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CO_(2)协同生物法处理铅锌选矿废水的应用 被引量:3
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作者 李星 杨有才 +1 位作者 李绪忠 王杰 《工业水处理》 CAS CSCD 北大核心 2022年第8期174-177,共4页
有色金属采选耗水量大,产生的废水量多,每年产生的废水量约占全国工业废水总量的1/10。随着国内对环保要求的日益提高,国家对新建选矿项目用新水单耗以及水循环利用率均提出了要求。目前国内许多大型选厂普遍将选矿废水输送至尾矿库自... 有色金属采选耗水量大,产生的废水量多,每年产生的废水量约占全国工业废水总量的1/10。随着国内对环保要求的日益提高,国家对新建选矿项目用新水单耗以及水循环利用率均提出了要求。目前国内许多大型选厂普遍将选矿废水输送至尾矿库自然降解后回用,随着近年来尾矿库建设批复的日渐缩紧,上述方法无法持续。经济、高效地处理选矿废水并进行回用是有色金属采选企业需要解决的重要课题。介绍了CO_(2)协同生物法处理铅锌选矿废水的应用案例,其工程总规模30000 m^(3)/d。对CO_(2)调节pH的预处理系统及采用DAT-IAT工艺的生化处理系统进行重点介绍。工程运行数据显示,该处理工艺可将废水COD_(Cr)稳定处理至20 mg/L,铅、锌离子亦能达到《铅锌工业污染物排放标准》(GB 25466—2010)的相关要求。采用该系统对某铅锌选矿厂的选矿废水进行处理并回用于选矿工艺,与清水选矿品位基本一致,实现了废水的无害化与资源化利用。污水处理运行成本约为2.50元/m^(3),综合效益明显。 展开更多
关键词 铅锌选矿废水 生物处理 co_(2)调节 废水回用
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Understorey plant community assemblage of Australian Eucalyptus woodlands under elevated CO_(2)is modulated by water and phosphorus availability
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作者 Raúl Ochoa-Hueso Rani Carroll +1 位作者 Juan Piñeiro Sally A.Power 《Journal of Plant Ecology》 SCIE CSCD 2021年第3期478-490,共13页
Aims Given the key functional role of understorey plant communities and the substantial extent of forest cover at the global scale,investigating understorey community responses to elevated CO_(2)(eCO_(2))concentration... Aims Given the key functional role of understorey plant communities and the substantial extent of forest cover at the global scale,investigating understorey community responses to elevated CO_(2)(eCO_(2))concentrations,and the role of soil resources in these responses,is important for understanding the ecosystem-level consequences of rising CO_(2)concentrations for forest ecosystems.Here,we evaluated how experimentally manipulating the availabilities of the two most limiting resources in an extremely phosphorus-limited eucalypt woodland in eastern Australia(i.e.water and phosphorus)can modulate the response of the understorey community to eCO_(2)in terms of germination,phenology,cover,community composition and leaf traits.Methods We collected soil containing native soil seed bank to grow experimental understorey plant communities under glasshouse conditions.Important Findings Phosphorus addition increased total plant cover,particularly during the first 4 weeks of growth and under high water conditions,a response driven by the graminoid component of the plant community.However,the treatment differences diminished as the experiment progressed,with all treatments converging at〜80%lant cover after〜11 weeks.In contrast,plant cover was not affected by eCO_(2).Multivariate analyses reflected temporal changes in the composition of plant communities,from pots where bare soil was dominant to high-cover pots dominated by a diverse community.However,both phosphorus addition and the interaction between water availability and CO_(2)affected the temporal trajectory of the plant community during the experiment.eCO_(2)also increased community-level specific leaf area,suggesting that functional adaptation of plant communities to CO_(2)may precede the onset of compositional responses.Given that the response of our seed bank-derived understorey community to CO_(2)developed over time and was mediated by interactions with phosphorus and water availability,our results suggest a limited role of eCO_(2)in shaping plant communities in water-limited systems,particularly where low soil nutrient availability constrains productivity responses. 展开更多
关键词 elevated co_(2) Eucalyptus woodland modulating drivers plant community dynamics soil resources
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