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71.
Anna Kusumawati Benito Heru Purwanto Makruf Nurudin 《Soil Science and Plant Nutrition》2020,66(1):206-213
ABSTRACT Sugarcane is a strategic commodity in Indonesia. It is usually raised in a monoculture system. There is a lack of information about the effects of extended sugarcane monoculture on the soil carbon fraction. The aim of this study was to determine the relative changes in the soil organic C fractions in response to the duration of sugarcane monoculture on Entisols, Inceptisols, and Vertisols. The measured variables were the percentages of sand, silt, and clay, organic matter (OM), total nitrogen (TN), pH (H2O), cation exchange capacity (CEC), NH4 +, NO3 -, labile carbon fraction (soil carbon mineralization (C-Min), soil microbial carbon (C-Mic), and carbon particulate organic matter (C-POM)), and stable carbon fraction (humic and fulvic acids). Soil type with sugarcane monoculture period had significant influences on the percentages of clay, sand, silt, CEC, and pH (H2O). Soil type and sugarcane monoculture period had no apparent significant effect on C-Min or C-POM but did significantly influence C-Mic. The humic and fulvic acid levels in all three soil types were affected by the duration of sugarcane monoculture. To establish the impact of long-term sugarcane monoculture on the physicochemical properties of soils with various textures, it is more appropriate to measure the soil stable carbon fractions such as humic and fulvic acid rather than the soil labile carbon fractions such as C-Min, C-POM, or C-Mic. 相似文献
72.
甘肃梨园河流域地下水来源及其水化学特征 总被引:1,自引:0,他引:1
通过分析水化学与氢氧稳定同位素的关系,研究梨园河流域地下水的补给机理和水化学演化规律。地下水总溶解固体(TDS)自西南向东北递增,最大值为1 258 mg/L。沿流程方向,深层地下水的水化学类型由Ca-HCO3→Ca-Mg-HCO3、Mg-SO4→Na-SO4型。浅层地下水的水化学类型由Ca-HCO3→Mg-HCO3-SO4→Mg-SO4型。地表水的水化学类型无分异,主要为Ca-HCO3型。深层和浅层地下水沿途均发生了水岩融滤作用。Na+含量沿程增大,一是地下水中Ca2+与岩石中Na+发生阳离子交换作用,二是硅酸盐矿物的风化作用产生Na+。Phreeqc软件模拟显示,深层地下水中方解石先沉淀后溶解;CO2、石膏、白云石和岩盐溶解。浅层地下水中,方解石由不饱和逐渐变为饱和;石膏、岩盐一直溶解。地下水的δ2H和δ18O值大部分位于大气降水线上方,反应了山区现代降水或雪冰融水通过出山地表径流补给,交替更新快,且深层地下水向上补给浅层地下水和地表水。地表、地下水相互转化是该区水循环的主要特征。 相似文献
73.
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75.
应用~(15)N稀释法筛选高固氮能力的大豆品种 总被引:3,自引:0,他引:3
应用^15N稀释法筛选出了具有高固氮能力的大豆品种和品系,大豆品系1005,8502,2096,1454,94用东农42是高固氮品系,它们的固氮效率高达70%,大豆品系1454和1555即高产又高固氮。根据方差分析,不同大豆品种或品系固氮效率差异显,固氮效率与产量无相关关系,与成熟期呈正相关,成熟期越长,固氮效率越高。有10年品种或品系在1992和1994年两次进行试验,尽管两年的降雨情况有较大 相似文献
76.
为研究植物营养元素来源,对贵州龙里地区黄壤上生长的12种主要植物的部分营养元素含量及Sr同位素特征进行了分析。结果表明:喀斯特地区黄壤上的植物具有高钙含量,营养元素含量由高到低排序为CaKMg;研究区植物的Ca、K、Sr平均含量均高出报道的陆生植物的平均含量,但比贵州地区同样以灰岩为母质发育而来的石灰土上生长的植物低;植物样品的87Sr/86Sr同位素比值变化范围在0.708 56~0.711 45之间。基于锶同位素组成的端员模式计算结果表明,除了苔藓、石松的营养元素主要来源于大气输入外,其他植物的营养元素主要来源于土壤风化。 相似文献
77.
农田土壤氮素迁移是影响区域环境质量的重要过程。通过综述近期在区域有机氮迁移以及稳定性同位素和模型研究方法方面的进展,指出:我国有机氮源的氮素损失在人口稠密和养殖业发达的区域已经成为非点源污染的重要来源;小流域氮素输出中可溶性有机氮是一个重要组成,其输出过程受气候以及人为引起的植被、土壤及水文过程的变化的影响;稳定性氮氧同位素可以识别水体中陆源氮污染物的分布;基于GIS的过程模型可以定量分析区域氮素迁移的数量及其环境效应。进一步提出了目前需要加强农田有机氮迁移过程及其影响机制的研究,发展基于稳定性同位素的区域氮素迁移定量方法,建立稻田生态系统和水旱轮作系统的氮素迁移定量评价模型,并归纳了减少面源污染的区域氮素迁移调控措施。 相似文献
78.
Impacts of anthropogenic N additions on nitrogen mineralization from plant litter in exotic annual grasslands 总被引:1,自引:0,他引:1
Urban regions of southern California receive up to 45 kg N ha-1 y-1 from nitrogen (N) deposition. A field decomposition study was done using 15N-labelled litter of the widespread exotic annual grass Bromus diandrus to determine whether elevated soil N is strictly from N deposition or whether N mineralization rates from litter are also increased under N deposition. Tissue N and lignin concentrations, which are inversely related in field sites with high and low N deposition, determine the rate at which N moves from plant litter to soil and becomes available to plants. The effect of soil N on N movement from litter to soil was tested by placing litter on high and low N soil in a factorial experiment with two levels of litter N and two levels of soil N. The litter quality changes associated with N deposition resulted in faster rates of N cycling from litter to soil. Concentrations of litter-derived N in total N, NH4+, NO3−, microbial N and organic N were all higher from high N/low lignin litter than from low N/high lignin litter. Litter contributed more N to soil NH4+ and microbial N in high N than low N soil. At the end of the study, N mineralized from high N litter on high N soil accounted for 46% of soil NH4+ and 11% of soil NO3−, compared to 35% of soil NH4+ and 6% of soil NO3− from low N litter on low N soil. The study showed that in high N deposition areas, elevated inorganic soil N concentrations at the end of the summer N deposition season are a result of N mineralized from plant litter as well as from N deposition. 相似文献
79.
80.
BACKGROUND: Vector‐borne diseases continue to present significant threats to human, animal and plant health. Mosquitoes, houseflies, sand flies and stable flies are well‐known vectors of several human and animal pathogens. The toxicity of selected semiochemicals with molecular structures indicative of insecticidal activity was determined against these insect species with the aim of developing novel insecticides toxic to multiple insect species. RESULTS: Three semiochemicals, namely beta‐damascone, cyclemone A and melafleur, showed remarkable toxicity to three mosquitoes, Aedes aegypti L., Ae. albopictus (Skuse) and Anopheles quadrimaculatus Say, the housefly, Musca domestica L., the stable fly, Stomoxys calcitrans L., and the sand fly, Lutzomyia shannoni (Dyar). The chemicals were equally toxic to several field‐collected permethrin‐tolerant housefly strains. When formulated as 500 mL L?1 emulsifiable concentrates, the chemicals demonstrated stability and toxicity on filter paper and camouflage military fabrics, with persistence up to 8 days under laboratory conditions. The chemicals were equally effective under field conditions when evaluated on unpainted plywood panels, although a higher dosage was required under field conditions to achieve similar efficacy. CONCLUSION: Laboratory quantification of LC50 values and field efficacy of three semiochemicals as formulated compounds on mosquitoes, houseflies, stable flies and sand flies showed that these semiochemicals could serve as potent insecticides for multiple insect species. Copyright © 2010 Society of Chemical Industry 相似文献