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41.
Shumiao Cao Wenke Wang Fei Wang Jun Zhang Zhoufeng Wang Shenke Yang Quanhong Xue 《Environmental science and pollution research international》2016,23(15):14898-14907
Microbe-assisted phytoremediation provides an effective approach to clean up heavy metal-contaminated soils. However, severe drought may affect the function of microbes in arid/semi-arid areas. Streptomyces pactum Act12 is a drought-tolerant soil actinomycete strain isolated from an extreme environment on the Qinghai-Tibet Plateau, China. In this study, pot experiments were conducted to assess the effect of Act12 on Cd tolerance, uptake, and accumulation in amaranth (Amaranthus hypochondriacus) under water deficit. Inoculated plants had higher Cd concentrations (root 8.7–33.9 %; shoot 53.2–102.1 %) and uptake (root 19.9–95.3 %; shoot 110.6–170.1 %) than non-inoculated controls in Cd-treated soil. The translocation factor of Cd from roots to shoots was increased by 14.2–75 % in inoculated plants, while the bioconcentration factor of Cd in roots and shoots was increased by 10.2–64.4 and 53.9–114.8 %, respectively. Moreover, inoculation with Act12 increased plant height, root length, and shoot biomass of amaranth in Cd-treated soil compared to non-inoculated controls. Physiochemical analysis revealed that Act12 enhanced Cd tolerance in the plants by increasing glutathione, elevating superoxide dismutase and catalase activities, as well as reducing malondialdehyde content in the leaves. The drought-tolerant actinomycete strain Act12 can enhance the phytoremediation efficiency of amaranth for Cd-contaminated soils under water deficit, exhibiting potential for application in arid and semi-arid areas. 相似文献
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污泥预处理强化厌氧水解与产甲烷实验研究 总被引:1,自引:0,他引:1
污泥传统厌氧消化因水解瓶颈而导致有机物转化甲烷产率低下。选择适当工况对污泥实施预处理可同时实现对污泥中木质纤维素破稳和污泥微生物细胞破壁,从而释放出较多溶解性COD(SCOD),使有机物水解变得容易进行,最终导致甲烷产率大幅提高。本研究通过热水解(T=150℃,t=30 min)、超声波(P=500 W,t=2 h)、碱解(pH=13,t=2 h)和酸解(pH=2,t=2 h)等4种预处理方式对原污泥实施最优工况预处理,分别获得了50.9%、39.1%、31.0%和22.4%的COD溶出率。对预处理后污泥进行传统条件下(SRT=20 d)厌氧消化,分别获得了53.6%、40%、26.8%和24%的甲烷产率(mL/g VSS)增量。同时,预处理后污泥中木质纤维素类物质降解率亦大大增加。缩短SRT(10 d)会导致传统厌氧消化甲烷产率急剧减少,但是,污泥预处理却非常有利于甲烷产率的提高,因此可通过外在预处理方式来逾越内在厌氧水解的瓶颈。 相似文献
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Xiao Feiyu Xu Jinmei Cao Lili Jiang Shanqing Zhang Qiuya Wang Liping 《Environmental science and pollution research international》2020,27(6):5788-5796
Environmental Science and Pollution Research - A series of g-C3N4/SrTiO3 (CN/SrTiO3) composites with the different mass ratio of g-C3N4 were prepared by facile in situ hydrothermal growth method,... 相似文献
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通过超声波-铁粉联合体系协同降解废水中的五氯酚(PCP).实验结果表明:降解120 min后,PCP去除率可达90.4%;在该体系中铁粉被逐渐腐蚀成Fe2+,随降解时间的延长,Fe2+浓度逐渐增加;体系中的Fe2+可以促进·OH的产生,并且可以与超声空化作用下产生的H2O2发生Fenton试剂氧化反应降解PCP;超声波... 相似文献
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Mechanisms of lead, copper, and zinc retention by phosphate rock 总被引:31,自引:0,他引:31
The solid-liquid interface reaction between phosphate rock (PR) and metals (Pb, Cu, and Zn) was studied. Phosphate rock has the highest affinity for Pb, followed by Cu and Zn, with sorption capacities of 138, 114, and 83.2 mmol/kg PR, respectively. In the Pb-Cu-Zn ternary system, competitive metal sorption occurred with sorption capacity reduction of 15.2%, 48.3%, and 75.6% for Pb, Cu, and Zn, respectively compared to the mono-metal systems. A fractional factorial design showed the interfering effect in the order of Pb>Cu>Zn. Desorption of Cu and Zn was sensitive to pH change, increasing with pH decline, whereas Pb desorption was decreased with a strongly acidic TCLP extracting solution (pH = 2.93). The greatest stability of Pb retention by PR can be attributed to the formation of insoluble fluoropyromorphite [Pb(10)(PO(4))(6)F(2)], which was primarily responsible for Pb immobilization (up to 78.3%), with less contribution from the surface adsorption or complexation (21.7%), compared to 74.5% for Cu and 95.7% for Zn. Solution pH reduction during metal retention and flow calorimetry analysis both supported the hypothesis of retention of Pb, Cu, and Zn by surface adsorption or complexation. Flow calorimetry indicated that Pb and Cu adsorption onto PR was exothermic, while Zn sorption was endothermic. Our research demonstrated that PR can effectively remove Pb from solutions, even in the presence of other heavy metals (e.g. Cu, Zn). 相似文献
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