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271.
聚磷菌厌氧时吸收乙酸和丙酸的代谢模型 总被引:2,自引:0,他引:2
水体中存在过多的磷是造成水体富营养化的重要原因之一,聚磷菌(polyphosphate accumulating organisms)因为能过量吸收磷而倍受关注。厌氧时,聚磷菌能大量吸收污水中的挥发性脂肪酸,经过一系列的生化反应,为好氧吸磷做准备。经过总结在厌氧条件下,聚磷菌Accumulibacter吸收乙酸和丙酸代谢转化的化学计量方程,并对模型中系数、还原力的产生、糖原降解途径以及厌氧条件下最终产物PHA的组成进行了讨论,得出挥发酸是通过主动运输进入细胞,且糖原经过ED途径提供还原力,多聚磷酸盐水解提供ATP和释放磷酸盐于体外,最终产生PHA的假设过程。但是,经过众多模型试验,一些假设仍没有得到最后的结论,所以应该进一步用富集程度较高的污泥进行精确研究。本文最终希望利用聚磷菌的代谢模型在工程运用中发挥最大效用。 相似文献
272.
273.
固定化反硝化聚磷菌同步除磷脱氮实验研究 总被引:3,自引:0,他引:3
实验采用海藻酸钠和PVA添加膨润土包埋固定经富集驯化的以反硝化聚磷菌(DNPAOs)为主的活性污泥,利用体视显微镜和扫描电子显微镜考察了固定化小球的形态和表面结构,并对厌氧/好氧条件下,包埋小球除磷脱氮性能进行探讨,结果表明:固定化小球具有良好的强化生物除磷和较好的反硝化脱氮性能,体系的COD去除率平均达74.9%,平均除磷效率为95.3%,氨氮平均去除率达到95.2%左右。小球若长时间缺氧,在其内部会出现厌氧区,并产生厌氧放磷现象。 相似文献
274.
Jinsong GUO Guohong YANG Fang FANG Yu QIN 《Frontiers of Environmental Science & Engineering in China》2008,2(4):439-445
In this study, three sequential batch biofilm reactors (SBBRs) were operated for 155 days to evaluate the performance of completely
autotrophic nitrogen removal over nitrite (CANON) process under different aeration modes and dissolved oxygen (DO). Synthetic
wastewater with 160-mg NH4
+-N/L was fed into the reactors. In the continuously-aerated reactor, the efficiency of the ammonium nitrogen conversion and
total nitrogen (TN) removal reached 80% and 70%, respectively, with DO between 0.8–1.0 mg/L. Whereas in the intermittently-aerated
reactor, at the aeration/non-aeration ratio of 1.0, ammonium was always under the detection limit and 86% of TN was removed
with DO between 2.0–2.5 mg/L during the aeration time. Results show that CANON could be achieved in both continuous and intermittent
aeration pattern. However, to achieve the same nitrogen removal efficiency, the DO needed in the intermittently-aerated sequential
batch biofilm reactor (SBBR) during the aeration period was higher than that in the continuously-aerated SBBR. In addition,
the DO in the CANON system should be adjusted to the aeration mode, and low DO was not a prerequisite to CANON process. 相似文献
275.
276.
A.M. Fermont P.J.A. van Asten K.E. Giller 《Agriculture, ecosystems & environment》2008,128(4):239-250
Increasing land pressure during the past three to four decades has transformed farming systems in the mid-altitude zone of East Africa. Traditional millet-, cotton-, sugarcane- and/or banana-based farming systems with an important fallow and/or grazing component have evolved into continuously cultivated cassava or cassava/maize-based systems. Within three to four decades, cassava cultivation increased from 1–11 to 16–55% of cropped fields in our six study sites. Declining soil fertility, and not labour or food shortage, was apparently the primary trigger for this transformation. The land use changes have increased nutrient offtakes and reduced nutrient recycling rates. Cassava and maize now account for 50–90% of nutrient removal. Whereas single-season fallows were the most important source of nutrient recycling on cropped fields in the past, currently cassava litterfall and maize stover contribute roughly 70% of nutrient recycling, with 50–70% of N, P and K recycled in cassava litterfall. This may explain why many farmers reason that cassava ‘rests’ the soil. With increasing land use pressure farmers progressively use cassava as an ‘imitation fallow’ throughout their farm. Farmers increasingly target cassava to poor fertility fields characterized by low pH and available P. High cassava intensities are nonetheless maintained on more fertile fields, probably to guarantee regeneration of soil fertility on all fields. Once cassava is targeted to poor fertility soils, farmers have run out of low-input management options and need to intensify management to maintain system productivity. As cassava is now used by more farmers and on a larger acreage than fallowing in the studied farming systems, cassava cropping could perhaps serve as an excellent entry point to strengthen system sustainability. 相似文献
277.
278.
利用国家科技攻的成果,并根据国内外的研究现状,论证了地下水中铜元素的形成及其与人群健康的关系。 相似文献
279.
城市污水生物脱氮除磷机理研究进展 总被引:25,自引:0,他引:25
介绍了生物脱氮、除磷的基本原理,综述了国内上关于城市污水脱氮除磷机理方面的研究现状和进展,并对今后开展这方面的研究提出展望 。 相似文献
280.
在染料中间体红色基B,紫酱色基GP的生产过程中,全产生降解处理的废水,采用中和隔油-生物接触氧化-电解脱色工艺处理可达标准排放。试验结果表明,硝化废酸液和水解母液的混合废水经过中和隔油处理后,CODcr的去除率可达到56%以上,而BOD5/CDOcr的比值可在从0.22提高到0.5以上;再经生物接触氧化处理后,CODcr的去除率在88%以上,BOD5的去除率在92%以上;最后,电解处理能使CODc 相似文献