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371.
在UASB反应器中接种好氧污泥培养厌氧颗粒污泥进行启动,研究不同HRT对老龄(13年)垃圾渗滤液对处理效果的影响情况。通过保持进水COD浓度不变、逐步缩短HRT从而提高容积负荷到40 g COD/(L.d)的方法,可以培育出直径为1~3 mm颗粒污泥,最终产气量稳定在100 L/d,甲烷含量在60%~70%之间,COD去除率保持在90%左右,污泥层最底部MLSS为81 g/L。逐步提高HRT依次为6、12、24、48和72 h考察其对处理效果的影响,当HRT为24 h时处理效果最好,COD去除率最高达到35%左右。 相似文献
372.
373.
厌氧后猪场废水资源化制备微生物絮凝剂 总被引:3,自引:0,他引:3
通过检测碳源、氮源、磷酸盐和pH等对微生物絮凝剂絮凝率的影响,考察了红平红球菌利用厌氧处理后的猪场废水生产微生物絮凝剂的性能。通过正交实验研究各因素对絮凝率的交互影响以及影响程度的相对大小,从而确定了最佳培养基。结果表明,1.0 L厌氧处理后的猪场废水中加入蔗糖10.0 g、KH2PO42.0 g、K2HPO45.0 g、NaCl 1.0 g、Mg-SO40.2 g,在温度30℃、摇床速度120 r/min、pH=8的条件下发酵72 h后,发酵液的絮凝率可达到92.57%。表明厌氧处理后的猪场废水中加入适量的蔗糖和磷酸盐,完全可以作为一种有效的生产微生物絮凝剂的培养基。 相似文献
374.
Xiao Sun Zuojun Liu Guilong Zhang Guannan Qiu Naiqin Zhong Lifang Wu 《Journal of environmental science and health. Part. B》2013,48(12):901-907
Traditional pesticides (TP) often do not adhere tightly to crop foliage. They can easily enter the surrounding environment through precipitation and volatilization. This can result in the pollution of the surrounding soil, water, and air. To reduce pesticide pollution, we developed a loss-control pesticide (LCP) by adding attapulgite with a nano networks structure fabricated using high energy electron beam (HEEB) irradiation and hydrothermal treatment to TP. HEEB irradiation effectively dispersed originally aggregated attapulgite through modified thermal, charge, and physical effects. Hydrothermal treatment further enhanced the dispersion of attapulgite to form nano porous networks via thermal and wet expansion effects, which are beneficial for pesticide binding. An LCP has improved retention on crop leaf surfaces. It has a higher adhesion capacity, reduced leaching and volatilization, and extended residual activity compared with the TP formulation. The treatment increases the residual activity of pesticides on crop foliage and decreases environmental pollution. 相似文献
375.
Ping Li Xinbin Feng Guangle Qiu Junfang Zhang Bo Meng Jianxu Wang 《Environmental science and pollution research international》2013,20(12):8374-8381
Mercury (Hg) speciation and mobility were determined in calcines and waste rocks collected from 9 Hg mines in China. Total Hg (THg) concentrations in the mine wastes varied widely in different Hg mines (with a range of 0.369 to 2,620 mg kg?1). Cinnabar is the dominant form of Hg in the mine wastes. However, Hg2+ and Hg0 concentrations in the calcines were significantly higher than these in the waste rocks, which suggested the retorting can produce large amounts of by-product Hg compounds. The THg and Hg0 concentrations in certain mine wastes exceeded soil guidelines recommended by US Environmental Protection Agency; while total soluble Hg concentrations of leachates in certain mine wastes exceeded National Surface Water Quality Standard of China. Mine wastes are important Hg pollution sources to the aquatic ecosystem and atmosphere. 相似文献
376.
应用CFD软件Fluent对浸没式膜生物反应器(submerged membrane bioreactor,SMBR)内气液两相流进行数值模拟研究,重点考查曝气系统的改变对气液两相流态的影响,并结合PIV实验验证模拟结果,从而为反应器的优化设计及膜污染的控制提供理论依据。模拟结果表明,SMBR内曝气强化了气液两相紊动,膜表面液相速度沿反应器高度增加且形成循环流动,有利于膜面污染物的脱落;反应器内气含率分布不均匀,出现死区,不利于微生物的生长;经实验验证,模拟结果吻合良好。 相似文献
377.
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
378.
Dou Zhang Zhiwei Li Jiguo Qiu Shanshan Zhou 《Journal of environmental science and health. Part. B》2016,51(10):688-694
A new species of Rhodococcus, designated strain MZ-3, which could degrade acetochlor efficiently were isolated and identified. The isolate could degrade and utilize acetochlor as the sole source of carbon, nitrogen, and energy for growth. The optimal conditions for the degradation and growth of MZ-3 were pH 7.0 and 30°C. Under these conditions, this strain could completely degrade 200 mg/L of acetochlor within 12 h of incubation. During the biodegradation process, the enantioselectivity of the strain was investigated using a chiral high-performance liquid chromatography (HPLC) system. However, no obvious enantioselectivities were found. 2-chloro-N-(2-methyl-6-ethylphenyl) acetamide (CMEPA) was detected as the intermediate using liquid chromatography-mass spectrometry (LC-MS) analyses. Our results suggest that strain MZ-3 might be a promising microorganism for the bioremediation of acetochlor-contaminated environments because of its acetochlor-degrading performance. 相似文献
379.
Rumana Tasmin Yohei Shimasaki Michito Tsuyama Xuchun Qiu Fatma Khalil Nozomu Okino Naotaka Yamada Shinji Fukuda Ik-Joon Kang Yuji Oshima 《Environmental science and pollution research international》2014,21(2):1064-1070
In the actual environment, temperatures fluctuate drastically through season or global warming and are thought to affects risk of pollutants for aquatic biota; however, there is no report about the effect of water temperature on toxicity of widely used herbicide diuron to fresh water microalgae. The present research investigated inhibitory effect of diuron on growth and photosynthetic activity of a green alga Pseudokirchneriella subcapitata at five different temperatures (10, 15, 20, 25, and 30 °C) for 144 h of exposure. As a result, effective diuron concentrations at which a 50 % decrease in algal growth occurred was increased with increasing water temperature ranging from 9.2 to 20.1 μg L–1 for 72 h and 9.4–28.5 μg L–1 for 144 h. The photochemical efficiency of photosystem II (F v/F m ratio) was significantly reduced at all temperatures by diuron exposure at 32 μg L–1 after 72 h. Inhibition rates was significantly increased with decreased water temperature (P?<?0.01). Intracellular H2O2 levels as an indicator of oxidative stress were also decreased with increasing temperature in both control and diuron treatment groups and were about 2.5 times higher in diuron treatment groups than that of controls (P?<?0.01). Our results suggest water temperatures may affect the toxicokinetics of diuron in freshwater and should therefore be considered in environmental risk assessment. 相似文献
380.
以磷石膏废渣为原料制备硫酸钙晶须,考察了硫酸钙晶须对模拟含磷废水中磷的去除效果,分析了初始废水pH、初始磷质量浓度、硫酸钙晶须加入量对磷吸附效果的影响,研究了硫酸钙晶须对磷的吸附等温线,同时对吸附机理进行了探讨。实验结果表明:硫酸钙晶须在碱性条件下对磷的去除率较酸性条件下高,且初始废水pH为10时去除效果最佳;最佳硫酸钙晶须加入量为0.03 g/mg(以磷计);在初始废水pH为10、初始磷质量浓度为50 mg/L、硫酸钙晶须加入量为1.5 g/L的条件下,于25 ℃下反应1 h,磷的去除率达到99.16%,上清液TP为0.419 mg/L;与Freundlich模型相比,Langmuir等温吸附模型更适合描述硫酸钙晶须对磷的吸附过程,采用该模型拟合得出25 ℃下磷的饱和吸附量为140.4 mg/g。 相似文献