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CharacteristicsofphosphoruschemistryanditsgeographicaldistributionintheHaiheRivervalley,NorthChinaJiangGaoming;HuangYinxiao;L... 相似文献
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二级出水中磷的混凝处理研究 总被引:1,自引:0,他引:1
以北京市某污水处理厂的二级出水中总磷为去除对象,通过混凝的静态烧杯实验[1],确定了二级出水除磷效果较好的絮凝剂聚合氯化铁(PFC)[2]和Al2(SO4)3[3]混合使用的最佳投药量,使出水中磷(TP)符合再生水水质标准的要求.絮凝剂组合时静态混凝烧杯实验表明:PFC-Al2(SO4)3体积比1∶1时,最佳投药量离子浓度比为:Fe3 /Al3 ∶9.9/7(mg·L-1),此时TP去除率为93%,浊度去除率为33%.PFC-Al2(SO4)3体积比1:2时,最佳投药量离子浓度比为:Fe3 /Al3 ∶4.95/7(mg·L-1),此时TP去除率为88%,浊度去除率为71%. 相似文献
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在实验室条件下,模拟了DO控制、pH值调节、温度调节、水动力条件等,进行了底泥释磷实验。实验表明:(1)厌氧条件下,底泥中的磷向水体释放,且释放强度随pH值的升高而升高。好氧条件下,底泥非但没有向水体释放磷,反而从水体中吸附磷,呈“负释放”状态;且pH值越低,“负释放强度”越大。(2)温度升高有利于底泥中磷的释放,最大释放强度随温度的升高而提前。(3)搅动条件下的底泥磷释放量大于静置条件下的底泥磷释放量。(4)微生物对磷释放有明显的影响。从本次模拟实验结果看,体系温度升高、减少溶解氧、提高pH以及施以水动力作用,均可使底泥中的磷释放量增加,在常温(25℃)、厌氧、pH=7.5条件下,底泥中磷向水体的释放量将增加17%左右。 相似文献
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以白三叶草和紫花苜蓿为供试植物,采用三室装置对不同接种处理的根际土壤微生物数量以及磷营养状况进行了研究.研究结果表明,接种混合茵根真菌的侵染率显著高于其他两种接种单一菌根真菌的处理.接种菌根对植物生长以及根际土壤微生物群落数量的促进作用均较为明显,三种接种处理植物之间的生物量差异不大,接种AM菌根促进了细茵和放线茵数量的增加,对真菌数量略有促进.接种菌根对根际土壤磷吸收有显著的促进作用,有利于植被的生长,为进一步的生态恢复与生物多样性研究奠定理论基础. 相似文献
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《环境科学学报(英文版)》2023,35(3):798-810
Although point and nonpoint sources contribute roughly equal nutrient loads to lakes, their relative role in supporting algae growth has not been clarified. In this research, we have established a quantitative relationship between algae-available phosphorus (P) and P chemical fractions in sediments; the latter indicates the relative contribution of point versus nonpoint sources. Surface sediments from three large shallow lakes in eastern China, namely, the Chaohu, Taihu and Hongzehu Lakes, were sampled to assess their algae-available P and chemically extracted P fractions. The algae-available P primarily comes from iron/aluminium (hydr)oxide-bound P (Fe/Al-bound P), 45% of which is algae-available P. The ratio of Fe/Al-bound P to calcium compound-bound P (Ca-bound P) indicated the relative contribution of point to nonpoint sources, with the point sources contributing the majority of increased Fe/Al-bound P in sediments. Therefore, the reduction of point sources from urbanized areas, rather than nonpoint sources from agricultural areas that primarily contribute to the Ca-bound P fraction, should be prioritized to alleviate cyanobacterial algal blooms (CyanoHABs) in shallow lakes with sediment P as a potential source to support algae growth. With these important results, we proposed a conceptual model for “P-pumping suction” from sediments to algae to aid in the development of the criteria for sediment P concentrations in shallow lakes. 相似文献
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Numerous studies support that biodiversity predict most to ecosystem functioning, but whether other factors display a more significant direct impact on ecosystem functioning than biodiversity remains to be studied. We investigated 398 samples of the phytoplankton phosphorus resource use efficiency (RUEP = chlorophyll-a concentration/dissolved phosphate) across two seasons in nine plateau lakes in Yunnan Province, China. We identified the main contributors to phytoplankton RUEP and analyzed their potential influences on RUEP at different lake trophic states. The results showed that total nitrogen (TN) contributed the most to RUEP among the nine lakes, whereas community turnover (measured as community dissimilarity) explained the most to RUEP variation across the two seasons. Moreover, TN also influenced RUEP by affecting biodiversity. Species richness (SR), functional attribute diversity (FAD2), and dendrogram-based functional diversity (FDc) were positively correlated with RUEP in both seasons, while evenness was negatively correlated with RUEP at the end of the rainy season. We also found that the effects of biodiversity and turnover on RUEP depended on the lake trophic states. SR and FAD2 were positively correlated with RUEP in all three trophic states. Evenness showed a negative correlation with RUEP at the eutrophic and oligotrophic levels, but a positive correlation at the mesotrophic level. Turnover had a negative influence on RUEP at the eutrophic level, but a positive influence at the mesotrophic and oligotrophic levels. Overall, our results suggested that multiple factors and nutrient states need to be considered when the ecosystem functioning predictors and the biodiversity-ecosystem functioning relationships are investigated. 相似文献
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