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- soil microbial biomass phosphorus (SMBP) 土壤微生物生物量磷
- soil microbial biomass phosphorus 土壤微生物量磷
- microbial biomass phosphorus 微生物量磷
- Studies on the effect of recreation activities on soil microbial biomass carbon, soil microbial biomass nitrogen and soil microbial biomass phosphorus in Zhangjiajie National Forest Park 旅游踩踏对土壤微生物生物量碳、氮、磷的影响
- Soil microbial biomass P(SMBp) is an important resource of plant P nutrition. 了解土壤无机磷含量对土壤微生物量磷及碳磷比的影响。
- Study on the Seasonal Dynamic Model of Puccinellia tenuiflora Soil Microbial Biomass in Northeastern China. 碱茅土壤微生物生物量季节动态模型的研究。
- Soil Microbial Biomass Acts as Source and Sink of Energy Material C Flou in Mountainous Soils of Guizhou. 贵州山区土壤中微生物生物量是能源物质碳流动的源与汇
- The microbial biomass carbon is linearly correlated with carbon availability in the Calamagrostis angustifolia soil. 大于10%25以后就几乎没有影响了.;微生物生物量碳与碳的可利用指数也存在较为显著的正相关关系
- The soil microbial biomass was not significantly affected by atrazine and butachlor at the same dose. 相同浓度的阿特拉津和丁草胺对水稻土微生物生物量影响不明显.
- There was a close positive relationship between soil microbial biomass C:N ratios and Cr or Ni concentration. 上述微生物活性指标与重金属相关性分析表明,微生物量碳氮、过氧化氢酶活性、脲酶活性、酸性磷酸酶活性与Cr、Ni的加入量呈现显著负相关性,土壤微生物量碳氮比、呼吸商与Cr、Ni的加入量呈现显著正相关性。
- The feasibility of using phosphotides to evaluate the microbial biomass in marine and estuary sediments was investigated. 探讨了用磷脂类化合物估价海洋和河口沉积物中微生物生物量的可行性。
- During the rice growth stages, the microbial biomass C content in rice rhizosphere didn't vary from the changes of enzymes in the soil. 同时在水稻生长周期内的各个时期,水稻根际土壤微生物生物量碳与根际土壤酶等变化并不完全一致。
- At the same time, the study results of the relationship between soil microbial biomass nitrogen and mineralizable nitrogen are evaluated in this paper. 评价了土壤微生物体氮与可矿化氮的关系的研究结果。
- Wang S P,Zhou G S,Sun C Z et al.The dynamics of soil microbial biomass nitrogen and biological availability[J].Plant Nutr.Fert.Sci.,2003,9(1):87-90. [20]王淑平;周广胜;孙长占;等.;土壤微生物量氮的动态及其生物有效性研究[J]
- Soil microbial biomass is the most active component of soil organic carbon that regulates biogeochemical processes in terrestrial ecosystems. 摘要土壤微生物生物量是土壤有机质中最为活跃的部分,它调节着陆地生态系统的生物地球化学过程。
- The results showed that microbial biomass carbon were significantly higher in RS and PM treatment compared to the CF or CK (P<0.05). 发现施秸秆(RS)和施厩肥(PM)处理的微生物生物量C明显高于不施肥(CK)和施化肥(CF)处理(P<0.;05)。
- Effct of fenilizahon on achve C (CA), microbial biomass C(CMB), mineralizable C(CM) and C pool management index (CPMI) in different soils were examined. 分析了施肥对土壤活性碳(CA)、微生物生物量碳(CMB)、矿化碳(CM)及碳库管理指数(CPMI)的影响。
- The mechanisms underlying these effects are the impact of nematode grazing on microorganisms and the release of nutrients from consumed microbial biomass. 这种作用主要是线虫通过取食活动加速微生物周转, 并通过代谢分泌和释放微生物所固持的养分而实现的。
- Wu J,Joergensen R G,Pommerening B et al.Measurement of soil microbial biomass by fumigation-extraction-an automated procedure[J].Soil Biol.Biochem.,1990,20:1167-1169. 李忠佩唐永良.;不同施肥制度下红壤稻田的养分循环与平衡规律[J]
- Hunag M,Xiao H A,Tong C L et al.Responses of the microbial biomass P to the changes of organic C and P in paddy soils[J].Sci.Agric.Sin.,2004,37(9):1400-1406. [6]黄敏;肖和艾;童成立;等.;稻田土壤微生物磷变化对土壤有机碳和磷素的响应[J]