Pseudoephedrine 发表于 2025-3-28 16:56:42
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Cyanobacteria, Oil – and Cyanofuel?anobacteria, cyanobacteria and oil pollution, and cyanobacteria as a source of biofuel (cyanofuel) can be equated, respectfully, with Earth’s past, present and future. In this chapter we emphasize connections between all three through consideration of cyanobacterial physiology, ecology and molecular浸软 发表于 2025-3-29 04:24:51
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Agricultural Applications of Microbes, prominent. The combined activities of the cyanobacteria and sulphate-reducing bacteria result in steep and fluctuating gradients of sulphide and oxygen. Cyanobacteria therefore have to cope with high concentrations of sulphide, oxygen supersaturated – and anoxic conditions. These physicochemical grAcetabulum 发表于 2025-3-29 17:37:56
https://doi.org/10.1007/978-90-481-9252-6ss that impact carbon, nutrient (N, P, Fe and micronutrients), and oxygen cycling. The smaller coccoid picoplanktonic forms are an additionally important biomass fraction addressed elsewhere (see Chap. 20 by Scanlan). Marine planktonic cyanobacteria employ a suite of morphological, physiological and多样 发表于 2025-3-29 21:14:49
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Thermodynamics of Crystalline Solutions,ng extracellular and intracellular peptides, alkaloids and other biologically active compounds largely with respect to their human impact, especially toxicity, to a broader one of understanding their ecological role. Partly associated with this the process of colony formation has become an important画布 发表于 2025-3-30 05:09:40
Mineral Deposits and Their Characteristicsa key to understand the dominance of certain genotypes in the water column and of their ubiquity. We devoted some paragraphs to analyse the factors (biotic and abiotic) which can influence the dynamics of the different Pcy forms and we have approached the study of their common ecology.