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811.
以4,4′-二溴联苯醚(BDE-15)为研究对象,探讨了电极电压、初始土壤pH、β-环糊精加入量、NaCl加入量等工艺条件对多溴联苯醚在土壤中迁移效果的影响。实验结果表明:在电极电压为5~15V范围内,随着电极电压的升高,土壤中BDE-15的迁移效果增强;初始土壤为酸性时、加入β-环糊精或NaCl后,土壤中BDE-15的迁移效果均增强。本实验选择的最佳工作条件为:电极电压15V,初始土壤pH3,β-环糊精的加入量3g,NaCl加入量5g。 相似文献
812.
813.
混凝法去除城市生活污水中抗性基因 总被引:2,自引:0,他引:2
采用聚合氯化铝(PACl)和聚合硫酸铁(PFS)混凝处理城市生活污水(格栅出水和二级出水),考察混凝剂投加量、p H值对污水中抗生素抗性基因(ARGs)的去除率影响。结果表明,随着PACl和PFS投加量的增加,污水中目标基因的去除率先升高后降低;在p H 3~10的范围内,PACl对目标基因的去除效果随p H值的增加而降低,PFS对目标基因的去除随着p H值的增加先升高后降低。对于格栅出水,PACl和PFS的最佳投加量为400 mg/L,基因的去除率分别达到2.33~2.97 log和0.98~2.11 log,对于二级出水,PACl和PFS的最佳投加量分别为200 mg/L和150 mg/L,基因的去除率分别为1.85~2.64log、1.81~2.46 log;混凝去除最优p H条件分别为p H=3(投加PACl)及p H=5~6(投加PFS)。PACl的处理效果优于PFS。 相似文献
814.
Huaidong He Nora F. Y. Tam Aijun Yao Rongliang Qiu Wai Chin Li Zhihong Ye 《Environmental science and pollution research international》2016,23(23):23551-23560
Paddy soils and rice (Oryza sativa L.) contaminated by mixed heavy metals have given rise to great concern. Field experiments were conducted over two cultivation seasons to study the effects of steel slag (SS), fly ash (FA), limestone (LS), bioorganic fertilizer (BF), and the combination of SS and BF (SSBF) on rice grain yield, Cd, Pb, and Zn and nutrient accumulation in brown rice, bioavailability of Cd, Pb, and Zn in soil as well as soil properties (pH and catalase), at two acidic paddy fields contaminated with mixed heavy metals (Cd, Pb, and Zn). Compared to the controls, SS, LS, and SSBF at both low and high additions significantly elevated soil pH over both cultivation seasons. The high treatments of SS and SSBF markedly increased grain yields, the accumulation of P and Ca in brown rice and soil catalase activities in the first cultivation season. The most striking result was from SS application (4.0 t ha?1) that consistently and significantly reduced the soil bioavailability of Cd, Pb, and Zn by 38.5–91.2 % and the concentrations of Cd and Pb in brown rice by 20.9–50.9 % in the two soils over both cultivation seasons. LS addition (4.0 t ha?1) also markedly reduced the bioavailable Cd, Pb, and Zn in soil and the Cd concentrations in brown rice. BF remobilized soil Cd and Pb leading to more accumulation of these metals in brown rice. The results showed that steel slag was most effective in the remediation of acidic paddy soils contaminated with mixed heavy metals. 相似文献
815.
工业园区水污染防治的问题与对策探讨 总被引:1,自引:1,他引:0
随着快速工业化发展,尤其是新建工业项目"入园进区"的推进,工业园区水污染防治越来越成为工业污染防治的重中之重。本文通过从园区准入、适用标准、管理体系等方面对当前工业园区水污染防治中的问题的梳理,对工业园区系统化的工业园区环境行政管理体系进行探讨,研究建议:在园区设立时,应突出区域上资源、能源、环境三元优化与统一,园区企业入园突出环境准入尤其是有利于园区的生态化与循环化改造;在园区企业水污染防治中,应探索园区企业协同治污的差异化排放标准,建立全过程控制水污染防治路线;在环境管理体制创新中,应以排污许可管理为主线,构建园区环境管理相关方协同的系统管理机制。 相似文献
816.
Tong Liu Shi-yong Yao Zhong-Yi Yin Xu-Xu Zheng Yu Shen 《Environmental science and pollution research international》2016,23(8):7132-7137
The seed of Zanthoxylum bungeanum (Z. bungeanum) is a by-product of pepper production and rich in unsaturated fatty acid, cellulose, and protein. The seed oil obtained from traditional producing process by squeezing or extracting would be bad quality and could not be used as edible oil. In this paper, a new preparation method of Z. bungeanum seed kernel oil (ZSKO) was developed by comparing the advantages and disadvantages of alkali saponification-cold squeezing, alkali saponification-solvent extraction, and alkali saponification-supercritical fluid extraction with carbon dioxide (SFE-CO2). The results showed that the alkali saponification-cold squeezing could be the optimal preparation method of ZSKO, which contained the following steps: Z. bungeanum seed was pretreated by alkali saponification under the conditions of adding 10 %NaOH (w/w), solution temperature was 80 °C, and saponification reaction time was 45 min, and pretreated seed was separated by filtering, water washing, and overnight drying at 50 °C, then repeated squeezing was taken until no oil generated at 60 °C with 15 % moisture content, and ZSKO was attained finally using centrifuge. The produced ZSKO contained more than 90 % unsaturated fatty acids and no trans-fatty acids and be testified as a good edible oil with low-value level of acid and peroxide. It was demonstrated that the alkali saponification-cold squeezing process could be scaled up and applied to industrialized production of ZSKO. 相似文献
817.
针对专项工业规划环境影响评价中环境风险评价应用尚不成熟的现状,建立了一套专项工业规划环境风险评价方法,并将其应用到江苏省农药行业总体规划环境影响评价分析中。从环境风险角度分析行业发展方向、强度和布局的合理性,提出规划调整和行业风险管理的建议,以降低事故发生的概率和影响,保障行业的健康稳定发展。通过对江苏省农药行业规划明确的产品结构、产业组织结构、创新体系和技术发展目标等进行风险识别、分析和评价,得出生产和使用光气的定点企业、使用液氯的企业、产生硫化氢的企业的环境风险防护距离(以生产装置为起点)应至少设置为1 000,500,250 m。 相似文献
818.
Huan Liu Bei Yuan Bi Zhang Hongyun Hu Aijun Li Guangqian Luo Hong Yao 《Journal of Material Cycles and Waste Management》2014,16(1):101-107
Mercury from coal-fired utility boilers, as the largest atmospheric mercury emission source, imposes serious environmental risks and health concerns. In order to explore the possibility of reducing costs of activated carbon injection, we investigated the most promising mercury control technology, Hg0 removal using ZnCl2-impregnated adsorbents derived from sewage sludge. The results demonstrated that sludge-based adsorbents (SBAs) had fairly high mercury adsorption capacity over a wide range of temperatures (80–170 °C). Oxidizing atmosphere could improve the adsorption of Hg0 and weaken the inhibition of SO2 on mercury adsorption to some extent. NO exhibited no obvious impact on mercury removal performance. In addition, to clarify whether oxygen- or chlorine-containing functional groups attributed to good mercury adsorption capacity of SBAs, the oxygen-containing functional groups were removed using Boehm’s method, and a temperature-programmed decomposition desorption experiment was conducted. The results suggest that chlorine-containing functional groups played a significant role in the removal process of mercury from flue gas using SBAs. 相似文献
819.
煤基腐殖酸对外源砷胁迫下玉米生长及生理性状的影响 总被引:1,自引:0,他引:1
为了筛选用于砷污染土壤治理的煤基腐殖酸,采用盆栽实验研究了施用不同种类和浓度的煤基腐殖酸及EDTA对外源砷胁迫下玉米株高、株鲜重、株干重、根干重、砷积累量、叶片抗氧化酶(POD,SOD和CAT)活性和脯氨酸含量的影响。结果表明,11种供试煤基腐殖酸均促进了玉米生长,提高了叶片POD、SOD和CAT活性。其中6和10号腐殖酸可降低土壤砷活性和显著抑制玉米吸收和积累砷,而8和9号腐殖酸增加了土壤活性砷和显著促进了玉米对砷的吸收和累积,且不同程度地强于EDTA。除8和9号外,其余腐殖酸均可明显降低玉米叶片脯氨酸的含量。EDTA可显著促进玉米吸收和积累砷,且加剧了砷对玉米的危害。因此,8和9号供试煤基腐殖酸可以替代EDTA活化土壤砷,与植物配合以提高砷污染土壤的植物修复速度和效果,而6和10号供试煤基腐殖酸则可用于土壤砷钝化剂,以保证作物产品的安全。 相似文献
820.
水环境胁迫下的环鄱阳湖区城市化格局响应 总被引:1,自引:0,他引:1
当前城市化和水环境问题已成为全球共同面临的富有挑战性的问题,选取环鄱阳湖区作为研究样区,借助GIS技术,采用空间统计方法并建立水环境胁迫模型,对这种水环境胁迫下的城市化格局响应进行了研究。研究表明:(1)综合城市化计算显示,环湖区的城市化格局是随着与鄱阳湖体距离的增大,其城市化水平呈现出先增大后减小趋势,表明湖泊对城市化影响总体上显现出与距离相关的非线性分异格局;(2)空间统计结果显示,水资源富集的环湖核心区的空间关联比较显著,其水质对城市化水平的胁迫作用比较明显;(3)水胁迫度比较表明,在环湖边缘区和外围区水环境对城市化的胁迫强度级别有明显差异,随着与鄱阳湖体距离的增大,水环境对城市化的胁迫力也增大,表现出“中心 外围”逐渐增大的阶梯变化趋势 相似文献