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高浓度含盐废水的主要处理方法有反渗透、离子交换、蒸馏等,目前处理成本比较高。为改变当前高盐废水处理成本居高不下的现状,受渗透的基本原理启发,以分析渗透法处理高盐废水的基本原理为基础,提出渗透法处理高盐废水的新工艺。以溶质氨的设计溶液为例,分析高盐废水处理的新工艺流程及工艺的可行性,井对比反渗透工艺,详细阐述新工艺的特点。经计算分析认为。基于渗透原理的高盐废水处理工艺可降低高盐废水的处理成本,可作为高含盐废水处理方法的一个新的研究方向。 相似文献
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Jianxin Shou Huaping Dong Jianfa Li Jiaxing Zhong Saijun Li Jinhong Lü Yimin Li 《Environmental science and pollution research international》2016,23(19):19156-19163
Biochars’ properties will change after application in soil due to the interactions with soil constituents, which would then impact the performance of biochars as soil amendment. For a better understanding on these interactions, two woody biochars of different surface areas (SA) were physically treated with aluminum oxide (Al-oxide) to investigate its potential influence on biochars’ sorption property. Both the micropore area and mesopore (17~500 Å in diameter) area of the low-SA biochar were enhanced by at least 1.5 times after treatment with Al-oxide, whereas the same treatment did not change the surface characteristics of the high-SA biochar due partly to its well-developed porosity. The enhanced sorption of the pesticide isoproturon to the Al-oxide-treated low-SA biochar was observed and is positively related to the increased mesopore area. The desorption hysteresis of pesticide from the low-SA biochar was strengthened because of more pesticide molecules entrapped in the expanded pores by Al-oxide. However, no obvious change of pesticide sorption to the high-SA biochar after Al-oxide treatment was observed, corresponding to its unchanged porosity. The results suggest that the influence of Al-oxide on the biochars’ sorption property is dependent on their porosity. This study will provide valuable information on the use of biochars for reducing the bioavailability of pesticides. 相似文献
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DDTC—TX—100胶束增溶直接光度法测定水中低含量铜 总被引:1,自引:0,他引:1
TritonX100对DDTC(二乙基二硫代氨基甲酸钠)与铜反应生成的络合物Cu(DDTC)2有增溶增敏作用,建立了低含量铜直接光度测定法。操作简便快速,选择性、精密度和回收率均较好,相对标准偏差为08%~43%,回收率为96%~106%,摩尔吸光系数ε=64×103L/(mol·cm 相似文献
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Fengzu Zhang Sufang Fan Shaowen Liu Xuesheng Li Canping Pan 《Environmental monitoring and assessment》2013,185(11):9101-9109
A modified LC-MS method for the analysis of mepiquat residue in wheat, potato, and soil was developed and validated. A hydrophilic interaction liquid chromatographic column has been successfully used to retain and separate the mepiquat. Mepiquat residue dynamics and final residues in supervised field trials at Good Agricultural Practice (GAP) conditions in wheat, potato, and soil were studied. The limits of quantification for mepiquat in all samples were all 0.007 mg kg?1, which were lower than their maximum residue limits. At fortification levels of 0.04, 0.2, and 2 mg kg?1 in all samples, recoveries ranged from 77.5 to 116.4 % with relative standard deviations of 0.4–7.9 % (n?=?5). The dissipation half-lives (T 1/2) of mepiquat in soil (wheat), wheat plants, soil (potato), and potato plants were 4.5–6.3, 3.0–5.6, 2.2–4.6, and 2.4–3.2 days, respectively. The final residues of mepiquat were below 0.153 mg kg?1 in soil (wheat), 0.052–1.900 mg kg?1 in wheat, below 0.072 mg kg?1 in soil (potato), and below 1.173 mg kg?1 in potato at harvest time. Moreover, pesticide risk assessment for all the detected residues was conducted. A maximum 0.0012 % of acceptable daily intake (150 mg kg?1) for national estimated daily intake indicated low dietary risk of these products. 相似文献
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以粉煤灰、石灰为主要原料,经混合料制备、成型、蒸压、低温焙烧、粉磨工艺制备的新型水泥既具有普通水泥的胶凝特性,又同时具有水化热低、后期强度高的特点,对过程工艺参数、物料配比对新型水泥的质量影响进行了研究,该工艺有望为粉煤灰在水泥行业的规模化利用提供技术支持。 相似文献
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连云港海州湾海域表层水体和沉积物中微塑料的分布特征 总被引:8,自引:7,他引:1
近年来,微塑料成为国内外广泛关注的新型海洋污染物,海湾作为人类在海岸环境中的主要活动地区,一直是海洋污染物聚集地,但我国对近岸大部分中小型海湾环境中微塑料的分布状况仍鲜见报道.为了解我国近岸中小型海湾的微塑料污染特征,本研究以江苏省海州湾海域表层海水和沉积物中采集的微塑料为样本,通过定性和定量方法研究了表层水和沉积物中微塑料主要类型和丰度及空间分布特征.结果表明,海州湾表层水体和沉积物中的微塑料丰度分别为(2.60±1.40)个·m~(-3)和(0.33±0.26)个·g~(-1),在国内近岸环境(表层水0.33~545.00个·m~(-3),沉积物0.07~2.58个·g~(-1))中,海州湾表层水中的微塑料丰度处于较低水平,但沉积物中的微塑料处于较高水平.塑料污染物的粒径大小在水体中分布范围为0.08~13.48 mm,其中,微塑料(粒径5 mm)占91.8%,塑料污染物在沉积物中粒径的分布范围为0.04~14.74 mm,微塑料占91.4%,水体和沉积物中60%以上的微塑料粒径小于2.00 mm.海州湾海域微塑料的形态以纤维状为主,占92%;颜色以蓝色和黑色为主,占70%;材质以人造纤维和PET为主,占79.4%.表层水中微塑料的分布与悬浮物浓度分布具有显著的相关性(P0.05),沉积物中微塑料的分布受多方面因素影响,其分布规律与表层水中微塑料的分布以及沉积物中粒径的分布都具有较大差异性.通过对微塑料的形态特征以及成分组成的分析表明,海州湾的微塑料主要来源于海水养殖和沿岸陆源输入. 相似文献