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采用竹炭-微生物联合法,考察了竹炭用量、菌液用量、进水氨氮浓度、pH、DO、HRT等因素对氨氮废水处理效果的影响;同时采用对比实验,初步探讨了竹炭-微生物联合法处理沼液的作用机理。结果表明,竹炭-微生物法去除沼液氨氮的最优条件推荐为:竹炭用量30 g/L,微生物活性液用量3%,pH 7.0~8.0,DO为2 mg/L,HRT为48 h。竹炭-微生物法对沼液氨氮的去除过程可用一级反应动力学模型C=272.56e-0.0148描述,其去除效果来源于竹炭吸附和生物降解的协同作用,协同程度为48.45%。 相似文献
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Analysis of relationship between economic growth and environment in Benxi Shiqiaozi Development Zone
AnalysisofrelationshipbetweeneconomicgrowthandenvironmentinBenxiShiqiaoziDevelopmentZone¥LiBin;RuJiang;YeWenhu;XuYunlin(Cente... 相似文献
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熔融还原炼铁技术是目前国内外高度重视的新一代炼铁技术,Corex和Hlsmelt是其中的代表工艺。文章就炼铁工艺在技术、环境、经济等方面有不同的要求而提出可行性判别指标,对Corex、HIsmelt与传统高炉工艺进行各判别指标的对比分析,并结合广州珠江钢铁有限责任公司现址建设炼铁项目这一实例从定性和定量的角度判别三种工艺的优劣,从而指出,对于珠钢现址,Corex和H/smelt比高炉技术更适应环保要求,更利于珠钢的未来发展,其中HIsmelt最具优势和竞争力。 相似文献
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Cr(Ⅲ) adsorption by biochars generated from peanut, soybean, canola and rice straws is investigated with batch methods. Adsorption of Cr(Ⅲ) increased as pH rose from 2.5 to 5.0. Adsorption of Cr(Ⅲ) led to peak position shifts in the FFIR-PAS spectra of the biochars and made zeta potential values less negative, suggesting the formation of surface complexes between Cr^3+ and functional groups on the biochars. The adsorption capacity of Cr(Ⅲ) followed the order: peanut straw char 〉 soybean straw char 〉 canola straw char 〉 rice straw char, which was consistent with the content of acidic functional groups on the biochars. The increase in Cr^3+ hydrolysis as the pH rose was one of the main reasons for the increased adsorption of Cr(Ⅲ) by the biochars at higher pH values. Cr(llI) can be adsorbed by the biochars through electrostatic attraction between negative surfaces and Cr^3+, but the relative contribution of electrostatic adsorption was less than 5%. Therefore, Cr(Ⅲ) was mainly adsorbed by the biochars through specific adsorption. The Langumir and Freundlich equations fitted the adsorption isotherms well and can therefore be used to describe the adsorption behavior of Cr(Ⅲ) by the crop straw biochars. The crop straw biochars have great adsorption capacities for Cr(Ⅲ) under acidic conditions and can be used as adsorbents to remove Cr(Ⅲ) from acidic wastewaters. 相似文献
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The sedimentation capabilities of hexadecyltrimethylammonium-modified montmorillonites 总被引:4,自引:0,他引:4
Natural montmorillonite was modified with a quaternary ammonium compound, hexadecyltrimethylammonium (HDTMA). The sedimentation capabilities of unmodified and modified montmorillonites were then investigated. The sedimentation velocity of modified montmorillonites increased if the amounts of adsorbed HDTMA were from 0.3 to 1.0 times the cation exchange capacitity (CEC). It also emerged that the sedimentation capability of modified montmorillonites was improved and that the variously CEC-modified montmorillonites had similar sedimentation capabilities after they had sorbed organic matter from oily wastewater. Thus, modified montmorillonites (especially 0.5 CEC treatment) had good sedimentation capabilities for sorbing organic substance and can act as carriers in wastewater biotreatment. 相似文献
28.
温度及外加碳源对生物脱氮除磷过程的影响 总被引:3,自引:0,他引:3
针对污水处理厂普遍面临的进水碳源不足及冬季低温时出水氮磷不能稳定达标的问题,研究了温度(21、15和10℃)和外加碳源(乙酸)对活性污泥缺氧条件下反硝化及释磷过程的影响。结果表明,在缺氧条件下投加乙酸,释磷与反硝化反应可同时进行,且乙酸投量的增加仅延长快速碳源反硝化阶段及缺氧释磷阶段的反应时间;温度降低为15℃和10℃时,快速碳源反硝化阶段反硝化速率及缺氧释磷速率较21℃分别降低了约29.2%、42.2%和26.1%、32.3%。当硝态氮目标去除量与磷酸盐目标释放量之比超过5时,乙酸的最优投量以满足反硝化要求为准,计算得出21、15和10℃时常州某城镇污水处理厂乙酸最优投加量计算值约为30、39和46 mg/L。 相似文献
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Adsorption of Pb(II) on variable charge soils amended with rice-straw derived biochar 总被引:11,自引:0,他引:11
Two Ultisols and one Oxisol from tropical regions of southern China were incubated with rice straw biochar to investigate the effect of biochar on their surface charge and Pb(II) adsorption using batch methods. The incorporation of biochar induced a remarkable increase in soil cation exchange capacity after 30 d of incubation. The incorporation of biochar significantly increased the adsorption of Pb(II) by these variable charge soils; the enhancement of adsorption of Pb(II) by these soils increased with the addition level of biochar. Adsorption of Pb(II) involved both electrostatic and non-electrostatic mechanisms; however, biochar mainly increased Pb(II) adsorption through the non-electrostatic mechanism via the formation of surface complexes between Pb2+ and functional groups on biochar. There was greater enhancement of biochar on the non-electrostatic adsorption of Pb(II) by the variable charge soils at relatively low pH. Therefore, the incorporation of biochar decreased the activity and availability of Pb(II) to plants through increased non-electrostatic adsorption of Pb(II) by acidic variable charge soils. 相似文献