CN106853328A - 一种用于低温烟气脱硫脱硝的双氧水高效利用方法及装置 - Google Patents
一种用于低温烟气脱硫脱硝的双氧水高效利用方法及装置 Download PDFInfo
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- CN106853328A CN106853328A CN201610137036.3A CN201610137036A CN106853328A CN 106853328 A CN106853328 A CN 106853328A CN 201610137036 A CN201610137036 A CN 201610137036A CN 106853328 A CN106853328 A CN 106853328A
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- Prior art keywords
- hydrogen peroxide
- carrier gas
- flue
- gas
- temperature
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- MHAJPDPJQMAIIY-UHFFFAOYSA-N hydrogen peroxide Chemical compound data:image/svg+xml;base64,PD94bWwgdmVyc2lvbj0nMS4wJyBlbmNvZGluZz0naXNvLTg4NTktMSc/Pgo8c3ZnIHZlcnNpb249JzEuMScgYmFzZVByb2ZpbGU9J2Z1bGwnCiAgICAgICAgICAgICAgeG1sbnM9J2h0dHA6Ly93d3cudzMub3JnLzIwMDAvc3ZnJwogICAgICAgICAgICAgICAgICAgICAgeG1sbnM6cmRraXQ9J2h0dHA6Ly93d3cucmRraXQub3JnL3htbCcKICAgICAgICAgICAgICAgICAgICAgIHhtbG5zOnhsaW5rPSdodHRwOi8vd3d3LnczLm9yZy8xOTk5L3hsaW5rJwogICAgICAgICAgICAgICAgICB4bWw6c3BhY2U9J3ByZXNlcnZlJwp3aWR0aD0nMzAwcHgnIGhlaWdodD0nMzAwcHgnIHZpZXdCb3g9JzAgMCAzMDAgMzAwJz4KPCEtLSBFTkQgT0YgSEVBREVSIC0tPgo8cmVjdCBzdHlsZT0nb3BhY2l0eToxLjA7ZmlsbDojRkZGRkZGO3N0cm9rZTpub25lJyB3aWR0aD0nMzAwLjAnIGhlaWdodD0nMzAwLjAnIHg9JzAuMCcgeT0nMC4wJz4gPC9yZWN0Pgo8cGF0aCBjbGFzcz0nYm9uZC0wIGF0b20tMCBhdG9tLTEnIGQ9J00gMTA1LjcsMTUwLjAgTCAxOTUuNSwxNTAuMCcgc3R5bGU9J2ZpbGw6bm9uZTtmaWxsLXJ1bGU6ZXZlbm9kZDtzdHJva2U6I0U4NDIzNTtzdHJva2Utd2lkdGg6Mi4wcHg7c3Ryb2tlLWxpbmVjYXA6YnV0dDtzdHJva2UtbGluZWpvaW46bWl0ZXI7c3Ryb2tlLW9wYWNpdHk6MScgLz4KPHRleHQgeD0nMTAuMicgeT0nMTcwLjAnIGNsYXNzPSdhdG9tLTAnIHN0eWxlPSdmb250LXNpemU6NDBweDtmb250LXN0eWxlOm5vcm1hbDtmb250LXdlaWdodDpub3JtYWw7ZmlsbC1vcGFjaXR5OjE7c3Ryb2tlOm5vbmU7Zm9udC1mYW1pbHk6c2Fucy1zZXJpZjt0ZXh0LWFuY2hvcjpzdGFydDtmaWxsOiNFODQyMzUnID5IPC90ZXh0Pgo8dGV4dCB4PSczNS44JyB5PScxNzAuMCcgY2xhc3M9J2F0b20tMCcgc3R5bGU9J2ZvbnQtc2l6ZTo0MHB4O2ZvbnQtc3R5bGU6bm9ybWFsO2ZvbnQtd2VpZ2h0Om5vcm1hbDtmaWxsLW9wYWNpdHk6MTtzdHJva2U6bm9uZTtmb250LWZhbWlseTpzYW5zLXNlcmlmO3RleHQtYW5jaG9yOnN0YXJ0O2ZpbGw6I0U4NDIzNScgPk88L3RleHQ+Cjx0ZXh0IHg9JzIzOS45JyB5PScxNzAuMCcgY2xhc3M9J2F0b20tMScgc3R5bGU9J2ZvbnQtc2l6ZTo0MHB4O2ZvbnQtc3R5bGU6bm9ybWFsO2ZvbnQtd2VpZ2h0Om5vcm1hbDtmaWxsLW9wYWNpdHk6MTtzdHJva2U6bm9uZTtmb250LWZhbWlseTpzYW5zLXNlcmlmO3RleHQtYW5jaG9yOnN0YXJ0O2ZpbGw6I0U4NDIzNScgPk88L3RleHQ+Cjx0ZXh0IHg9JzI2Ny41JyB5PScxNzAuMCcgY2xhc3M9J2F0b20tMScgc3R5bGU9J2ZvbnQtc2l6ZTo0MHB4O2ZvbnQtc3R5bGU6bm9ybWFsO2ZvbnQtd2VpZ2h0Om5vcm1hbDtmaWxsLW9wYWNpdHk6MTtzdHJva2U6bm9uZTtmb250LWZhbWlseTpzYW5zLXNlcmlmO3RleHQtYW5jaG9yOnN0YXJ0O2ZpbGw6I0U4NDIzNScgPkg8L3RleHQ+Cjwvc3ZnPgo= data:image/svg+xml;base64,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 OO MHAJPDPJQMAIIY-UHFFFAOYSA-N 0.000 title claims abstract description 319
- 239000003546 flue gas Substances 0.000 title claims abstract description 61
- UGFAIRIUMAVXCW-UHFFFAOYSA-N carbon monoxide Chemical compound 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[O+]#[C-] UGFAIRIUMAVXCW-UHFFFAOYSA-N 0.000 title claims abstract description 60
- 239000012159 carrier gas Substances 0.000 claims abstract description 86
- 239000007788 liquid Substances 0.000 claims abstract description 41
- 230000005587 bubbling Effects 0.000 claims abstract description 25
- 229910001882 dioxygen Inorganic materials 0.000 claims abstract description 21
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- TUJKJAMUKRIRHC-UHFFFAOYSA-N hydroxyl radical Chemical compound 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[OH] TUJKJAMUKRIRHC-UHFFFAOYSA-N 0.000 claims abstract description 13
- 238000006477 desulfuration reaction Methods 0.000 claims abstract description 12
- 239000007789 gas Substances 0.000 claims abstract description 9
- 238000002156 mixing Methods 0.000 claims description 23
- 239000006200 vaporizer Substances 0.000 claims description 19
- HEMHJVSKTPXQMS-UHFFFAOYSA-M sodium hydroxide Chemical compound data:image/svg+xml;base64,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 data:image/svg+xml;base64,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 [OH-].[Na+] HEMHJVSKTPXQMS-UHFFFAOYSA-M 0.000 claims description 16
- QAOWNCQODCNURD-UHFFFAOYSA-N Sulfuric acid Chemical compound 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- 238000010438 heat treatment Methods 0.000 claims description 9
- GRYLNZFGIOXLOG-UHFFFAOYSA-N nitric acid Chemical compound 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O[N+]([O-])=O GRYLNZFGIOXLOG-UHFFFAOYSA-N 0.000 claims description 6
- 235000011121 sodium hydroxide Nutrition 0.000 claims description 6
- 239000011261 inert gas Substances 0.000 claims description 5
- 239000007921 spray Substances 0.000 claims description 5
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- 239000000203 mixture Substances 0.000 claims description 4
- 238000001704 evaporation Methods 0.000 claims description 2
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- MWUXSHHQAYIFBG-UHFFFAOYSA-N Nitrogen oxide Substances 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- 238000005516 engineering process Methods 0.000 description 3
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- 229910052813 nitrogen oxide Inorganic materials 0.000 description 3
- 230000003647 oxidation Effects 0.000 description 3
- 238000007254 oxidation reaction Methods 0.000 description 3
- 239000000376 reactant Substances 0.000 description 3
- XTQHKBHJIVJGKJ-UHFFFAOYSA-N sulfur monoxide Chemical compound data:image/svg+xml;base64,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 data:image/svg+xml;base64,PD94bWwgdmVyc2lvbj0nMS4wJyBlbmNvZGluZz0naXNvLTg4NTktMSc/Pgo8c3ZnIHZlcnNpb249JzEuMScgYmFzZVByb2ZpbGU9J2Z1bGwnCiAgICAgICAgICAgICAgeG1sbnM9J2h0dHA6Ly93d3cudzMub3JnLzIwMDAvc3ZnJwogICAgICAgICAgICAgICAgICAgICAgeG1sbnM6cmRraXQ9J2h0dHA6Ly93d3cucmRraXQub3JnL3htbCcKICAgICAgICAgICAgICAgICAgICAgIHhtbG5zOnhsaW5rPSdodHRwOi8vd3d3LnczLm9yZy8xOTk5L3hsaW5rJwogICAgICAgICAgICAgICAgICB4bWw6c3BhY2U9J3ByZXNlcnZlJwp3aWR0aD0nODVweCcgaGVpZ2h0PSc4NXB4JyB2aWV3Qm94PScwIDAgODUgODUnPgo8IS0tIEVORCBPRiBIRUFERVIgLS0+CjxyZWN0IHN0eWxlPSdvcGFjaXR5OjEuMDtmaWxsOiNGRkZGRkY7c3Ryb2tlOm5vbmUnIHdpZHRoPSc4NS4wJyBoZWlnaHQ9Jzg1LjAnIHg9JzAuMCcgeT0nMC4wJz4gPC9yZWN0Pgo8cGF0aCBjbGFzcz0nYm9uZC0wIGF0b20tMCBhdG9tLTEnIGQ9J00gNjIuNiwzNi4yIEwgNDEuOSwzNi4yJyBzdHlsZT0nZmlsbDpub25lO2ZpbGwtcnVsZTpldmVub2RkO3N0cm9rZTojRkNDNjMzO3N0cm9rZS13aWR0aDoxLjBweDtzdHJva2UtbGluZWNhcDpidXR0O3N0cm9rZS1saW5lam9pbjptaXRlcjtzdHJva2Utb3BhY2l0eToxJyAvPgo8cGF0aCBjbGFzcz0nYm9uZC0wIGF0b20tMCBhdG9tLTEnIGQ9J00gNDEuOSwzNi4yIEwgMjEuMiwzNi4yJyBzdHlsZT0nZmlsbDpub25lO2ZpbGwtcnVsZTpldmVub2RkO3N0cm9rZTojRTg0MjM1O3N0cm9rZS13aWR0aDoxLjBweDtzdHJva2UtbGluZWNhcDpidXR0O3N0cm9rZS1saW5lam9pbjptaXRlcjtzdHJva2Utb3BhY2l0eToxJyAvPgo8cGF0aCBjbGFzcz0nYm9uZC0wIGF0b20tMCBhdG9tLTEnIGQ9J00gNjIuNiw0Ny44IEwgNDEuOSw0Ny44JyBzdHlsZT0nZmlsbDpub25lO2ZpbGwtcnVsZTpldmVub2RkO3N0cm9rZTojRkNDNjMzO3N0cm9rZS13aWR0aDoxLjBweDtzdHJva2UtbGluZWNhcDpidXR0O3N0cm9rZS1saW5lam9pbjptaXRlcjtzdHJva2Utb3BhY2l0eToxJyAvPgo8cGF0aCBjbGFzcz0nYm9uZC0wIGF0b20tMCBhdG9tLTEnIGQ9J00gNDEuOSw0Ny44IEwgMjEuMiw0Ny44JyBzdHlsZT0nZmlsbDpub25lO2ZpbGwtcnVsZTpldmVub2RkO3N0cm9rZTojRTg0MjM1O3N0cm9rZS13aWR0aDoxLjBweDtzdHJva2UtbGluZWNhcDpidXR0O3N0cm9rZS1saW5lam9pbjptaXRlcjtzdHJva2Utb3BhY2l0eToxJyAvPgo8dGV4dCB4PSc2NC4wJyB5PSc1My42JyBjbGFzcz0nYXRvbS0wJyBzdHlsZT0nZm9udC1zaXplOjIzcHg7Zm9udC1zdHlsZTpub3JtYWw7Zm9udC13ZWlnaHQ6bm9ybWFsO2ZpbGwtb3BhY2l0eToxO3N0cm9rZTpub25lO2ZvbnQtZmFtaWx5OnNhbnMtc2VyaWY7dGV4dC1hbmNob3I6c3RhcnQ7ZmlsbDojRkNDNjMzJyA+UzwvdGV4dD4KPHRleHQgeD0nNi4xJyB5PSc1My42JyBjbGFzcz0nYXRvbS0xJyBzdHlsZT0nZm9udC1zaXplOjIzcHg7Zm9udC1zdHlsZTpub3JtYWw7Zm9udC13ZWlnaHQ6bm9ybWFsO2ZpbGwtb3BhY2l0eToxO3N0cm9rZTpub25lO2ZvbnQtZmFtaWx5OnNhbnMtc2VyaWY7dGV4dC1hbmNob3I6c3RhcnQ7ZmlsbDojRTg0MjM1JyA+TzwvdGV4dD4KPC9zdmc+Cg== S=O XTQHKBHJIVJGKJ-UHFFFAOYSA-N 0.000 description 3
- OSGAYBCDTDRGGQ-UHFFFAOYSA-L Calcium sulfate Chemical compound 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- 239000006227 byproduct Substances 0.000 description 1
- OKTJSMMVPCPJKN-UHFFFAOYSA-N carbon Chemical compound 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- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D53/00—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
- B01D53/34—Chemical or biological purification of waste gases
- B01D53/74—General processes for purification of waste gases; Apparatus or devices specially adapted therefor
- B01D53/76—Gas phase processes, e.g. by using aerosols
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D53/00—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
- B01D53/34—Chemical or biological purification of waste gases
- B01D53/46—Removing components of defined structure
- B01D53/60—Simultaneously removing sulfur oxides and nitrogen oxides
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D2251/00—Reactants
- B01D2251/10—Oxidants
- B01D2251/106—Peroxides
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A50/00—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
- Y02A50/20—Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters
Abstract
本发明的用于低温烟气脱硫脱硝的双氧水高效利用方法,在利用双氧水进行低温烟气脱硫脱硝的过程中,双氧水以气态方式进料。本发明的装置,包括双氧水储罐、进料泵、烟道和吸收塔,其特征在于:双氧水经液态双氧水直接受热汽化进料装置、热载气在双氧水中鼓泡进料装置、热载气携带双氧水蒸汽进料装置或者热载气携带雾化后的双氧水进料装置处理后,转化为气态形式并通入烟道中,利用气态双氧水及其含有的羟基自由基进行脱硫脱硝反应。本发明的方法及装置,将以往的“液-气”混合反应变为“气-气”混合反应,与液态双氧水相比,双氧水汽化过程中能分解产生更多的羟基自由基,提高了双氧水的利用率和NO x 的脱除率,同时还降低了双氧水的使用量。
Description
一种用于低温烟气脱硫脱硝的双氧水高效利用方法及装置
技术领域
[0001] 本发明涉及一种用于低温烟气脱硫脱硝的双氧水高效利用方法及装置,更具体的 说,尤其涉及一种利用气化的双氧水含有更多的羟基自由基来实现烟气的脱硫脱硝的双氧 水高效利用方法及装置。
背景技术
[0002] 近年来,我国大面积地区经常出现严重的雾霾天气,己经严重影响经济社会发展 和人民群众的生命健康。宄其原因,电厂、焦化厂、烧结机、炉窑和各类中小型锅炉燃煤排放 的氮氧化物是形成雾霾天气的重要原因之一,因此控制及消除氮氧化物和硫氧化物的排放 是紧迫的现实需求。
[0003] 当前,锅炉烟气脱硫脱硝普遍采用湿法烟气脱硫(WFGD)和选择性催化还原脱硝 (SCR)技术,湿法烟气脱硫方法对硫氧化物的脱除效率较高,但是脱硫副产物硫酸钙的价值 低,而且可能带来二次污染问题,选择性催化还原脱硝技术则要求温度在300-400°C。目前 对焦化厂、烧结机、炉窑和中小型锅炉的低温(<30(TC )烟气中氮氧化物和硫氧化物的一体 化排放控制技术正处于中试示范阶段,其中采用双氧水的高级氧化吸收法是适合的技术之 〇
[0004] CN102327735公开了一种使用双氧水的烟气同时脱硫脱硝的系统和方法。其脱硫 脱硝方法是在170°C左右的烟气管道中喷入液态双氧水,利用液态双氧水的氧化作用将N0X 和S02*别氧化为硝酸和硫酸,是液态双氧水与气态反应物的液气反应。但是液态双氧水与 气态反应物的混合不均匀,并且需要50(TC左右的高温才能与N0X和S02等气态反应物有效反 应,因此该专利的双氧水利用效率很低。
[0005] CN103463978报道了一种基于液态双氧水催化氧化烟气同时脱硫脱硝的装置及方 法,该发明使用液态双氧水催化分解装置,将液态双氧水分解产生羟基自由基,利用羟基自 由基的强氧化性脱除烟气中的N0X和S02。该方法中双氧水以液态形式喷入催化剂,喷入的大 量液态双氧水与烟气混合不均匀,双氧水利用率较低,进而导致烟气中的N0J兑除率低。
发明内容
[0006] 本发明为了克服上述技术问题的缺点,提供了一种用于低温烟气脱硫脱硝的双氧 水高效利用方法及装置。
[0007] 本发明的用于低温烟气脱硫脱硝的双氧水高效利用方法,在利用双氧水进行低温 烟气脱硫脱硝的过程中,双氧水以气态方式进料。
[0008] 本发明的用于低温烟气脱硫脱硝的双氧水高效利用方法,所述双氧水的气态进料 方式采用液态双氧水直接受热汽化进料、热载气在双氧水中鼓泡进料、热载气携带双氧水 蒸汽进料或者热载气携带雾化后的双氧水进料。
[0009] 本发明的用于低温烟气脱硫脱硝的双氧水高效利用方法,在采用液态双氧水直接 受热汽化进料的方式下:双氧水的汽化温度为60〜130-C,汽化量与烟气中N〇x和S〇2之和的 摩尔比为0.5〜2,烟气温度为80〜150 °C; 、 在采用热载气在双氧水中鼓泡进料的方式下:双氧水的进料量与烟气中N〇JPS〇2之和 的摩尔比为〇. 5〜2,载气流量与双氧水进料量的质量比为〇•5〜1 • 5,烟气温度为80〜150、°C ; 在采用热载气携带双氧水蒸汽进料的方式下:双氧水的进料量与烟气中f〇x和^S〇2之^ 的摩尔比为0.5〜2,载气流量与双氧水进料量的质量比为〇 • 5〜1 • 5,载气与双氧水蒸汽进行 充分混合,烟气温度为80〜150°C; ^ 在采用热载气携带雾化后的双氧水进料的方式下:采用喷淋头喷淋双氧水,双^水的 喷淋量与烟气中N〇x和S02之和的摩尔比为0.5〜2,载气流量与双氧水的进料量的质量比为 0.5〜1.5,烟气温度为80〜1501:。
[0010]本发明的用于低温烟气脱硫脱硝的双氧水高效利用方法,所述载气为空气或惰性 气体。
[0011] 本发明的用于低温烟气脱硫脱硝的双氧水高效利用方法的装置,包括双氧水储 罐、进料栗、烟道和吸收塔,进料栗用于将双氧水储罐中的双氧水抽出,待净化的烟气由烟 道的底部进入,烟道的顶部经管道与吸收塔相通,吸收塔利用氨水或氢氧化钠碱液f进入 的硫酸和硝酸进行吸收;其特征在于:所述进料泵抽出的双氧水经液态双氧水直接受热汽 化进料装置、热载气在双氧水中鼓泡进料装置、热载气携带双氧水蒸汽进料装置或者热载 气携带雾化后的双氧水进料装置处理后,转化为气态形式并通入烟道中,利用气态双氧水 及其含有的羟基自由基进行脱硫脱硝反应。
[0012] 本发明的用于低温烟气脱硫脱硝的双氧水高效利用方法的装置,所述的液态双氧 水直接受热汽化进料装置由汽化器组成,进料栗经管道将液态双氧水输入汽化器中,汽化 器将液体双氧水转化为气态双氧水,转化后的气态双氧水经管道通入烟道中; 所述热载气在双氧水中鼓泡进料装置由载气罐、进气栗、预热器和鼓泡室组成,载气罐 中存储的载气为空气或惰性气体,进气泵将载气罐中的载气抽至预热器中,载气在预热器 中加热后通入鼓泡室中;加热后的载气在鼓泡室中与液态双氧水混合,并携带气态的双氧 水进入烟道中; 所述热载气携带双氧水蒸汽进料装置由载气罐、进气泵、预热器、汽化器和混合室组 成,进料泵抽出的液态双氧水经汽化器进行汽化,汽化后的双氧水通入混合室中;进气泵将 载气罐中的气体抽至预热器中进行加热,加热后的载气通入混合室中,并携带气态的双氧 水进入烟道中; 所述载气携带雾化后的双氧水进料装置由载气罐、进气泵、预热器和混合室组成,混合 室中设置有与进料栗的出水管相通的喷头,以便将进料栗抽至混合室中的液态双氧水雾 化;进气泵将载气罐中的气体抽至预热器中进行加热,加热后的载气通入混合室中,并携带 雾化后的气态双氧水进入烟道中,进行脱硫脱硝反应。
[0013]本发明的用于低温烟气脱硫脱硝的双氧水高效利用方法的装置,汽化器中双氧水 的汽化温度为60〜130°C,预热器的预热温度为80〜15(rc,烟道中通入的烟气温度为80〜 15CTC。
[0014]本发明的有益效果是:本发明的用于低温烟气脱硫脱硝的双氧水高效利用方法及 装置,通过将液态的双氧水气化后通入烟道中,使含有羟基自由基的气态双氧水与烟气混 合,来实现脱硫脱硝反应,将以往的液态双氧水与烟气的“液-气”混合反应变为“气—气”混 合反应,与液态双氧水相比,双氧水汽化过程中能分解产生更多的轻基自由基,提高了双氧 水的利用率和N0X的脱除率,同时还显著降低了双氧水的使用量,有益效果显著,适于应用 推广。
附图说明
[0015]图1为本发明的第一种实施例的结构示意图; 图2为本发明的第二种实施例的结构示意图; 图3为本发明的第三种实施例的结构示意图; 图4为本发明的第四种实施例的结构示意图。
[0016]图中:1双氧水储罐,2进料栗,3汽化器,4烟道,5吸收塔,6载气罐,7进气泵,8预热 器,9鼓泡室,10混合室,11喷头。
具体实施方式
[0017] 下面结合附图与实施例对本发明作进一步说明。
[0018] 实施例1 如图1所示,给出了本发明的第一种实施例的结构示意图,其由双氧水储罐1、浆料泵2、 汽化器3、烟道4、吸收塔5组成,所示的双氧水储罐1中存储有液态的双氧水,进料栗2将双氧 水储罐1中的双氧水抽至汽化器3中。液态的双氧水在汽化器3中进行汽化,转化为气态的双 氧水,汽化器3的汽化温度为60〜130°C,汽化器3形成了液态双氧水直接受热汽化进料装 置。汽化后的双氧水被通入烟道4中,气态的双氧水含有较多的羟基自由基,进入气道中参 与脱离脱硝反应,可显著提高祕^、302的脱除率,同时还降低了双氧水的使用量。脱硫脱硝反 应生成的硝酸和硫酸随烟气进入吸收塔,烟气中的硫酸和硝酸被氨水、氢氧化钠或其他碱 液吸收,有效降低了烟气对环境造成污染。
[0019] 实施例2 如图2所示,给出了本发明的第二种实施例的结构示意图,其由双氧水储罐1、进料泵2、 鼓泡室9、载气罐6、进气栗7、预热器8、鼓泡室9、烟道4和吸收塔5组成,载气罐6、进气栗7、预 热器8和鼓泡室9形成了热载气在双氧水中鼓泡进料装置。进料泵2将双氧水储罐1中的液态 双氧水抽至鼓泡室9中,载气罐6中存储的载气为空气或惰性气体,进气泵7将载气罐6中的 载气抽至预热器8中进行加热,加热温度为80〜150°C,加热后的载气通入鼓泡室9中。载气 进入鼓泡室9后,携带气态的双氧水进入烟道4中,气态的双氧水含有较多的羟基自由基,进 入气道中参与脱离脱硝反应。
[0020] 实施例3 如图3所示,给出了本发明的第三种实施例的结构示意图,与实施例2相比,本实施例中 采用由载气罐6、进气泵7、预热器8、汽化器3和混合室10组成的热载气携带双氧水蒸汽进料 装置,来替代实施例2中的热载气在双氧水中鼓泡进料装置,除此之外,其余的结构均相同。 该实施例中,进料栗2将双氧水储罐1中的液态双氧水抽至汽化器3中,汽化生成气态的双氧 水,气态的双氧水通入混合室1〇中。进气泵7将载气罐6中的载气抽至预热器8中进行加热, 加热后的载气通入混合室1〇中,并携带气态的双氧水进入烟道4中。气态的双氧水含有较多 的羟基自由基,进入气道中参与脱离脱硝反应。
[0021] 实施例4 如图4所示,给出了本发明的第四种实施例的结构示意图,与实施例2相比,本实施例中 采用由载气罐6、进气栗7、预热器8、混合室10组成的载气携带雾化后的双氧水进料装置,来 替代实施例2中的热载气在双氧水中鼓泡进料装置,除此之外,其余的结构均相同。该实施 例中,混合室10中设置有与出水管相通的喷头11,进料泵2将双氧水储罐1中的液态双氧水 抽至混合室10中,在喷头的作用下实现对液态双氧水的雾化。进气杲7将载气罐6中的载气 抽至预热器8中进行加热,加热后的载气通入混合室10中,并携带雾化的双氧水进入烟道4 中。气态的双氧水含有较多的羟基自由基,进入气道中参与脱离脱硝反应。
[0022] 实验分析,脱硫脱硝实验分别在上述四种装置上进行,实验时,烟气中S〇2和N0X浓 度的检测采用英国产凯恩9206烟气分析仪进行,S02和N0X脱除率的计算方法: S02或N0X的脱除率=(S02和N0X进口浓度-S02和N〇x出口浓度)/S〇2和N0X进口浓度。
[0023] 风机从焦炉烟囱旁引出约5000 m3/h、温度为80_15(TC的焦化烟气。根据检测,N0X 进口浓度为800-1000 mg/m3,S〇2进口浓度为500-900 mg/m3,双氧水与N0X和S〇2之和的摩尔 比为0.5-2.0,载气流量与双氧水进料量的质量比为〇 • 5〜1 • 5。最后烟气进入吸收塔,烟气中 的硫酸和硝酸被氨水或氢氧化钠等碱液吸收。
[0024] 经分析、计算,实施例1中S〇2脱除率为90%,NOX脱除率为35%〜9〇%;实施例1中S〇2脱 除率为90%,N0X脱除率为40%〜90%;实施例1中S〇2脱除率为95%,N0X脱除率为45%〜9〇%;实施 例1中S〇2脱除率为98%,N0X脱除率为50%〜90%,由此可见,采用本发明双氧水气化后的脱硫 脱硝方法和装置,均可达到良好的脱硫脱硝效果。
Claims (7)
1. 一种用于低温烟气脱硫脱硝的双氧水高效利用方法,其特征在于:在利用双氧水进 行低温烟气脱硫脱硝的过程中,双氧水以气态方式进料。 i
2. 根据权利要求1所述的用于低温烟气脱硫脱硝的双氧水高效利用方法,其特征在于: 所述双氧水的气态进料方式采用液态双氧水直接受热汽化进料、热载气在双氧水中鼓泡进 料、热载气携带双氧水蒸汽进料或者热载气携带雾化后的双氧水进料。
3. 根据权利要求2所述的用于低温烟气脱硫脱硝的双氧水高效利用方法,其特征在于: 在采用液态双氧水直接受热汽化进料的方式下:双氧水的汽化温度为6〇〜13〇°C,汽化 量与烟气中NOx和S02之和的摩尔比为0.5〜2,烟气温度为80〜150 °C; 在采用热载气在双氧水中鼓泡进料的方式下:双氧水的进料量与烟气*N〇x和S〇2之和 的摩尔比为0.5〜2,载气流量与双氧水进料量的质量比为0.5〜1.5,烟气温度为80〜150°C; 在采用热载气携带双氧水蒸汽进料的方式下:双氧水的进料量与烟气中N〇x和S〇2之和 的摩尔比为0.5〜2,载气流量与双氧水进料量的质量比为〇 • 5〜1 • 5,载气与双氧水蒸汽进行 充分混合,烟气温度为80〜150°C ; 在采用热载气携带雾化后的双氧水进料的方式下:采用喷淋头喷淋双氧水,双氧水的 喷淋量与烟气中N0X和S02之和的摩尔比为0.5〜2,载气流量与双氧水的进料量的质量比为 0.5〜1 • 5,烟气温度为80〜150°C。
4. 根据权利要求3所述的用于低温烟气脱硫脱硝的双氧水高效利用方法,其特征在于: 所述载气为空气或惰性气体。
5. —种基于权利要求1所述的用于低温烟气脱硫脱硝的双氧水高效利用方法的装置, 包括双氧水储罐(1)、进料泵(2)、烟道(4)和吸收塔(5),进料栗用于将双氧水储罐中的双氧 水抽出,待净化的烟气由烟道的底部进入,烟道的顶部经管道与吸收塔相通,吸收塔利用氨 水或氢氧化钠碱液对进入的硫酸和硝酸进行吸收;其特征在于:所述进料栗抽出的双氧水 经液态双氧水直接受热汽化进料装置、热载气在双氧水中鼓泡进料装置、热载气携带双氧 水蒸汽进料装置或者热载气携带雾化后的双氧水进料装置处理后,转化为气态形式并通入 烟道中,利用气态双氧水及其含有的羟基自由基进行脱硫脱硝反应。
6. 根据权利要求5所述的用于低温烟气脱硫脱硝的双氧水高效利用方法的装置,其特 征在于: 所述的液态双氧水直接受热汽化进料装置由汽化器(3)组成,进料泵(2)经管道将液态 双氧水输入汽化器中,汽化器将液体双氧水转化为气态双氧水,转化后的气态双氧水经管 道通入烟道(4)中; 所述热载气在双氧水中鼓泡进料装置由载气罐(6)、进气栗(7)、预热器(8)和鼓泡室 (9)组成,载气罐中存储的载气为空气或惰性气体,进气泵将载气罐中的载气抽至预热器 中,载气在预热器中加热后通入鼓泡室中;加热后的载气在鼓泡室中与液态双氧水混合,并 携带气态的双氧水进入烟道中; 所述热载气携带双氧水蒸汽进料装置由载气罐、进气泵、预热器、汽化器和混合室(10) 组成,进料泵抽出的液态双氧水经汽化器进行汽化,汽化后的双氧水通入混合室中;进气泵 将载气罐中的气体抽至预热器中进行加热,加热后的载气通入混合室中,并携带气态的双 氧水进入烟道中; 所述载气携带雾化后的双氧水进料装置由载气罐、进气泵、预热器和混合室组成,混合 室中设置有与进料栗的出水管相通的喷头(11),以便将进料栗抽至混合室中的液态双氧水 雾化;进气泵将载气罐中的气体抽至预热器中进行加热,加热后的载气通入混合室中,并携 带雾化后的气态双氧水进入烟道中,进行脱硫脱硝反应。
7.根据权利要求6所述的用于低温烟气脱硫脱硝的双氧水高效利用方法的装置,其特 征在于:汽化器(3)中双氧水的汽化温度为60〜130。(:,预热器(8)的预热温度为80〜1501, 烟道(4)中通入的烟气温度为80〜150。(:。
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