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91.
生物活性磷在氯碱总厂污水处理中的应用   总被引:1,自引:0,他引:1  
袁磊 《上海环境科学》2003,22(12):1004-1006
为了改善氯碱总厂污水处理系统磷酸盐吸收效率不高的状况,在该系统中投加了美国PROBIOTIC SOLUTIONS公司生产的生物活性磷Super Phos。结果表明:生物活性磷能以1/8—1/10的浓度取代系统原来投加的KH2PO4。投加生物活性磷后,微生物对磷的吸收效率提高,出水总磷降低:系统的CODcr、BODs、氨氮去除效率同使用前相比不变或略有提高:二沉池中的污泥沉降性能及污泥活性提高,原生动物种群增多。因此,生物活性磷完全具有取代磷酸、磷酸盐类作为磷营养添加剂的趋势,并且表现出了其他磷酸盐类所不具有的优势。  相似文献   
92.
钝化与叶面阻控对不同基因型红菜苔镉累积的影响   总被引:2,自引:0,他引:2  
曹坤坤  李成成  胡学玉  郭晓  黄洋 《环境科学》2020,41(7):3434-3440
为探索中轻度重金属镉(Cd)污染农田安全利用技术,实现农产品安全生产,以两种不同镉累积基因型红菜苔为供试作物,采用盆栽试验的方法,分别于两种作物上设置相同的6个处理:对照(CK)、添加3%(质量分数)生物质炭(BC)、添加0.17%钙镁磷肥(CMP)、叶面喷施3 mg·L~(-1) Na_2SeO_3的水溶液(Se)、 BC+Se和CMP+Se,研究不同处理土壤镉有效性变化及植株不同部位镉累积特征.结果表明:①相同处理下,低镉累积基因型金秋红三号红菜苔根部土壤有效态镉含量均显著低于高镉累积基因型十月红.BC和CMP两种钝化剂对金秋红三号根部土壤中的镉钝化效果显著,且BC效果更佳,钝化处理的效果显著优于叶面阻控.②金秋红三号红菜苔根系较十月红对镉有更强的富集能力,其富集的镉倾向于囤积在根部.叶面施硒与两种钝化剂对抑制镉向红菜苔可食部位转移富集无协同效果.③在BC和CMP钝化处理下,金秋红三号红菜苔可食部位镉含量低于GB 2762-2017中镉限量值(0.10mg·kg~(-1)).本研究表明,针对中轻度镉污染农田土壤,通过施加生物质炭、钙镁磷肥等绿色钝化剂,种植弱吸收低积累作物品种,可以实现受镉污染农田的安全利用和农产品的安全生产.  相似文献   
93.
为了解同步硝化内源反硝化除磷(SNEDPR)系统处理低C/N(<3)污水的脱氮除磷特性,采用厌氧/低氧(溶解氧0.5~1.0mg/L)运行的SBR反应器,以低碳城市污水为处理对象,考察了C/N对SNEDPR启动、脱氮除磷性能优化与菌群结构变化的影响.结果表明:进水C/N由4.3提高至5.15时,系统脱氮除磷性能均逐渐增强,系统总氮(TN)和PO43--P去除率最高达89.3%和90.6%;降低进水C/N <3后,系统脱氮、除磷性能均呈现先降低后逐渐升高的趋势,但低C/N对PAOs(聚磷菌)除磷性能的影响高于其对反硝化聚糖菌(DGAOs)内源反硝化脱氮性能的影响,表现为TN和PO43--P去除率分别先降低至21.4%和3.4%后逐渐升高至92.9%和94.1%.系统稳定运行阶段,单位COD平均释磷量和SNED率达437.1mgP/gCOD和89.1%,出水NH4+-N、NOx--N和PO43--P浓度平均为0,4.4,0.2mg/L.经136d的运行,系统内PAOs,GAOs,AOB(氨氧化菌)和NOB(亚硝酸盐氧化菌)分别占全菌的(16±3)%,(8±3)%,(7±3)%和(3±1)%,其保证了系统除磷、硝化和反硝化脱氮性能.此外,系统好氧段存在同步短程硝化内源反硝化,是实现低C/N(<3)污水高效脱氮除磷的原因.  相似文献   
94.
Iron oxide(FeO)coated by natural organic matter(NOM)is ubiquitous.The associations of minerals with organic matter(OM)significantly changes their surface properties and reactivity,and thus affect the environmental fate of pollutants,including nutrients(e.g.,phosphorus(P)).In this study,ferrihydrite/goethite-humic acid(FH/GE–HA)complexes were prepared and their adsorption characteristics on P at various p H and ionic strength were investigated.The results indicated that the Fe O–OM complexes showed a decreased P adsorption capacity in comparison with bare Fe O.The maximum adsorption capacity(Q_(max))decreased in the order of FH(22.17 mg/g)FH-HA(5.43 mg/g)GE(4.67 mg/g)GE-HA(3.27 mg/g).After coating with HA,the amorphous FH–HA complex still showed higher P adsorption than the crystalline GE–HA complex.The decreased P adsorption observed might be attributed to changes of the Fe O surface charges caused by OM association.The dependence of P adsorption on the specific surface area of adsorbents suggests that the Fe O component in the complexes is still the main contributor for the adsorption surfaces.The P adsorptions on Fe O–HA complexes decreased with increasing initial p H or decreasing initial ionic strength.A strong dependence of P adsorption on ionic strength and p H may demonstrate that outer-sphere complexes between the OM component on the surface and P possibly coexist with inner-sphere surface complexes between the Fe O component and P.Therefore,previous over-emphasis on the contributions of original minerals to P immobilization possibly over-estimates the P loading capacity of soils,especially in humic-rich areas.  相似文献   
95.
A combined approach of biological treatment, solids digestion and nutrient recovery was tested on dairy manure. A sequencing batch reactor (SBR) was operated in three modes, in order to optimize nutrient (nitrogen and phosphorus) removals. The highest average removal efficiencies of 91% for NH4-N, 59% for PO4-P and 80% for total chemical oxygen demand (COD) were achieved. Staining experiments suggested the coexistence of glycogen and phosphorus accumulating organisms. Anaerobic digestion of wasted bio-solids was able to produce a PO4-P concentration of 70 mgL?1 in the supernatant. A pilot-scale experiment, designed to recover phosphorus in the supernatant as struvite (magnesium ammonium phosphate), was able to remove 82% of soluble PO4-P.  相似文献   
96.
Abstract

Annual applications of (NH4)2SO4 NH4NO3 and urea on a Solonetzic soil at 112 kg N/ha for 10 consecutive years reduced pH levels from 5.6 for the check to 4.4, 4.9 and 5.3, respectively for (NH4)2SO4, NH4NO3 and urea. (NH4)2SO4 generated twice as much exchange acidity as NH4NO3 and four times as much as urea. Net extractable cations leached from the Ap horizon closely approximated the amount of exchange acidity generated by (NH4)2SO4 and NH4NO3 fertilizers. The levels of soil extractable Al and Mn were greatly enhanced by (NH4)2SO4 as were plant contents. Similar acidifying effects to that produced by the (NH4)2SO4 occurred when NH4NO3 was applied at 300 kg N/ha annually for 12 consecutive years in another field experiment on the same soil. Liming samples of the field (NH4)2SO4 acidified soils in the greenhouse, significantly increased yields and lowered the Al and Mn contents of the plants to normal levels.  相似文献   
97.
采用二级混凝-气浮-水解酸化-SBR-过滤工艺,对某汽车制造厂的混合废水(包括脱脂废水、电泳废水、磷化废水和生活污水等)进行处理。经过对处理工艺进出水主要水质指标连续1个月的监测,发现COD去除率可达92.5%,SS去除率可达95.2%,NH3-N去除率可达58%,TP去除率可达96.7%,出水水质符合国家《污水综合排放标准》(GB8978—1996)一级排放标准,吨水处理成本为1.6元/t,系统运行稳定,具有明显的经济、环保和社会效益。t  相似文献   
98.
增施磷肥对提高强酸性高硒茶园土壤硒有效性的效果   总被引:3,自引:0,他引:3  
通过大田试验,研究了增施钙镁磷肥、过磷酸钙及与生物有机肥混施共6种调控措施对强酸性高硒茶园土壤基本化学性质、土壤有效硒和茶叶中硒质量比的调控效果.结果表明,不同磷肥及不同用量处理对土壤有效硒质量比增加均有效果,高用量的3种处理(钙镁磷肥高用量与生物有机肥混施、钙镁磷肥高用量和过磷酸钙高用量)效果好于正常用量的处理(钙镁磷肥正常用量与生物有机肥混施、钙镁磷肥正常用量、过磷酸钙正常用量),且用量相同的情况下,伴有生物有机肥的磷肥处理效果最好.增施磷肥调控均不同程度地增加了茶叶硒质量比,6种处理的增幅均达到极显著水平(p<0.01).  相似文献   
99.
The secondary tropical forests in southern China have suffered from frequent human disturbance and increasing high N deposition. In order to explore the nutrient limitation status in secondary tropical forests of South China, this 3-year field experiment of nitrogen (+N) and phosphorus (+P) addition investigated nitrogen (N) and phosphorus (P) concentrations of the aboveground tissue (leaf and branch) of two widely distributed understory native species Clerodendrum cyrtophyllum and Uvaria microcarpa in a secondary tropical forest of South China. The results showed that: 1) the N and P concentrations of the two species were significantly different (P < 0.001); N and P concentrations of different tissues in the same species were different; N&P addition greatly affected N and P concentrations in branch rather than new leaf and older leaf. 2) +N treatment had no significant effect on N or P concentrations of either species, but significantly decreased N:P ratios (P = 0.001), at the level of 9% for C. cyrtophyllum and 50% for U. microcarpa, respectively. 3) +P treatment had no significant effect on tissue N concentrations, but significantly increased plant P concentrations (P < 0.001), at 54% for C. cyrtophyllum and 88% for U. microcarpa, respectively; +P treatment significantly decreased plant N:P ratios (P < 0.001), at 28% and 60%, respectively. 4) The alterations of P concentrations of two species had significantly negative correlations with N:P alterations under +N/+P treatment (P < 0.001), suggesting that the alteration of P concentrations in plant tissue was the major driver for N:P alteration. Our results show that N and P addition would affect tissue N and P concentrations of the two species, with +P treatment having relatively greater effect on nutrient concentrations than +N treatment; the branch is more sensitive than new or older leaf in response to nutrient addition. Therefore, P availability may be the limiting factor for plant growth in the tropical forests.  相似文献   
100.
采用黄磷乳浊液为吸收剂,考察了黄磷浓度、反应温度、搅拌速度、氧气浓度、烟气流量等影响因素对脱硝率的影响,并且通过添加碳酸钙进行改性,提高了体系的脱硝率。结果表明,脱硝率随黄磷浓度增大、反应温度升高、搅拌速度增大而升高;随烟气流量的增大而下降;加入碳酸钙改性可以明显提高体系脱硝效果;烟气流量400 m L/min,反应温度50℃,搅拌速度1 200 r/min,氧气浓度12%,黄磷浓度6 g/L,碳酸钙浓度2 g/L的条件下,处理NO浓度为0.06%的烟气,反应30 min体系脱硝率可达到84.76%。  相似文献   
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