及金属氧化物、生物碳及新型材料等,概述了它们各自对重金属污染土壤的钝化修复效果。从研究方法、评价指标、环境影响因子、钝化机制以及环境风险评价等方面分析了该领域的研究现状以及存在的主要问题,今后应重点关注钝化修复剂对土壤-作物系统的潜在环境风险以及钝化材料修复效果的田间长期稳定性评价。  相似文献   

16.
冻融作用下寒温带针叶林土壤碳氮矿化过程研究   总被引:4,自引:0,他引:4  
以大兴安岭落叶松林土壤为研究对象,设置8℃恒温和-5-8℃冻融循环(1个冻融循环为在-5℃培养24 h,后在8℃培养24 h)2个处理,进行30 d的室内培养实验,探讨了寒温带针叶林土壤在冻融交替时期的碳氮矿化过程及其相互关系。结果表明,培养温度和培养时间对土壤碳矿化速率和碳矿化累积量均有显著影响。第1次和第5次冻融循环后,冻融处理土壤的碳矿化速率显著高于恒温培养下土壤的碳矿化速率;第7次和第15次冻融循环后,冻融土壤碳矿化累积量显著低于恒温土壤的碳矿化累积量。土壤氮矿化速率没有受到培养温度、培养时间以及二者交互作用的影响,但培养时间和培养温度对土壤净氮矿化累积量有显著的影响。第5、7、15次冻融循环后,冻融处理的土壤无机氮净矿化累积量低于恒温培养的土壤无机氮净矿化累积量。经过30 d的培养,恒温处理下的土壤碳、氮矿化累积量(碳累积量:92.82μg·g-1,氮累积量73.76 mg·kg-1)是冻融处理下(碳累积量:65.51μg·g-1,氮累积量33.45 mg·kg-1)的1.42倍和2.21倍。土壤碳矿化累积量与土壤净氮矿化累积量均为正相关关系,但在相同的碳释放量下冻融循环处理土壤累积的无机氮较少。以上结果表明,冻融循环减少了大兴安岭寒温带落叶松林土壤碳排放和无机氮的累积,有利于土壤碳的固持和减少养分的流失。  相似文献   

17.
Removal of heavy metals by biosorption   总被引:1,自引:0,他引:1  
Industrialization and urbanization have resulted in increased releases of toxic heavy metals into the natural environment comprising soils, lakes, rivers, groundwaters and oceans. Research on biosorption of heavy metals has led to the identification of a number of microbial biomass types that are extremely effective in bioconcentrating metals. Biosorption is the binding and concentration of adsorbate from aqueous solutions by certain types of inactive and dead microbial biomass. The novel types of biosorbents presently reviewed are grouped under fungal biomass, biomass of non-living, dried brown marine algae, agricultural wastes and residues, composite chitosan biosorbent prepared by coating chitosan, cellulose-based sorbents and bacterial strains. The reports discussed in this review collectively suggest the promise of biosorption as a novel and green bioremediation technique for heavy metal pollutants from contaminated natural waters and wastewaters.  相似文献   

18.
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   

19.
氮沉降影响土壤氮循环,而凋落物是土壤有机氮的主要来源,因此,为了探讨氮沉降和凋落物是否去除作用下,亚热带森林土壤潜在的氮素矿化与硝化作用,选择已进行8年模拟氮沉降试验的亚热带罗浮栲(Castanopsis fabri)常绿阔叶林土壤为研究对象,野外样地氮添加设置3个水平:对照(CK,0 kg·hm?2·a?1)、低氮(LN,75 kg·hm?2·a?1)、高氮(HN,150 kg·hm?2·a?1),两种凋落物管理方式(保留凋落物,L和去除凋落物,R),土壤采样后,通过室内间歇淋洗好气培养法,研究土壤氮素矿化潜势差异,以及不同底物条件下(铵态氮水平:N 0,100、150、200 mg·kg?1)土壤硝化潜势的差异。结果表明:土壤氮素快速矿化主要在培养前7 d,矿化累积量(Nt)为102.81—153.71 mg·kg?1,矿化潜势(N0)范围为193.84—289.80 mg·kg?1,N0依次为:保留凋落物低氮(LN-L)>保留凋落物对照(CK-L)>去除凋落物低氮(LN-R)>去除凋落物对照(CK-R)>去除凋落物高氮(HN-R)>保留凋落物高氮(HN-L);两种凋落物处理方式下,LN水平土壤的Nt与N0均高于CK、HN。保留凋落物情况下,有较高的土壤硝化潜势;在无添加硝化底物(铵态氮水平为N 0 mg·kg?1)的条件下,野外氮添加水平高的土壤硝化潜势也高;而在添加不同硝化底物(铵态氮)的条件下,土壤硝化潜势并未随硝化底物水平的增加而增加,且硝化底物水平为N 100 mg·kg?1时硝化潜势最大。研究表明,虽然保留凋落物可以增加土壤氮矿化潜势,而氮沉降则影响氮矿化潜势。当研究土壤硝化潜势时,应当根据土壤类型等因素选择合适的硝化底物(铵态氮)添加量。  相似文献   

20.
重金属污染土壤的微生物生态效应及其修复研究进展   总被引:13,自引:0,他引:13  
滕应  黄昌勇 《生态环境》2002,11(1):85-89
污染土壤微生物生物修复技术是一项非常有应用前景的环保新技术。本文综述了近年来重金属对土壤微生物生物量、种群及生化过程的影响以及微生物对重金属污染土壤的修复机理和修复研究进展,较全面的分析了重金属对土壤微生物的生态效应。  相似文献   

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