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1.
Waste accumulation is a grave concern and becoming a transboundary challenge for environment. During Covid-19 pandemic, diverse type of waste were collected due to different practices employed in order to fight back the transmission rate of the virus. Covid-19 was proved to be capricious catastrophe of this 20th century and even not completely eradicated from the world. The havoc created by this imperceptible quick witted, pleomorphic deadly virus can't be ignored. Though a number of vaccines have been developed by the scientists but there is a fear of getting this virus again in our life. Medical studies prove that immunity drinks will help to reduce its reoccurrences. Coconut water is widely used among all drinks available globally. Its massive consumption created an incalculable pile of green coconut shells around the different corners of the world. This practice generating enormous problem of space acquisition for the environment. Both the environment and public health will benefit from an evaluation of quantity of coconut waste that is being thrown and its potential to generate value added products. With this context, present article has been planned to study different aspects like, coconut waste generation, its biological properties and environmental hazards associated with its accumulation. Additionally, this review illustrates, green technologies for production of different value added products from coconut waste. 相似文献
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AbstractThe roles of PM2.5-induced mitochondrial damage and oxidative stress on mast cell degranulation were examined in vitro. Mast cells were treated with suspensions of PM2.5 in Dulbecco’s modified Eagle’s medium at concentrations from 25 to 200?mg/L in the absence or presence of 10?mmol/L N-acetyl-L-cysteine. Biological effects and mitochondrial function were assessed by determining cell viability, β-hexosaminidase release, interleukin-4 secretion, reactive oxygen species generation, adenosine triphosphate production, potential alteration of mitochondrial membrane, and activities of mitochondrial electron transport chain complexes I and III. Exposure of mast cells to PM2.5 induced reduction of adenosine triphosphate production, collapse of mitochondrial membrane potential, and inhibition of the activity of complex III. Co-treatment of mast cells exposed to PM2.5 with N-acetyl-L-cysteine attenuated cytotoxicity and the production of reactive oxygen species, and decreased the release of β-hexosaminidase and interleukin-4. Evidently, PM2.5-induced oxidative stress plays an essential role in mitochondrial toxicity and mast cell activation. 相似文献
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Suzhen Qi Xue Liu Lizhen Zhu Xiaofeng Chen 《Journal of environmental science and health. Part. B》2018,53(3):171-175
Tebuconazole is a chiral trizole fungicide and widely used in many crops for controlling disease. Tebuconazole is potential toxic to some aquatic organisms but relative information of its isomers is scarce. To detect the endocrine disrupting effects and difference of rac-, R-, and S-tebuconazole, the chitinase activity in Daphnia magna and chitobiase activity in each test medium were used as biomonitors after a 14-day exposure. Results showed that chitinase activity was significantly reduced by rac-, R-, and S-tebuconazole. The chitobiase activity in the test medium was reduced by rac- and R-tebuconazole before day 10, and only one peak was observed at day 10 or day 12 compared with two obvious peaks in the control group (days 6 and 12). S-tebuconazole delayed and reduced the reproduction of D. magna, but did not delay the first chitobiase activity peak, whereas the second peak could not be characterized as the exposure concentration and time increased. Compared with chitinase activity, chitobiase activity can still be used as a rudimentary model for identifying molt-interfering xenobiotics, and further studies should focus on the analysis of correlations between these parameters. 相似文献
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以实际中药废水作为阳极基质、实际含镉废水作为阴极电解液,构建了连续流双室微生物燃料电池(MFC),考察了其产电性能及对两种废水的处理效果。78 d的运行数据表明:系统可实现最大输出电压417mV、最大体积功率密度11.8 W/m3,最大体积功率密度运行条件下的库伦效率为18.5%;在阳极进水有机物浓度变化较大的情况下,实现了阳极对中药废水中有机物的有效去除,平均COD去除率为81.5%;阴极对含镉废水中Cd2+的去除率为79.4%~84.8%。这表明MFC同步处理中药废水及重金属废水具有一定的可行性。 相似文献
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化石燃料原油和原煤的燃烧、含钒矿石的开采和冶炼是大气中重金属钒的主要来源。文章利用重金属钒的排放系数分析了中国1978-2010年人为过程释放到大气中重金属钒的总量和行业重金属钒的排放,预测了2020年和2030年中国大气中重金属钒的排放量。结果表明,自1978年以来,中国钒的排放量增加了4倍,中国2010年人类活动向大气排放的重金属钒总量达3.18万吨,约占世界总量的12%。原油燃烧释放到大气中的钒约占总量的85%,煤炭燃烧的排放量占10.5%,其中工业耗油向大气中释放重金属钒的比例从1980的71%下降到2008年的42%,总量从3 721 t增加至9 361 t;交通运输行业从10%上升到36%,总量从547 t增加至7 967 t;其它行业(农林牧渔水利业、批发零售业和住宿餐饮业、生活消费)基本维持在20%左右,总量从986 t增加至5 052 t。因此,应加强大气中钒的监测和管理,预防大气钒污染事件的发生。 相似文献
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以影响大面积染料敏化太阳电池性能的几个物理参量和几何参量为切入点,分析了内部电阻对电池性能的影响,针对几种构型不同的大面积电池,建立了效率的半经验模型.根据并联、串联、和各单元独立式串并联的大面积电池的相关物理参量和几何参量,对电池效率进行了计算.通过比较计算值与测试值的偏差,分析了半经验模型的适用性.在半经验模型的基础上,分析了相关物理参量和几何参量对电池性能的影响.结果表明,在实际应用中,通过半经验模型分析物理参量和几何参量的影响,可以优化大面积电池的性能. 相似文献
10.
高效木薯渣分解复合菌群RXS的构建及其发酵特性研究 总被引:1,自引:0,他引:1
从富含腐烂纤维质的环境中取样,通过以木薯渣及滤纸为碳源的蛋白胨纤维素培养基不断地富集培养,构建了一组高效稳定的纤维质分解复合菌群.考察了该复合菌群对不同纤维质底物的分解性能及其在木薯渣水解过程中主要参数的变化.研究发现该复合菌群对滤纸、脱脂棉、微晶纤维素、麦秸秆和木薯渣等原料均能够进行有效的降解.在该复合菌群应用于木薯渣的水解过程中,监测发现纤维素酶、半纤维素酶、果胶酶等关键酶的酶活力分别在第2~3 d达到最大值34.4、90.5和15.8U;经过10 d的发酵后,木薯渣中的纤维素、半纤维素及木质素分别降解了79.8%、85.9%和19.4%,且木薯渣的失重高达61.5%;此外,代谢产物主要是乙酸、丁酸、己酸和甘油;而溶解性COD、总糖和总挥发酸的变化表明第2 d时木薯渣的水解率最高.上述结果表明,该复合菌群能够有效地水解木薯燃料酒精生产过程中的废弃物木薯渣,并有望用于木薯渣高效沼气发酵的前处理中. 相似文献