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1.
土壤团聚体有机碳研究进展   总被引:1,自引:0,他引:1  
土壤有机碳是衡量土壤肥力的重要指标,对于促进土壤养分循环、增加养分有效性有重要作用。土壤团聚体是土壤的重要组成部分,是组成土壤结构的最小单元,受到自然因素和人为因素的影响,其形成转化过程与土壤固碳过程息息相关,因而研究团聚体和有机碳的关系及团聚体有机碳影响因素对于土壤结构的改善和土壤质量的提升具有重要意义。本文通过对文献的总结,明晰了土壤团聚体和有机碳的关系,阐述了土壤类型、施肥方式、土地利用和矿区复垦对土壤团聚体有机碳的影响,并从生物质炭的长期定位研究和复垦矿区的土壤修复两方面对土壤团聚体有机碳的研究进行展望,研究结果可为合理的农业生产提供科学依据。  相似文献   
2.
A pot experiment was conducted in a climate‐controlled greenhouse to investigate the growth, physiology and yield of potato in response to salinity stress under biochar amendment. It was hypothesized that addition of biochar may improve plant growth and yield by mitigating the negative effect of salinity through its high sorption ability. From tuber bulking to harvesting, the plants were exposed to three saline irrigations, that is 0, 25 and 50 mm NaCl solutions, respectively, and two levels of biochar (0 % and 5 % W/W) treatments. An adsorption study was also conducted to study the Na+ adsorption capability of biochar. Results indicated that biochar was capable to ameliorate salinity stress by adsorbing Na+. Increasing salinity level resulted in significant reductions of shoot biomass, root length and volume, tuber yield, photosynthetic rate (An), stomatal conductance (gs), midday leaf water potential, but increased abscisic acid (ABA) concentration in both leaf and xylem sap. At each salinity level, incorporation of biochar increased shoot biomass, root length and volume, tuber yield, An, gs, midday leaf water potential, and decreased ABA concentration in the leaf and xylem sap as compared with the respective non‐biochar control. Decreased Na+, Na+/K+ ratio and increased K+ content in xylem with biochar amendment also indicated its ameliorative effects on potato plants in response to salinity stress. The results suggested that incorporation of biochar might be a promising approach for enhancing crop productivity in salt‐affected soils.  相似文献   
3.
The objective of this study was to determine the effect of biochar addition on the soil N balance and cotton yield in a drip-irrigated cotton field. The experiment included four soil amendments: control, cotton straw biochar, corn cob biochar, and poultry manure biochar. The biochar was applied at a rate of 4.5 t·hm-2 except control. The results showed that all three types of biochar significantly reduced both the apparent soil N loss and the N surplus. The effect of cotton straw biochar treatment was most significant, relative to the control. Plant nitrogen uptake differed significantly between the different treatments, decreasing in the order cotton straw biochar > poultry manure biochar > corn cob biochar. Cotton yield also differed significantly between the different treatments, decreasing in the order poultry manure biochar > corn cob biochar, and cotton straw biochar.  相似文献   
4.
The work aimed to quantify native organic C mobilized in one calcareous soil in the 21 days after addition of biochar at a range of large to very large applications. The experiment was carried out in unplanted microcosms, and CO2 flux was used as a measure of net mineralization. A rapid methodological approach, which does not require 13C as a tracer, was used to assess any priming effects induced by the biochar. The amount of CO2‐C mobilized was small relative to the amount of biochar C and proportional to the amount of the biochar added. The additional CO2‐C was similar to the content of the water‐soluble organic carbon in the biochar added with each application. No interaction with native soil C, that is priming effect, was observed.  相似文献   
5.
马涛 《中国农学通报》2020,36(35):134-138
研究裂解温度对污泥生物质炭基础理化性质的影响,为安全、合理、高效处置污泥提供理论依据。将干燥污泥分别在200、300、500、700℃下进行热裂解处理(SBC200、SBC300、SBC500、SBC700),获得污泥生物质炭,测定其基础理化特性。结果表明:不同温度制备的污泥生物质炭表面颗粒结构完好,孔径范围均集中在10~50 μm,其中低温生物质炭SBC200表面较光滑,最可几孔径和中值孔径最大,分别为20.1 μm和14.8 μm,高温生物质炭SBC700表面较粗糙,比表面积最大,为5.98 m2/g。随裂解温度的提高,污泥生物质炭的产率、含水量、电导率、挥发分、阳离子交换量显著下降,全碳、氧、全氮、氢含量、有效磷和铵态氮均逐渐降低,pH和灰分含量显著增加。将污泥制备成生物质炭,是安全处置污泥的有效途径,低温制得的污泥生物质炭具有更大的提高土壤肥力的潜力,而高温制得的生物质炭在改良土壤酸性的应用上具有更大的潜力。  相似文献   
6.
Biochar application can improve soil properties, such as increasing soil organic carbon content, soil pH and water content. These properties are important to soil dissolved organic carbon (DOC); however, the effects of biochar on DOC concentration and composition have received little research attention, especially several years after biochar application under field conditions. This study was conducted in a long‐term experimental field where the biochar was only applied once in 2009. The purpose of the study was to investigate the effect of different biochar application rates (0, 30, 60 and 90 t ha?1) on the dynamics of soil water content, DOC concentration and DOC compositions (reducing sugar, soluble phenol and aromatics) over nine samplings during a 12‐month period in 2014. Our results showed that soil water content and DOC concentration varied from 7.1% to 14.5% and 59 to 230 mg C kg?1 soil during the 12 months, respectively. However, the biochar application rates did not significantly (p > 0.05) affect soil water content, DOC concentration and DOC composition at the same sampling period. The DOC concentration across the biochar treatments was positively correlated to soil water content. Moreover, the DOC composition (reducing sugar, soluble phenol or aromatics) and their concentrations were positively correlated to the total DOC concentration. In addition, biochar did not affect soil bulk density, pH, saturated hydraulic conductivity and crop yields. The results indicated that some benefits of biochar to soil may not persist 5 years after the application of biochar under a field condition.  相似文献   
7.
Biochar addition can expand soil organic carbon (SOC) stock and has potential ability in mitigating climate change. Also, some incubation experiments have shown that biochar can increase soil inorganic carbon (SIC) contents. However, there is no direct evidence for this from the field experiment. In order to make up the sparseness of available data resulting from the long‐term effect of biochar amendment on soil carbon fractions, here we detected the contents and stocks of the bulk SIC and SOC fractions based on a 10‐year field experiment of consecutive biochar application in Shandong Province, China. There are three biochar treatments as no‐biochar (control), and biochar application at 4.5 Mg ha?1 year?1 (B4.5) and 9.0 Mg ha?1 year?1 (B9.0), respectively. The results showed that biochar application significantly enhanced SIC content (3.2%–24.3%), >53 μm particulate organic carbon content (POC, 38.2%–166.2%) and total soil organic carbon content (15.8%–82.2%), compared with the no‐biochar control. However, <53 μm silt–clay‐associated organic carbon (SCOC) content was significantly decreased (14%–27%) under the B9.0 treatment. Our study provides the direct field evidence that SIC contributed to carbon sequestration after the biochar application, and indicates that the applied biochar was allocated mainly in POC fraction. Further, the decreased SCOC and increased microbial biomass carbon contents observed in field suggest that the biochar application might exert a positive priming effect on native soil organic carbon.  相似文献   
8.
于2019—2021年采用再裂区设计,设置氮肥、生物炭和脲酶抑制剂3个因素,主处理设5个氮水平:0、75、150、225 kg·hm-2和300 kg·hm-2,副处理设2个生物炭水平:0 t·hm-2和7.5 t·hm-2,副副处理设2个脲酶抑制剂水平:0%和2%,共20个处理,研究氮肥配施生物炭和脲酶抑制剂对夏玉米-冬小麦轮作体系作物产量和氮肥吸收利用的影响。结果表明,施用生物炭显著提高夏玉米和冬小麦产量、植株氮素吸收量、氮肥表观利用率、氮素收获指数以及夏玉米地上部生物量,较不施生物炭处理分别增加4.4%和2.9%、2.3%和3.0%、25.8%和13.5%、4.9%和6.1%、4.5%;氮肥单独配施生物炭可显著提高夏玉米和冬小麦产量、植株氮素吸收量和氮肥表观利用率,且氮肥和生物炭具有显著的交互效应。施用脲酶抑制剂显著增加夏玉米植株氮素吸收量和氮肥表观利用率,较不施脲酶抑制剂处理分别提高1.5%和3.0%;氮肥单独配施脲酶抑制剂可提高夏玉米植株氮素吸收量和氮肥表观利用率,但氮肥与脲酶抑制剂无显著...  相似文献   
9.
探究生物炭对亏缺灌溉下温室重壤土栽培番茄产量和品质的影响,确定番茄产量和综合品质最优的灌水量及生物炭添加量,为重壤土地区温室番茄栽培提供灌水及生物炭施加依据。采用桶栽试验,设置3个生物炭添加量(0,3%,6%,按干土重的百分比计)和3个灌水水平(充分灌溉W1:75%~85%θf;中度亏缺W2:55%~65%θf;重度亏缺W3:40%~50%θf。θf为田间持水量),共9个处理。结果表明:无生物炭添加时,亏缺灌溉下番茄产量降低了13.8%~54.0%(P<0.05),果实硬度、果色指数、VC、可溶性固形物、有机酸含量等营养品质指标均显著降低,果型指数、番茄红素则呈现增加的趋势,灌溉水利用效率在重度亏缺下降低了10.9%(P<0.05);在充分灌溉条件下添加生物炭,番茄产量和灌溉水利用效率分别提高了12.3%~22.0%和23.3%~28.6%,可溶性固形物含量降低了6.4%~17.7%(P<0.05),对VC、番茄红素、有机酸含量及外观品质无显著影响;在亏缺灌溉条件下添加生物炭不利于增产,C1W3、C2W3处理产量较C0W3处理分别降低了37.6%(P<0.05)、17.1%(P>0.05),但外观品质指标、VC、可溶性固形物均有一定幅度的提升,对灌溉水利用效率的影响表现为低添加量时降低而高添加量时提高。综合分析表明,各灌水水平下添加生物炭均能提高番茄品质的综合排名,充分灌溉下生物炭低添加量效果较好,而亏缺灌溉下高添加量较优,尤其是C2W2处理,番茄品质综合排名可达到充分灌溉的效果。综合考虑番茄品质、产量及灌溉水利用效率,C1W1处理(灌水水平为75%~85%θf,施炭量为3%)为最优处理。  相似文献   
10.
为探明不同氮水平下秸秆、生物质炭添加对陇中黄土高原旱作农田土壤酸解有机氮组分的影响,2014年在定西市安定区李家堡镇布设的不同氮水平下秸秆、生物质炭添加定位试验(共9个处理),利用Bremner分级法,对该试验2018年收获后的土壤有机氮组分进行测定与分析。结果表明:在0~30 cm土层(0~5、5~10、10~30 cm土层),各处理酸解总有机氮、酸解氨态氮、酸解氨基酸态氮、酸解未知态氮含量均随土层的加深而降低,酸解氨基糖态氮含量随土层的加深而增加;较之无炭处理(CN0、CN50、CN100处理的均值),生物质炭添加(BN0、BN50、BN100处理的均值)处理可提升酸解总有机氮含量10.12%、9.14%、7.61%(土层由上至下),提升酸解氨态氮含量15.02%、16.25%、17.19%(土层由上至下),提升酸解氨基酸态氮含量13.31%、11.84%、8.74%(土层由上至下),其中BN100处理下对其提升效应最显著;较之无炭处理(CN0、CN50、CN100处理的均值),秸秆添加处理(SN0、SN50、SN100处理的均值)可提升酸解氨基糖态氮含量26.46%、26.51%、25.78%(土层由上至下),其中SN100处理下对其提升效应最显著;不同处理下,有机氮各形态的分布趋势为酸解氨基酸态氮酸解氨态氮酸解未知态氮酸解氨基糖态氮。总之,BN100处理对酸解氨基酸态氮、酸解氨态氮提升效应最显著,进而增加土壤供氮潜力,可筛选为该区春小麦栽培的合理施肥方式。  相似文献   
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