waste incinerator manufacturer in china

waste incinerator manufacturer in china

we are waste incinerator manufacturer in china, focus on medical waste, pet animal and other solid waste incineration treatment. waste incinerator design with single combustion chamber, double combustion chambers, three combustion chambers and multi-combustion chambers. standard waste incinerator fixed with italy fuel burner and staninless steel long life time chimney. standard waste incinerator also fixed with dry filter chamber which is alkaline material filter acid smoke.

Full range incinerator with Economized Small Scale incinerator, Standard Small-Large Scale incinerator, General Municipal Solid Waste Incinerator, Pet and Animal Cremation, Containerized Mobile Incinerator, High Efficient Environmental Waste Incinerator.

Items/Model YD-200 YD-300 YD-500 YD-600
Burning Rate (kgs/Hour) 200 kgs/Hr. 300 kgs/Hr. 500 kgs/Hr. 600 kgs/Hr.
Feed Capacity (kgs) 400 kgs 500 kgs 800 kgs 1100 kgs
Equipment Weight 7600 kgs 8300 kgs 13000 kgs 16500 kgs
Primary Chamber (Liters) 2000 2400 4000 5500
Secondary Chamber (Liters) 500 1200 1500 1500
External Dimensions (cm) 270 x 185 x 380 260x220x420 320x220x460 360 x 220 x 475
Internal Dimensions (cm) 180 x 115 x 96 220x110x100 257x147x108 300 x 147 x 125
Oil Tank(Liters) 300 500 500 500
Door Opening (cm) 59 x 81 90 x 110 108 x 128 108 x 128
Chimney (M) 10 10 14 14
Chimney Type Stainless Steel Stainless Steel Stainless Steel Stainless Steel
Secondary Chamber YES YES YES YES
Mix-Combustion Chamber YES YES YES YES
Smoke Filter Chamber YES YES YES YES
Combustion Fuel Oil/Gas Oil/Gas Oil/Gas Oil/Gas
Residency Time 2.0 Sec. 2.0 Sec. 2.0 Sec. 2.0 Sec.
Temperature Monitoring YES YES YES YES
1st. Chmaber Temperature 800℃–1000℃ 800℃–1000℃ 800℃–1000℃ 800℃–1000℃
2nd. Chmaber Temperature 1000℃-1200℃ 1000℃-1200℃ 1000℃-1200℃ 1000℃-1200℃

수직 청소 작업대

2019-05-13 공기 정화 장비 609 조회수


제품 소개

크린 작업대는 크린룸이나 실외에 설치되는 정화장치로 사용환경의 요구사항에 따라 작업대의 높은 청정도를 유지할 수 있습니다.  

작동 원리:

공기 흐름은 상단의 HEPA 고효율 필터를 통과하고 캐비닛 상단에서 층류로 고르게 침전되어 수술실의 샘플이 교차 오염되지 않도록 합니다. 기류가 작업면에 도달한 후 약 50%는 수술실 후면 그릴로 흡입되고 나머지는 전면 그릴에서 외부 공기와 만나 균형을 이루어 여과되지 않은 공기가 수술실 내부로 유입되는 것을 방지할 뿐만 아니라 시료를 직접 오염시키는 방과 동시에 시료와 접촉한 후 더러운 공기 흐름이 넘쳐 작업자의 안전을 위협하는 것을 방지합니다.

제품 특징:

냉간 압연 강판 분사 기술을 사용하여 프레임 강도 및 강성을 높이고 작동 중 진폭을 줄입니다.

HEPA 고효율 필터 사용, 99.99% 통전효율, 0.3μm 이상의 입자 목표

* 장비 호스트는 저진동 및 저소음으로 탄성 연결을 채택합니다.

양면 조작 전망대로 설계가 가능하여 사용이 유연함과 동시에 비용 절감

구현 모니터링: 전자식 무단 전압 조절 및 속도 조절, 사용하기 더 편리

폼박스 원심팬을 사용하여 저소음, 저소비전력, 유지보수 없이 장기간 사용 가능

채광을 증가시키는 양쪽의 투명한 측면 창

표준 도면

기술적인 매개변수

모델 ECB0609-VPS ECB0618-VPD
치수(길이 * 깊이 * 높이 mm ) 1200x780x1650 1900x780x1650
내부 치수(길이 * 깊이 * 높이 mm ) 950*600*750 1800*600*750
작업 영역(길이 * 깊이 mm ) 0.57m 2 1.08m 2
설계 풍속 0.30-0.60m 2 /s 0.30-0.60m 2 /s
정격 풍량 875m 3 /h 1750m 3 /h
사전 필터 유리 섬유, 더 큰 먼지 입자를 사전 필터링
HEPA 필터 효율 99.99%   0.3μm보다 큰 입자 에 대한 전류 전달 효율
작업 영역의 공기 청정도 기준 미국 연방 209E 표준 클래스 2, 국제 ISO 14644
소음 수준 63dB 65dB
빛의 세기 500럭스
캐비닛 구조 주요 구조 1.2mm 두께의 강판 또는 1.2mm 두께의 SUS304
콘솔 구조 1.2mm 두께 304   스테인레스 스틸 조리대
측벽 구조 두께 5mm   강화 유리
전기 구조 전원 / 전압 220V/50Hz, 단상
전력 / 전류 300W 370W
콘센트 전류 5A

추가 콘텐츠 URL: www.ecolead.cn Tel: 025-57138032

  • 自带风机过滤单元

    팬 필터 장치와 함께 제공

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 人员风淋室-直通型

    개인 에어샤워 스루형

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 货淋室-自动门型

    카고샤워실 – 자동문형

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 人员风淋室-节能型

    직원 에어 샤워 에너지 절약

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 吹淋型传递窗

    블로우샤워식 전사창

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 无菌层流型传递窗

    멸균 층류 전달 창

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 高效送风口

    효율적인 공기 배출구

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • BFU风机过滤单元

    BFU 팬 필터 유닛

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 层流罩

    층류 후드

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 袋进袋出BIBO

    BIBO에서 가방을 넣고 빼기

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 水平式洁净工作台

    수평 클린 벤치

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 垂直式-洁净工作台

    수직 청소 작업대

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 称量罩

    계량 후드

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 洁净衣柜

    깨끗한 옷장

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 空气过滤箱

    에어 필터 박스

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 普通型传递窗

    일반 송금 창구

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 卷绕式专用过滤棉

    래핑된 특수 필터면

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 人员风淋室-L型转角式

    퍼스널 에어샤워 L자형 코너타입

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 人员风淋室-隧道型

    개인용 에어샤워터널형

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

  • 洁净棚

    깨끗한 창고

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

حرق جثة الحيوانات الأليفة

وصف المنتج

نانجينغ البرسيم الطبية والتكنولوجيا المحدودة هي شركة رائدة في تصنيع محارق النفايات في الصين. نحن مصنع محلي وواحد من أكبر مصدري الصين. معدات المحارق الحرارية هي المعالجة الرئيسية للنفايات في جميع أنحاء العالم ، للنفايات الطبية ، وحرق الحيوانات ، وحرق الجثث والمحارق بسعة 50 كجم ، والمحارق – حرق الجثث ، والمحارق + التأمين ، والمحارق 100 كجم / ساعة ، ومحارق الحيوانات ، وحرق الجثث ، وغيرها من المواد الصلبة الصلبة . القدرة من 10 كلغ / ساعة. إلى 500 كجم / ساعة ، حتى 6 أطنان في اليوم. في الوقت الحاضر ، نوفر سلاسل مختلفة لمتطلبات العملاء المحليين ونصمم محرقة محدثة بتقنيتنا الرائدة. ميزة التصميم المحدثة لمجموعة المحارق لدينا تجعلها واحدة من أكثر المحارق فعالية من حيث التكلفة في العالم.

مجال التقديم:
1. المستشفى والعيادة: نفايات إيتريك ، نفايات معدية ، ضماد ، نفايات حيوية ، دواء.
2. بيت الذبح ومستشفى ومزرعة الحيوانات الأليفة: حيوان ميت ، نفايات بيولوجية.
3. المجتمع والميناء والمحطة: النفايات البلدية الصلبة ، إلخ.
4. المختبرات ، المواقع النائية ، عمليات الإغاثة من الكوارث ، حرق جثث الحيوانات

العناصر تخصيص
نموذج YDC YD-10C / YD-20C / YD-30C / YD-50C
قائمة المنتجات الرئيسية غرفة الاحتراق الأولية
غرفة الاحتراق الثانوية
مزيج غرفة الاحتراق
غرفة مرشح الدخان
حالة التحكم في المحرقة المشتركة
مدخنة ستانلس ستيل
موقد الزيت / الغاز في إيطاليا: 02 وحدة
خزان الزيت (إذا كان زيت الوقود)

اتصل الآن هاتف: + 86-25-8461 0201

Google快讯 – medical waste

Google
medical waste

实时更新 2021年8月29日
新闻

Furthermore, his experience as an anesthesiologist during a medical crisis seems to me like a godsend. His continuing contact in a hospital setting gives him a …

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Unfortunately, this estimate/projection was made before COVID-19 came about. Greater medical waste generation can lead to a stronger demand for PyroGenesis …

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… of the Consumer Electronics Recycling Act, is one of several services provided. Others include hazardous waste disposal days and medical waste disposal.

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संवाद सूत्र बहुआ : कस्बे के नर्सिंग होम और मेडिकल स्टोर के कचरे का निस्तारण नहीं किया …

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… கொட்டுவதால் சுகாதார சீர்கேடு + "||" + Pollachi Government Hospital health problem due to dumping of medical waste.

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Tendenze del mercato globale Medical Waste Disposal & Management, principali strategie …

O relatório global Medical Waste Disposal & Management Mercado oferece drivers, restrições, ameaças e oportunidades de mercado em profundidade, …

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Web Team. Published : 28,Aug 2021 06:24 PM. Erode-People-are-suffering-due-to-medicalwaste-. ஈரோடு மாவட்டம் சத்தியமங்கலம் …

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年後“漲”聲一片,南京潔凈棚價格漲了卻不是利潤漲了

2019年05月22日 行業動態 228 views

新年伊始,作為南京潔凈棚專業廠家的我們,在短短的2個工作周的客戶跟蹤實踐中,由於南京凈化棚價格引起的事端真是讓人倍感壓力,原因為何,請聽小編細細道來:
        隨着從2016下半年開始的原材料漲價潮的影響,開年後原材料更是史上無法預估的連環漲價潮剛開始拉開序幕。經我公司採購的不完全統計,南京凈化棚的主要配件,鋁型材單價上漲了35%,亞克力板上漲了40%,並且亞克力還出現了有價沒貨的狀態,漲的連生產廠家都心驚膽戰。箇中滋味只有直接能品味,這次的原材料漲幅程度超出預期,給本就處在
艱難生存狀態下的製造業帶來沉重負擔,讓我們這種中小企業真是雪上加霜。
        這不情非得已,一個前年和去年上半年均定過南京凈化棚的老客戶年後便有了新的潔凈棚需要採購,我公司工程人員積極合理的進行了核價預算工作,針對這家成本控制非常嚴的客戶,我們也保持了高質量低價格的原則進行了 報價,誰知對方進行了2天的比價工作結束后,告知我們這次鋁型材和亞克力板比去年多算了3000元的成本,導致我公司的業務人員真是哭笑不得。實際上我們為了維持老客戶,潔凈棚成本核算時原材料成本都是盡量低於市場價來核算,目的就是為了穩定住客戶,即使利潤縮水也在所不辭。客戶所看到的材料按以往的單價計算加價了,真不是我們的錯。因此在此重要的事情說三遍:南京凈化棚價格漲了不是利潤漲了,南京凈化棚價格漲了不是利潤漲了,南京凈化棚價格漲了不是利潤漲了。雖然最後我們順利的簽約了,實際上我們也於心不忍,望各位新老客戶理解海涵。

更多內容 網址: www.ecolead.cn 電話: 025-57138032

incinerador 500 kg por

Composición del revestimiento refractario:

* Aislamiento:

– Temperatura de funcionamiento: 1000 ° C máx.

– Naturaleza: Silicato de calcio

– Espesor: 80 mm

* Refractario:

– Temperatura de funcionamiento: 1650 ° C máx.

– Naturaleza: Ladrillos refractarios con 42 alúmina

– Espesor: 110 mm

Combustión del quemador:

– La cámara de combustión está equipada con un quemador a línea para asegurar la temperatura correcta para la destrucción total de

combustión de residuos;

– Quemador monobloque automático y inmersión de llama equipado con sistema de encendido electrónico y ventilación permanente.

Ventilador:

– Un ventilador de aire primario y secundario proporciona el suministro de oxígeno necesario

– Existe una válvula motorizada que controla el caudal según la combustión.

– La presión del ventilador es de 500 mm CE para perforar la masa de residuos durante la combustión.

Las unidades incineradoras de eliminación de desechos médicos serán del tipo de cámara doble o múltiple que se degrade térmicamente

Residuos medicinales combustibles de diferente contenido de calor utilizando procesos de combustión de dos o múltiples etapas. Es decir

primera etapa de degradación de residuos térmicos en la cámara primaria y segunda etapa de quema de humo (tratamiento de gases de combustión)

en la cámara secundaria. El proceso de quema de residuos por ciclo será completamente automático de principio a fin. La pérdida

La unidad incineradora debe constar de una cámara primaria, una cámara secundaria, una chimenea, un soplador de aire de combustión, quemadores y

controles como los componentes principales.

계량 후드

2019-05-13 공기 정화 장비 352 조회수


제품 소개

계량 후드는 샘플링, 계량, 분석 및 기타 산업을 위한 일종의 특수 특수 스튜디오입니다.작업 영역의 먼지와 먼지가 작업 영역 외부로 퍼지는 것을 제어할 수 있으며 작업자가 흡입하지 않도록 할 수 있습니다. 먼지 비산을 제어하는 일종의 특수 정화 장비. 실내공기는 원심팬에 의해 1차 및 중효율 필터를 거쳐 정압박스로 강제 유입되고, 고효율 필터를 거쳐 공기 디퓨저 유닛의 출구면에서 외부로 배출되며 깨끗한 공기가 통과합니다. 균일한 단면적 풍속으로 작업영역을 형성하여 매우 깨끗한 작업환경을 형성합니다. 계량 후드의 작동 영역은 음압으로 유지되며 순환 공기의 10%가 배출됩니다. 칭량 후드의 공기는 3단계 필터 시스템(고효율 필터는 0.3μm 이상의 입자와 모든 먼지를 99.99% 제거)을 통해 자체 순환하며 설계는 제약 공장의 GMP 요구 사항을 충족합니다. 장비의 분진 및 시약을 계량 및 분배하면 분진 및 시약의 유출 및 상승을 제어할 수 있으며, 분진 및 시약의 인체 흡입 위험을 방지하고, 분진 및 시약의 교차 오염을 방지하고, 외부 환경과 안전을 보호할 수 있습니다. 실내 인원의.

제품 특징:

외부는 굽힘 및 용접에 의해 고품질 스테인리스 강판으로 만들어지며 매끄럽고 깨끗합니다.
최신 액체 탱크 유형 고효율 필터는 더 밀봉되어 최신 cGMP 요구 사항을 충족합니다.
PAO 먼지 배출구 및 DOP 테스트 구멍은 필터 요소의 무결성을 보장합니다.
American Dwyer 차압 게이지, 즉시 고효율 필터 교체를 상기시킵니다.
청결도는 ISO 5 수준에 도달합니다(209E 100 수준 표준보다 우수함).
대화면 LCD 터치식 인간-기계 인터페이스, 조작이 더 사용자 친화적입니다.

풍속 감지 자동 주파수 변환 시스템은 최신 흐름 필름 기술과 결합되어 작업 영역의 풍속을 항상 이상적이고 일정한 상태로 실행합니다.

모듈식 구조, 유연하고 편리한 현장 설치.  

표준 도면

기술적인 매개변수

사양 모델

EWB-AMB-1300

EWB-AMB-1700

EWB-AMB-2400

치수(W*D*H)

1300*1300*2400mm

1700*1700*2400mm

2400*1800*2400mm

작업 영역 크기(w*d*h)

1200*800*2000mm

1600*1200*2000mm

2300*1300*2000mm

재료

SUS304 스테인리스 강판(거울 또는 샌딩)

청결

ISO 레벨 5( 209E 레벨 100 이상)

풍속

0.2 ~ 0.6m/s 조절 가능

공기 공급(조절 가능)

2500CMH

3600CMH

5000CMH

배기량(조절 가능)

750CMH

1080CMH

1500CMH

고효율 필터 사양

610*305*292*1 조각

610*305*292*2 조각

610*305*292*3

필터 효율

G4/F7/H14 ( 99.99%@0.3um )

차압계

미국 드와이어 0-250Pa/ 0-500Pa/ 0-700Pa

감지 포트

스테인레스 스틸 PAO 먼지 포트 및 DOP 감지 포트

식민지 수

0.5 / 접시 .일 때 ( φ90 ㎜ 배양 접시)

조도

500럭스

소음

68dB

750w

1500w

1500w

전원 공급 장치

380V 50Hz

추가 콘텐츠 URL: www.ecolead.cn Tel: 025-57138032

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    팬 필터 장치와 함께 제공

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    직원 에어 샤워 에너지 절약

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  • 吹淋型传递窗

    블로우샤워식 전사창

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

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    멸균 층류 전달 창

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    효율적인 공기 배출구

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    BFU 팬 필터 유닛

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    층류 후드

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    BIBO에서 가방을 넣고 빼기

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    수평 클린 벤치

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

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    수직 청소 작업대

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    깨끗한 옷장

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  • 空气过滤箱

    에어 필터 박스

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

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    일반 송금 창구

    와인딩 에어 필터 제조 업체, 난징 클린 셰드, 에어 샤워 실, 자동 롤링 커튼 유형

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    래핑된 특수 필터면

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    퍼스널 에어샤워 L자형 코너타입

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Đã ký hợp đồng phòng tắm không khí của trạm biến áp 110 kV Nam Kinh Chengdong (Xuecheng) của một công ty kỹ thuật điện nổi tiếng

2019-05-18 Tin tức về công ty232 lượt xem

Ứng dụng của vòi sen trong các trạm biến áp ngày càng trở nên rộng rãi, sau khi công ty chúng tôi sản xuất được vòi sen truyền tải và chuyển đổi AC UHV 1000 kV Hoài Nam Nam Kinh Thượng Hải của Công ty Truyền tải và Chuyển đổi điện Giang Tô vào năm ngoái, các công ty truyền tải và chuyển đổi điện đã nối tiếp nhau tôi. Kí hợp đồng với công ty. Phòng tắm không khí do Nanjing Yixiou thiết kế là kiểu cửa có thể di chuyển được, có thể đẩy và kéo theo yêu cầu, có thể khóa và kết nối với cửa ra vào của khu vực xưởng. Nó được trang bị hệ thống điều khiển tự động chuyên nghiệp, phù hợp với hiệu suất thông gió nghiêm ngặt và độ sạch sẽ của nhà xưởng. Hiệu suất, độ bền và các khía cạnh khác đều phù hợp. Quá trình lắp đặt và vận hành đã được chủ đầu tư khẳng định và công nhận. Đó chắc chắn là một sự xác minh khác về chất lượng tuyệt vời và dịch vụ chất lượng cao của phòng tắm hơi Ecolead Nam Kinh.

URL nội dung khác: www.ecolead.cn Tel: 025-57138032

Programme on Small Scale Medical Waste Incinerators for Primary Health Care Clinics in South Africa

TABLE OF CONTENTS

  1. OBJECTIVE OF THE PROGRAMME 4
  2. STRUCTURE OF THE PROGRAMME 4
  3. COLLABORATORS INVOLVED IN THE PROGRAMME 4
  4. STAKEHOLDERS INVOLVED IN THE PROGRAMME 4
  5. LABORATORY TRIALS 5
  6. FIELD TRIALS 13

 

 

 

1.     OBJECTIVE OF THE PROGRAMME

 

The objective of the programme is to select technical criteria suitable for tender specification purposes that will enable the South African Department of Health to obtain the services and equipment necessary for the primary health care clinics to carry out small-scale incineration for the disposal of medical waste.

 

2.     STRUCTURE OF THE PROGRAMME

 

The test programme is being carried out in phases, as follows:

Phase 1         A scoping study to decide the responsibility of the different parties and

consensus on the test criteria and boundaries of the laboratory tests. The criteria for accepting an incinerator on trial was approved by all parties involved.

Phase 2         Laboratory tests with a ranking of each incinerator and the selection of the incinerators to be used in the field trials.

Phase 3         Completion of field trials, to assess the effectiveness of each incinerator under field conditions.

Phase 4         Preparation of a tender specification and recommendations to the DoH for the implementation of an ongoing incineration programme.

 

This document provides feedback on phases 2 and 3 of the work.

 

 

 

3.     COLLABORATORS INVOLVED IN THE PROGRAMME

 

SA Collaborative Centre for Cold Chain Management SA National Department of Health

CSIR

Pharmaceutical Society of SA World Health Organisation UNICEF

 

 

 

4.     STAKEHOLDERS INVOLVED IN THE PROGRAMME

 

The following stakeholders participated in the steering committee:

 

  • Dept of Health (National & provincial levels) (DoH)
  • Dept of Occupational Health & Safety (National & provincial levels)
  • Dept of Environmental Affairs & Tourism (National & provincial levels) (DEAT)
  • Dept of Water Affairs & Forestry (National & provincial levels) (DWAF)
  • Dept of Labour (National & provincial levels) (DoL)
  • National Waste Management Strategy Group
  • SA Local Government Association (SALGA)
  • SA National Civics Organisation (SANCO)
  • National Education, Health and Allied Workers Union (NEHAWU)

 

 

  • Democratic Nurses Organisation of SA (DENOSA)
  • Medecins Sans Frontieres
  • SA Association of Community Pharmacists
  • Mamelodi Community Health Committee
  • Pharmaceutical Society of SA
  • CSIR
  • UNICEF
  • WHO
  • SA Federation of Hospital Engineers

 

 

International visitors:

  • Dr Luiz Diaz – WHO Geneva and International Waste Management , USA
  • Mr Joost van den Noortgate – Medecins Sans Frontieres, Belgium

 

 

 

 

5.     LABORATORY TRIALS

 

5.1.   Objective of the laboratory trials

 

  • Rank the performance of submitted units to the following criteria:

y Occupational safety

y Impact on public health from emissions

y The destruction efficiency

y The usability for the available staff

 

  • The panel of experts for the ranking consisted of a:

y Professional nurse; Mrs Dorette Kotze from the SA National Department of Health

y Emission specialist; Dr Dave Rogers from the CSIR

y Combustion Engineer; Mr Brian North from the CSIR

 

5.2.   Incinerators received for evaluation

 

Name used in report Model no. Description Manufacturer
C&S Marketing

incinerator

SafeWaste Model Turbo

2000Vi

Electrically operated fan supplies combustion air

– no auxiliary fuel

C&S Marketing cc.
Molope Gas incinerator Medcin 400 Medical

Waste Incinerator

Gas-fired incinerator Molope Integrated

Waste Management

Molope Auto incinerator Molope Auto Medical

Waste Incinerator

Auto-combust incinerator – uses wood

or coal as additional fuel to facilitate incineration

Molope Integrated

Waste Management

 

Name used in report Model no. Description Manufacturer
PaHuOy

incinerator

Turbo Stove Auto-combust unit,

using no additional fuel or forced air supply

Pa-Hu Oy

 

 

5.3.   Emission testing: laboratory method

 

Sampling of emissions followed the US-EPA Method 5G dilution tunnel method for stove emissions. Adjustments to the design were made to account for flames extending up to 0.5 m above the tip of the incinerator and the drop out of large pieces of ash. Emissions were extracted into a duct for isokinetic sampling of particulate emissions. The sampling arrangement is shown by a schematic in Figure 1. A photograph of the operation over the Molope gas fired incinerator unit is shown in Figure 2.

 

All tests were performed according to specified operating procedures. The instructions provided by the supplier of the equipment were followed in the case of the C&S Marketing Unit. No operating procedures were supplied with the Molope Gas, Molope auto-combustion and PaHuOy units. These procedures were established by the CSIR personnel using their previous experience together with information provided by the supplier.

 

Test facilities were set up at the CSIR and measurements were carried out under an ISO9001 system using standard EPA test procedures or modifications made at the CSIR.

 

 

 

Figure 1. Schematic diagram of the laboratory set-up

 

 

 

 

 

Figure 2:Photograph of air intake sampling hood over Molope gas incinerator

 

 

 

5.4.   RANKING RESULTS OF THE LABORATORY TRIALS

 

Using the criteria listed under section 4.1 above, the incinerators were ranked as followed:

 

  Molope gas-fired

unit

Molope wood-fired

unit

C&S electric

unit

PaHuOy wood-fired

unit

Safety 6.8 4.8 5.5 3.3
Health 5.5 3.5 4.3 2.3
Destruction 9 2 6 1
Usability 2 3 3 5
Average 5.8 3.3 4.7 2.9

 

 

5.5.   EMISSION RESULTS OF THE LABORATORY TRIALS

 

Quantitative measurements were used to rank the units in terms of destruction efficiency and the potential to produce hazardous emissions.

 

Conformance to the South African Department of Environmental Affairs and Tourism’s (DEAT) recommended guidelines on emissions from Large Scale Medical Waste Incinerators is summarized in Table 1. The measurements are listed1 in Table 2.

 

 

 

Table 1: Summary qualitative results

 

Parameter Measured Units Molope

 

Gas-fired

Molope

 

Wood-fired

C&S

 

Electric

PaHuOy

 

Wood-fired

SA DEAT

Guidelines

Stack height m × × × × 3 m above

nearest building

Gas velocity m/s × × × × 10
Residence time s × × × × 2
Minimum combustion

temperature

ºC 4 × × × > 850
Gas combustion

efficiency

% × × × × 99.99
Particulate emissions mg/Nm3 4 × 4 × 180
Cl as HCl mg/Nm3 × 4 4 × < 30
F as HF mg/Nm3 4 4 4 4 < 30
Metals mg/Nm3 4 × × 4 < 0.5 and

< 0.05

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

1 Emission concentrations are reported in accordance with the South African reporting requirements, ie, normalized to Normal Temperature (0

oC) and Pressure (101.3 kPa) and corrected to a nominal concentration of

8 % of CO2 on a dry gas basis. If a measurement fell below the detection limit for the method is it either reported as the detection limit or as N.D., ie, not detectable.

 

 

Table 2: Detailed quantitative results

 

 

Parameter Measured *

 

Units

 

Molope gas

 

Molope auto

 

C&S

 

PaHuOy

 

SA Process Guide1

 

Comments

 

Stack height

 

m

 

1.8

 

1.8

 

1.9

 

0.3

 

3 m above nearest building

 

None of these unite has a stack. The height of the exhaust vent is taken as the stack height. If it is above the respiration zone of the operator it provides some protection from exposure to smoke.

 

Gas velocity

 

m/s

 

0.8

 

0.5

 

1.1

 

0.5

 

10

 

Gas velocities vary across the stack for the Molope gas, Molope auto-combustion, and the PaHuOy units.

 

Residence time

 

s

 

0.4

 

0.7

 

0.6

 

0.4

 

2

 

Residence time is taken to be the total combustion time, and the maximum achievable

 

Minimum combustion zone temperature

oC  

800 -900

 

400 – 650

 

600 – 800

 

500 – 700

 

> 850

 

Molope auto-combustion temperatures are expected to be higher as the centre of the combustion zone is not expected to be at the measurement location.

 

CO2 at the stack tip

 

% vol

 

2.64

 

3.75

 

4.9

 

3.25

 

8.0

 

Actual emission concentrations are less than the values reported here, which are normalized to 8 % CO2 and Normal temperature and pressure for reporting purposes. They are lower between 4 to 8 times.

 

Gas

 

%

 

99.91-

 

98.8 -98.4

 

99.69-

 

98.9

 

99.99

 

Most accurate measurement in

Combustion 99.70 99.03 the duct where mixing of exhaust
efficiency gases is complete. Results of two

trials.

 

Particulate emissions entrained in exhaust gas

mg/Nm3  

102

 

197

 

130

 

338

 

180

 

The total emissions are the sum of the both entrained and un- entrained particulates. Emissions are lower than expected for such units and this is attributed to the absence of raking which is the major source of particulate emissions from incinerators without an emission control

system.

 

Particulate fall- out

mg/Nm3  

42

 

105

 

n.d.

 

n.d.

 

 

Large pieces of paper and cardboard ash rained out of the emissions. Totalling 0.8 to 2 g over a +/- 2 minute period.

 

Soot in particulates

 

%

 

42.2

 

58.1

 

48.7

 

84.8

 

 

Correlates directly with gas combustion efficiency

 

1 Emission concentrations are reported in accordance with the South African reporting requirements, ie, Normalized to Normal Temperature (0

oC) and Pressure (101.3 kPa) and corrected to a nominal concentration of

8 % of CO2 on a dry gas basis. If a measurement fell below the detection limit for the method is it either reported as the detection limit or as N.D., ie, not detectable.

 

 

Parameter Measured *

 

Units

 

Molope gas

 

Molope auto

 

C&S

 

PaHuOy

 

SA Process Guide1

 

Comments

 

% ash residual from medical waste

 

%

 

14.8

 

12.9

 

15.6

 

21.7

 

 

Measurement of destruction efficiency of the incinerator. Typical commercial units operate at 85-90 % mass reduction. PaHuOy is lower due to the melting and unburnt plastic.

 

Cl as HCl

mg/Nm3  

46

 

13

 

25

 

35 & 542

 

< 30

 

PaHuOy chloride concentrations varied considerably. This is expected due to the variability of the feed composition.

 

F as HF

mg/Nm3  

< 6

 

< 1

 

<2

 

< 1

 

< 30

 

Fluoride not found in this waste.

 

Arsenic (As)

mg/Nm3  

< 0.2

 

< 0.2

 

< 0.2

 

< 0.2

 

0.5

 

Arsenic is not expected as a solid.

 

Lead (Pb)

mg/Nm3  

< 0.4

 

< 0.4

 

< 0.4

 

< 0.4

 

0.5

 

Lead not expected in waste

 

Cadmium (Cd)

mg/Nm3  

< 0.2

 

< 0.2

 

< 0.2

 

< 0.2

 

0.05

 

Sensitivity of the x-ray method is adequate for ranking. Higher sensitivity not sought for this trial.

 

Chromium (Cr)

mg/Nm3  

< 0.1

 

0.7

 

0.7

 

< 0.1.

 

0.5

 

Chromium relative to iron ranges between 12 and 25% which is consistent with stainless steel needles

 

Manganese (Mn)

mg/Nm3  

< 0.1

 

0.3

 

0.3

 

< 0.1

 

0.5

 

Manganese may be a component in the stainless steel needle.

 

Nickel (Ni)

mg/Nm3  

< 0.1

 

0.3

 

< 0.1

 

< 0.1

 

0.5

 

Nickel may be a component in the needle.

 

Antimony (Sb)

mg/Nm3  

< 0.2

 

< 0.2

 

< 0.2

 

< 0.2

 

0.5

 

Not expected in this waste.

 

Barium (Ba)

mg/Nm3  

< 0.5

 

< 0.5

 

< 0.5

 

< 0.5

 

0.5

 

Lower sensitivity due to presence in the filter material

 

Silver (Ag)

mg/Nm3  

< 0.2

 

< 0.2

 

< 0.2

 

< 0.2

 

0.5

 

Not expected in this waste.

 

Cobalt (Co)

mg/Nm3  

< 0.1

 

< 0.1

 

< 0.1

 

< 0.1

 

0.5

 

Cobalt might be present in stainless steel.

 

Copper (Cu)

mg/Nm3  

< 0.5

 

< 0.5

 

< 0.5

 

< 0.5

 

0.5

 

Lower sensitivity due to copper in the sample blanks. May be background in the analytical equipment.

 

Tin (Sn)

mg/Nm3  

< 0.2

 

< 0.2

 

< 0.2

 

< 0.2

 

0.5

 

Tin not expected in this waste.

 

Vanadium (V)

mg/Nm3  

< 0.1

 

< 0.1

 

0.4

 

< 0.1

 

0.5

 

Vanadium might be present in stainless steel.

 

Thallium (Tl)

mg/Nm3  

< 0.4

 

< 0.4

 

< 0.4

 

< 0.4

 

0.05

 

Not expected in this waste. Sensitivity of the x-ray method is adequate for ranking. Higher sensitivity not sought for this trial.

 

 

 

5.6.   MAIN FINDINGS OF THE LABORATORY TRIALS

 

The main conclusions drawn from the trials are as follows:

 

:::          All four units can be used to render medical waste non-infectious, and to destroy syringes or render needles unsuitable for reuse.

:::                           The largest potential health hazard arises from the emissions of smoke and soot.              (the combustion efficiency of all units lies outside the

regulatory standards). The risk to health can be reduced by training operators to avoid the smoke or by installation of a chimney at the site.

:::          The emissions from small scale incinerators are expected to be lower than those from a wood fire, but higher than a conventional fire-brick-

lined multi-chambered incinerator.

:::          Incomplete combustion, and the substantial formation of smoke at low height rendered the PaHuOy unit unacceptable for field trials. Figure 3

below shows this unit during a trial burn. Molten plastic flowed out of

the incinerator, blocked the primary combustion air feed vents, and burnt outside of the unit.

 

 

 

Figure 3: Photo of PaHuOy incinerator during trial burn

 

 

5.7.   COMPARISON OF THE FIELDS TRIALS WITH THE LABORATORY TRIALS

 

The CSIR performed a quantitative trial in the field for gas combustion efficiency, temperature profiles and mass destruction rate on the Molope Auto wood-fired unit at the Mogale Clinic.

 

The results of this trial are compared to the laboratory trial results below:

 

  • Waste loading: Disposable rubber gloves were observed in addition to needles syringes, glass vials, bandages, dressings, and paper w
  • Temperatures and combustion efficiency: The same performance in gas combustion        efficiency   was    obtained    for    wood    .

Temperatures were higher but for a shorter time and this was

correlated with the type of wood available to the clinic. The fuel was burnt out before the medical waste was destroyed completely and this resulted in lower temperatures, lower combustion efficiency and higher emissions while burning the waste.

  • Emissions: Large amounts of black smoke were observed and this was correlated directly to cooling of the unit as the wood fuel was exhausted

prior to full ignition of the waste.

  • Destruction efficiency: The destruction efficiency was similar to that in the laboratory measurem
  • Usability: The unit is difficult to control as the result of the variability of the quality of wood
  • Acceptability: the smoke was not acceptable to the clinic, the community, or the local

 

It was concluded that:

  • The performance with fuel alone indicates that laboratory trial data can be used to predict emissions in the
  • The Molope Auto unit is too difficult to control for the available staff and fuel at the

 

 

 

5.8.   RECOMMENDATIONS FROM THE LABORATORY TRIALS

 

The following recommendations are made as the result of the laboratory trials:

:::     A comprehensive operating manual must be supplied with each unit.

Adequate training in the operation of the units must be provided, especially focussed on safety issues.

:::     It is recommended that the height of the exhaust vent on all units be

addressed.     In order to facilitate the dispersion of emissions and reduce the exposure risk of the operators.

:::     The suppliers of the incinerators must provide instructions for the safe handling and disposal of ash.

 

 

 

5.9.   RECOMMENDATIONS FROM THE STEERING COMMITTEE

 

 

 

After completion of the laboratory trials, the project steering committee recommended that the Molope Gas and C&S Marketing units be submitted for field testing. The Molope Auto was recommended for field testing on the condition that the manufacturer modified the ash grate so as to prevent the spillage of partially burnt needles and syringes.

 

 

 

6.     FIELD TRIALS

 

6.1.   OBJECTIVE OF THE FIELD TRIALS

 

The objective of the field trials was to obtain information in the field and assess the strengths and weaknesses of each of the incinerators during use at primary health care clinics.

 

A participative decision making process was used for the trials. It was based on expert technical evaluation by the CSIR and the National Department of Health as well as participation in the trials by experienced end users and participating advisors. All decisions were made by the Steering Committee, which consisted of representatives of stakeholders in the clinical and medical waste disposal process. These included representatives from the National, Provincial, and Local Government departments of Health, Safety and the Environment, as well as Professional Associations, Unions, NGOs, UNICEF, the WHO and local community representatives.

 

6.2.   CLINIC SELECTION

 

The Provinces in which the trials were done selected clinics for the field trials. The criteria set by the Steering Committee for the selection of the clinics were the following:

 

  • Location must be rural or under-serviced with

y No medical waste removal

y No existing incineration

y No transport

  • It must be in a high-density population area
  • Acceptable environmental conditions must prevail
  • Community acceptance must be obtained
  • Operator skill level to be used must be at a level of illiteracy

 

The clinics that were selected were as follows:

 

  • Steinkopf Clinic – Northern Cape Province – Gas incinerator

 

 

  • Marydale Clinic – Northern Cape Province – Gas incinerator
  • Mogale Clinic – Gauteng Province             – Auto combustion

incinerator, wood-fired.

  • Chwezi Clinic – KwaZulu-Natal Province – Gas incinerator
  • Ethembeni Clinic- KwaZulu-Natal Province – Auto-combustion electrical

incinerator

 

 

 

 

 

 

MAP OF SOUTH AFRICA INDICATING WHERE THE CLINICS ARE SITUATED

 

 

 

 

 

 

 

 

NORTHERN PROVINCE

 

GAUTENG PROVINCE

 

 

 

 

 

NORTH WEST PROVINCE

MPUMALANGA PROVINCE

 

 

 

 

 

 

FREE STATE PROVINCE

 

 

NORTHERN CAPE PROVINCE

 

 

KWAZULU-NATAL PROVINCE

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

I:/UnitPublic/Valerie/Technet 99/Working papers/Session 3/rogers.doc

 

 

 

EASTERN CAPE PROVINCE

 

 

WESTERN CAPE PROVINCE

 

 

6.3.   COORDINATION OF THE TRIALS

 

The criteria for the ranking of the incinerators in accordance with performance in the field were:

 

  • Safety (occupational and public health)
  • Destruction capability
  • Usability
  • Community acceptability

 

The South African National Department of Health coordinated the field trials.

 

Information regarding the field trials as well as questionnaires were supplied to the coordinators in the participating provinces.

 

The team in the field consisted of the operator, supervisor and inspector (coordinator). The manufacturer of the incinerators did the training of the operators.

 

The questionnaires used during the trials were set so as to obtain information with regard to the criteria set for the ranking of the incinerators in accordance with performance in the field. The questionnaires were received from the clinics at two-weekly intervals.

 

Questions with regard to the criteria were the following:

 

A.  SAFETY (occupational and public health)

 

  • Smoke Emission

y Volume and thickness

y Colour

y Odour

  • Ash Content
  • Are the filled sharps boxes and soiled dressings stored in a locked location while waiting to be incinerated?

 

 

 

B.  DESTRUCTION CAPABILITY

 

  • Destruction Rate

y Complete

y Partial

y Minimal

y Residue content

 

C.  USABILITY (for the available staff)

  • Can the incinerator be used easily?

 

 

  • Is the process of incineration safe?
  • Has training been successful?
  • Is protective clothing such as gloves, goggles, dust masks and safety boots available?

 

D.  COMMUNITY ACCEPTABILITY

 

  • What is the opinion of the following persons on the use of the incinerator?

y Operator

y Nurse

y Head of the clinic

y Local Authority representative

y Community leader

 

During the trials the clinics were visited and the incinerators evaluated by members of the Steering Committee and the CSIR as well as Dr L Diaz from WHO, Mr M Lainejoki from UNICEF and the coordinator from the National Department of Health.

 

6.4.   QUESTIONNAIRE RESULTS

 

6.4.1.      MOGALE CLINIC

 

Type of incinerator at the clinic: Molope Auto-Combustion (Fired with wood)

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Figure 4 & 5: Molope Auto wood-fired incinerator during field trials at Mogale clinic

 

 

A.               SAFETY (occupational and public health)

 

  1. The process of incineration with this unit was considered by the operator, supervisor and the inspector as unsafe because there is no protective cage around the During the process the incinerator becomes very hot and this could result in injury to the operator.

 

  1. The smoke emission of this incinerator had a volume and thickness which was heavy and black, with a distinct unpleasant odour, and was considered This could cause a pollution problem.

 

 

 

B.               DESTRUCTION CAPABILITY

 

  1. The needles and vials were not completely destroyed but were rendered unsuitable for re-use.

 

  1. The soft medical waste was completely destroy

 

 

 

C.               USABILITY

 

Difficulty in controlling the operating temperature and avoiding smoke emissions made this incinerator user unfriendly.

 

D.               COMMUNITY ACCEPTABILITY

 

As a result of the heavy, black smoke emission the unit was not acceptable to the community.

 

 

6.4.2.      ETHEMBENI CLINIC:

 

 

Figure 6: C&S Marketing Auto Combust Electrical Incinerator At Ethembeni Clinic

 

 

 

Type Of Incinerator: C&S Auto-Combustion (Uses an electrically actuated fan)

 

 

 

A.               SAFETY (occupational and public health)

 

  1. The operator, supervisor and inspector considered this incinerator easy to operate with no danger to the Removal of the ash from the drum for disposal in a pit is, however, considered difficult, as the drum is heavy. Removal of the incinerator lid before it has been allowed to cool has been identified as a potential danger to the operator.

 

  1. Emission of smoke from this incinerator was not considered ex The volume and thickness was evaluated as moderate with no pollution experienced.

 

 

 

B.               DESTRUCTION CAPABILITY

 

  1. The needles and vials were not completely destroyed but were rendered unsuitable for re-use.
  2. The soft medical waste was completely destroy

 

 

 

C.               USABILITY

 

Considered user friendly by operator, supervisor and inspector.

 

D.               COMMUNITY ACCEPTABILITY

 

The incinerator was accepted by the community and was not considered to be harmful.

 

 

 

6.4.3.      CHWEZI CLINIC, MARYDALE CLINIC AND STEINKOPF CLINIC:

 

Type of incinerator: Molope Gas incinerator

 

Figure 7:       Molope Gas incinerator during field trials at Marydale clinic

 

A.               SAFETY (occupational and public health)

 

  1. The operator, supervisor and inspector considered this incinerator easy to operate with minimal danger to the
  2. Smoke emissions were not excessive and were reported to be minim

 

B.               DESTRUCTION CAPABILITY

 

  1. Sharps not completely destroyed but were rendered unsuitable for re-use.

 

 

  1. Soft medical waste completely destroy

 

C.               USABILITY

 

This incinerator was considered user friendly.

 

 

 

D.               COMMUNITY ACCEPTABILITY

 

 

 

The incinerator was accepted by the community and was not considered to be harmful.

 

 

 

6.5.   RANKING

 

 

INCINERATOR RANKING
Molope Gas 1
C&S Auto-Combustion (Uses electrical fan)  

2

Molope Auto- Combustion (Fired with

wood, coal also an option)

 

3

 

 

 

 

6.6.   OUTCOME OF THE FIELD TRIALS

 

Incinerator Safety Destruction Capability Usability Community Acceptability
Molope Gas Good Good Good Good
C&S Auto- Combustion

(Uses Electricity)

 

Good

 

Good

 

Good

 

Good

Molope Auto-

Combust Incinerator

Un-Acceptable Good Un-Acceptable Un-Acceptable

 

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