渔业现代化
漁業現代化
어업현대화
FISHERY MODERNIZATION
2014年
3期
11-14,42
,共5页
固定化微生物%聚乙烯醇%海藻酸钠%包埋法%复合载体%养殖废水
固定化微生物%聚乙烯醇%海藻痠鈉%包埋法%複閤載體%養殖廢水
고정화미생물%취을희순%해조산납%포매법%복합재체%양식폐수
immobilized microorganism%polyvinyl alcohol%sodium alginate%composite carrier%aquaculture wastewater
以水体中氨氮和亚硝酸盐氮的降解率为指标,寻求固定化微生物复合载体及最佳配比。以聚乙烯醇( PVA)和海藻酸钠( SA)为载体,二氧化硅( SiO2)为吸附剂,采用包埋法固定复合细菌制备成固定化小球,研究各成分在不同比例下,对水产养殖水体氨氮和亚硝酸盐氮的去除效果的影响。固定化小球的最佳工艺条件为PVA10%、SA3%、包埋菌量0.1%、SiO24%、交联时间36 h。固定化小球24 h的氨氮和亚硝酸盐氮降解率分别达到96.0%和98.0%。添加SiO2的复合载体小球具有载菌量高、比表面积大的特性。该方法工艺简单,处理效率高,是一种有应用价值的方法。
以水體中氨氮和亞硝痠鹽氮的降解率為指標,尋求固定化微生物複閤載體及最佳配比。以聚乙烯醇( PVA)和海藻痠鈉( SA)為載體,二氧化硅( SiO2)為吸附劑,採用包埋法固定複閤細菌製備成固定化小毬,研究各成分在不同比例下,對水產養殖水體氨氮和亞硝痠鹽氮的去除效果的影響。固定化小毬的最佳工藝條件為PVA10%、SA3%、包埋菌量0.1%、SiO24%、交聯時間36 h。固定化小毬24 h的氨氮和亞硝痠鹽氮降解率分彆達到96.0%和98.0%。添加SiO2的複閤載體小毬具有載菌量高、比錶麵積大的特性。該方法工藝簡單,處理效率高,是一種有應用價值的方法。
이수체중안담화아초산염담적강해솔위지표,심구고정화미생물복합재체급최가배비。이취을희순( PVA)화해조산납( SA)위재체,이양화규( SiO2)위흡부제,채용포매법고정복합세균제비성고정화소구,연구각성분재불동비례하,대수산양식수체안담화아초산염담적거제효과적영향。고정화소구적최가공예조건위PVA10%、SA3%、포매균량0.1%、SiO24%、교련시간36 h。고정화소구24 h적안담화아초산염담강해솔분별체도96.0%화98.0%。첨가SiO2적복합재체소구구유재균량고、비표면적대적특성。해방법공예간단,처리효솔고,시일충유응용개치적방법。
This paper is to find out the best composition of the immobilized microbial carrier and the optimum ration with the parameters of biodegradation rates on the ammonia nitrogen and nitrite nitrogen in aquaculture wastewater. Using polyvinyl alcohol ( PVA) and sodium alginate ( SA) as carriers and silica ( SiO2 ) as adsorbent, immobilized composite carrier beads were obtained with entrapping method. Based on that, the removal effect of immobilized carriers with different ratios of the components on ammonia nitrogen and nitrite nitrogen in the wastewater were studied. The experiment results showed that the optimum technics conditions were:the PVA mass percent 10%, SA mass percent 3%, bacteria mass percent 0.1%, silica mass percent 4%, and the cross-linking time 36 h. And the removal rate of ammonia nitrogen and nitrite nitrogen could reach to 96% and 98% in 24 h, respectively. The immobilized microorganism with adding the SiO2 has characteristics of high microbial load and large specific surface area. It shows that the process is simple and high efficiency, which is good approach with application value.